<?xml version="1.0" encoding="utf-8"?>
<journal>
<title>Razi Journal of Medical Sciences</title>
<title_fa>مجله علوم پزشکی رازی</title_fa>
<short_title>RJMS</short_title>
<subject>Medical Sciences</subject>
<web_url>http://rjms.iums.ac.ir</web_url>
<journal_hbi_system_id>39</journal_hbi_system_id>
<journal_hbi_system_user>journal39</journal_hbi_system_user>
<journal_id_issn>2228-7043</journal_id_issn>
<journal_id_issn_online>2228-7051</journal_id_issn_online>
<journal_id_pii></journal_id_pii>
<journal_id_doi></journal_id_doi>
<journal_id_iranmedex></journal_id_iranmedex>
<journal_id_magiran></journal_id_magiran>
<journal_id_sid></journal_id_sid>
<journal_id_nlai></journal_id_nlai>
<journal_id_science></journal_id_science>
<language>en</language>
<pubdate>
	<type>jalali</type>
	<year>1401</year>
	<month>7</month>
	<day>1</day>
</pubdate>
<pubdate>
	<type>gregorian</type>
	<year>2022</year>
	<month>10</month>
	<day>1</day>
</pubdate>
<volume>29</volume>
<number>7</number>
<publish_type>online</publish_type>
<publish_edition>1</publish_edition>
<article_type>fulltext</article_type>
<articleset>
	<article>


	<language>fa</language>
	<article_id_doi></article_id_doi>
	<title_fa>کاربرد مایع یونی دی‌کاتیونی اسیدبرونستدی نوین، برپایه‌ی پیرازین و کاربرد آن در سنتز زانتن‌دیون‌ ها و 4،3-دی‌هیدرو‌پریمیدین-2(1H)-اون ها</title_fa>
	<title>Introduction of a Novel Dicationic Brönsted Acidic Ionic liquid Based on Pyrazine and its Application in the Synthesis of Xanthenediones and 3, 4‑dihydropyrimidin‑2(1H)‑ones Under Solvent‑free Conditions</title>
	<subject_fa>بیوشیمی</subject_fa>
	<subject>Biochemistry</subject>
	<content_type_fa>پژوهشي</content_type_fa>
	<content_type>Research</content_type>
	<abstract_fa>&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;direction:rtl&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;زمینه و هدف: &lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;مایعات یونی، نمک&#8204;های آلی متشکل از کاتیون&#8204;های آلی و آنیون&#8204;های آلی و/یا غیرآلی هستند. در این مطالعه یک مایع نوین اسید برونستدی یونی و دی&#8204;کاتیونی برپایه&#8204;ی پیرازین تهیه و بوسیله&#8204;ی &lt;a name=&quot;_Hlk80020999&quot;&gt;طیف سنجی مادون قرمز تبدیل فوریه، آنالیزهای رزونانس مغناطیسی هسته&amp;shy;ای، طیف سنجی جرمی، ثقل سنجی گرمایی و آنالیزثقل سنجی تفاضلی گرمایی و همچنین تابع اسیدیته&#8204;ی هامت&lt;/a&gt;، تعیین ویژگی شده است.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;direction:rtl&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;روش کار:&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt; تمامی واکنشگرها و حلال ها به فرم تجاری در دسترس بودند و بدون هیچ&amp;shy;گونه خالص&amp;shy;سازی اضافه مورد استفاده قرار گرفتند. آنالیزهای رزونانس مغناطیسی هسته ای توسط طیف سنج در 500 و 125 مگاهرتز اندازه&amp;shy;گیری شدند. جابجایی های شیمیایی بر حسب قسمت در میلیون (&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Cambria&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;&amp;delta;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;) و نسبت به استاندارد داخلی تترامتیل&#8204;سیلان گزارش شدند. تحلیل گرمایی بر روی یک تحلیگر گرمایی ثقلی ثبت شد. مطالعات طیف سنجی جرمی توسط با آشکارساز محور سه&#8204;گانه انجام گردید. طیف سنجی مادون قرمز تبدیل فوریه نیز توسط دستگاه با صفحات پتاسیم برمید گرفته شد. نقاط ذوب در لوله&#8204;های موئین باز اندازه&amp;shy;گیری شد.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;direction:rtl&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;یافته&#8204;ها:&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt; مشخص شد که مایع بدست آمده، کاتالیست مؤثر با قابلیت استفاده&#8204;ی مجدد جهت سنتز زانتن&#8204;دیون&amp;shy;ها و 4،3-دی هیدروپریمیدین-2(1&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span dir=&quot;LTR&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;H&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;)-اون ها در شرایط بدون حلال می&#8204;باشد.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;direction:rtl&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;نتیجه&#8204;گیری:&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;span lang=&quot;FA&quot; style=&quot;font-size:10.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt; امتیازات فرآیند توسعه داده شده شامل نوآوری در زمینه&#8204;ی مایع یونی، تهیه آسان مایع یونی، قابلیت استفاده&#8204;ی مجدد از کاتالیست، بازدهی بالا، زمان واکنش کوتاه و عدم حضور حلال&#8204;های آلی سمی است.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;</abstract_fa>
	<abstract>&lt;div style=&quot;text-align: justify;&quot;&gt;&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;Background &amp; Aims:&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Ionic liquids are organic salts composed of organic cations and organic and / or inorganic anions that have many remarkable properties and properties, such as wide liquid state range, low vapor pressure, easy recovery process, high ionic conductivity, wide electrochemical window and design capability. Structural engineering with appropriate modification to represent cations or anions&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span dir=&quot;RTL&quot; lang=&quot;FA&quot; style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;. &lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Recently, many researchers have focused on the development of a new branch of ionic fluids called dichotomous ionic fluids (DILs); These fluids usually consist of two cationic groups that are connected to each other by a rigid or flexible spacer and are connected to two counter anions. Compared to mono-cationic ionic liquids, multi-cations have higher melting point, viscosity, surface tension and thermal stability, have a wider liquid range and more stable physical and chemical properties. Therefore, these liquids have a wide range of applications; Including solar cells, fuel cells, batteries, lubricants, reaction media, separation technology, material preparation, catalytic reactions and most recently, improving the normal isomerization rate of pentane and electrolytes for photo-harvesting&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span dir=&quot;RTL&quot; lang=&quot;FA&quot; style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt; Structures containing xanthine are known for their wide range of biological and pharmacological activities, such as antibacterial, anti-inflammatory, and anti-viral activities. In addition, xanthine ions are present as structural units in a large number of natural products.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;Methods:&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;In this paper, for the first time, the catalyzed synthesis of xanthenedione and 4,3-dihydropyrimidine-2 (1H) - they are under Solvent-free conditions have been reported by the Brunsted ionic acid liquid&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span dir=&quot;RTL&quot; lang=&quot;FA&quot; style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;. &lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Ionic liquids are organic salts composed of organic cations and organic and / or inorganic anions that have many remarkable properties and properties, such as wide liquid state range, low vapor pressure, easy recovery process, high ionic conductivity, wide electrochemical window and design capability. Structural engineering with appropriate modification to represent cations or anions&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;All reagents and solvents were commercially available and used without further purification.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;1H NMR and 13C NMR in DMSO-d6 were recorded on a Bruker&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Avance Ultrashield&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;spectrometer at 500 and 125 MHz, respectively. Chemical shifts&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;were reported in parts per&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;millions (&amp;delta;), relative to the internal standard of tetramethylsilane (TMS). Thermal analysis&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;(TG&amp;ndash;DTA) of the DIL was recorded on a&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;STA-1500 Rheometric Scientific TGA. Mass spectrometry (MS) studies were performed using 5957C VL MSD with a triple-axis detector,&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Agilent Technologies (ion&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;source: electron impact (IE) 70 eV, ion source temperature: 230 &amp;deg;C, analyzer: Quadrupole). FTIR spectrum was taken on a FTIR PerkinElmer Spectrum Version 10.51&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;with KBr plates. Melting points were recorded on a Mettler Toledo Type FP62&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;in&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;open capillary. Generally To a mixture of aromatic aldehyde (1 mmol) and 5, 5-dimethyl-1, 3 cyclohexanedione (2 mmol), 25 mol% of {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2} (0.25 mmol) was added and the reaction mixture was heated at 100 &amp;deg;C with stirring. After completion of the reaction monitored by thin-layer chromatography (TLC), the reaction mixture was allowed to cool at room temperature. Water (10 mL) was added and filtered to separate the catalyst. Then, the obtained solid product was filtered and then recrystallized from ethanol to afford the pure product. The products were identified by IR, 1H NMR and physical data (M.P.) with those reported in the literature. Also To a mixture of aromatic aldehyde (1 mmol), ethyl acetoacetate (1 mmol) and urea (2 mmol), 25 mol% of {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2} (0.25 mmol) was added and the reaction mixture was heated at 120 &amp;deg;C with stirring. After completion of the reaction evident from thin-layer chromatography (TLC), the reaction mixture was allowed to cool at room temperature. Water (10 mL) was added and the obtained solid product was filtered and then recrystallized from ethanol. The products were identified by IR, 1H NMR and physical data (M.P.) with those reported in the literature. The spectra data for some selected compounds are presented in the following.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span dir=&quot;RTL&quot; lang=&quot;FA&quot; style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;Results:&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;b&gt; &lt;/b&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;To achieve the appropriate reaction conditions, the reaction of 4-chlorobenzaldehyde&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;and 5,5&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;dimethyl-1,3-cyclohexanedione catalyzed by {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2}&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;was chosen as&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;model reaction, and the reaction was carried out under different sets&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;of conditions with&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;respect to solvents, amounts of catalyst and temperatures.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Initially, the model reaction was&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;investigated in different solvents. The solvents did not improve the yield of the reaction in the&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;presence&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;of the catalyst. Therefore, we carried out the model reaction under solvent-free&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;conditions. The result indicates that the yield of the reaction&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;under solvent-free conditions&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;was higher and the reaction time was shorter in&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;comparison with solvent conditions.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&amp;nbsp; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;To optimize the reaction temperature, the model reaction was heated at 90 and&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;110 &amp;deg;C .The results showed that the&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;100 &amp;deg;C led to highest yield;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;therefore, it was selected as the reaction temperature&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;for all further reactions. Finally, the model reaction was optimized by varying the&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;amounts of catalysts (20 and 30 mol%) at 100 &amp;deg;C under solvent-free conditions. The results show that 25 mol% of the catalyst is sufficient for the best results. To determine the role of the catalyst, the&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;model reaction&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;was performed in the absence of the catalyst at the same condition, which results&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;in very low yield of the product, which indicates the high&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;catalytic activity of {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2} in the synthesis.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;To evaluate the scope and the limitations of this method, we extended our studies to various aldehydes under the optimized conditions. From the results, we could see that all reactions proceeded smoothly to afford the corresponding xanthenediones in high to excellent yields in the short reaction times. Various functional groups present in the aryl aldehydes such as halogen, methoxy, hydroxy and nitro groups were tolerated. Extension of this methodology to heterocyclic aldehyde was also successful.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;In view of green chemistry, reusability of the catalyst is important. Therefore, some experiments were run under the same optimal conditions mentioned above over the {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2}. The results showed that the catalyst could accelerate the reaction three runs without a significant loss in its catalytic activity.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;The mechanism of the reaction starts with facilitating Knoevenagel condensation due to activating carbonyl group of aldehyde by acidic property of catalyst. In the following, the catalyst again plays a significant role in accelerating the Michael addition and dehydration. &lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:#0070c0&quot;&gt;Conclusion:&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt; A comparative study on the catalytic activity of the introduced catalyst in this paper with some reported catalysts was carried out using 3a as a model compound. From this study, {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2} can be regarded as a more powerful catalyst for the synthesis of xanthenediones in terms of the yield and the reaction time.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Multicomponent reactions (MCRs) are defined as one-pot processes that combine at least three reactants to selectively form single complex compounds as well as small heterocycles containing essentially all the atoms of the reactants. Among MCRs, the Biginelli reaction allows for the straight access of multifunctionalized 3,4-dihydropyrimidin-2(1H)-ones (DHPMs) through one-pot cyclocondensation of an aldehyde, a &amp;beta;-keto ester and urea in the presence of catalytic amount of acid Molecules containing DHPM core and its derivatives are of immense biological importance due to a wide range of pharmaceutical and therapeutic properties such as antiviral , antitumor,antibacterial ,anti-inflammatory , anti-HIV agents mitotic kinesin inhibition , calcium channel modulation , &amp;alpha;1a-adrenergic antagonists and A2B adenosine receptor antagonists . In the classical Biginelli conditions, low yields and difficult isolation of the products are the main drawbacks due to strongly acidic conditions. Hence, many catalytic methods including Br&amp;ouml;nsted and Lewis acid , ionic liquids polymer-supported catalyst and nanoparticles have been introduced to enhance the efficiency of the synthesis of these important heterocycles.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;After obtaining acceptable results from xanthenediones synthesis catalyzed by {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2}, we decided to study its efficiency in the synthesis of DHPMs. In order to obtain the optimized conditions, the model reaction involving cyclocondensation of 4 chlorobenzaldehyde, ethyl acetoacetate and urea was examined. The best result was obtained when the reaction was carried out at 120 &amp;deg;C in the presence of 25 mol% of {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H] Cl 2} under solvent-free conditions. After getting the satisfactory reaction condition in hand, the scope and efficiency of this approach were examined with respect to&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;aldehydes. Fortunately, a variety of functional groups, such as halo, methoxy, hydroxy and nitro, were all well tolerated. In addition, heterocyclic aromatic aldehyde afforded the corresponding product with high yield.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;A plausible one-pot reaction pathway for the synthesis of DHPMs catalyzed by {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2}. Initially, acyl imine intermediate (I) is produced via condensation of aryl aldehyde and urea in the presence of the catalyst as a Br&amp;ouml;nsted acidic catalyst. Next, ethyl acetoacetate attacks the (I), followed by intramolecular cyclization and dehydration reaction under acidic condition to yield the Biginelli product.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt; &lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Next, the reusability of {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO3H]Cl2} was examined in the reaction of 4-chlorobenzaldehyde, ethyl acetoacetate and urea under optimized conditions. The catalyst could be reused three times without a significant loss in its catalytic activity. In order to show the efficacy of {[SO3H&amp;ndash;Pyrazine&amp;ndash;SO 3H]Cl2}, a comparison of the present method and some reported methods is shown in results. As revealed from this table, the catalyst can be considered as a more powerful catalyst for the synthesis of DHPMs in terms of the yield and reaction time.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;span dir=&quot;RTL&quot; lang=&quot;FA&quot; style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;B Mitra&amp;quot;&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:11pt&quot;&gt;&lt;span style=&quot;text-justify:kashida&quot;&gt;&lt;span style=&quot;text-kashida:0%&quot;&gt;&lt;span style=&quot;tab-stops:10.5pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:Calibri,sans-serif&quot;&gt;&lt;span style=&quot;font-size:8.0pt&quot;&gt;&lt;span style=&quot;line-height:115%&quot;&gt;&lt;span style=&quot;font-family:&amp;quot;Times New Roman&amp;quot;,serif&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span dir=&quot;RTL&quot;&gt;&lt;/span&gt;&lt;/div&gt;</abstract>
	<keyword_fa>مایع یونی دی‌کاتیونی, پیرازین, زانتن دیون‌ها,4,3-دی هیدروپریمیدین-2(1H)-اون‌ها</keyword_fa>
	<keyword>Dicationic ionic liquid, Pyrazine, Xanthenediones, 3,4-Dihydropyrimidin-2(1H)-ones, Solvent-free</keyword>
	<start_page>117</start_page>
	<end_page>124</end_page>
	<web_url>http://rjms.iums.ac.ir/browse.php?a_code=A-10-6282-1&amp;slc_lang=fa&amp;sid=1</web_url>


<author_list>
	<author>
	<first_name>Seyyed Erfan</first_name>
	<middle_name></middle_name>
	<last_name>Sadati Sorkhi</last_name>
	<suffix></suffix>
	<first_name_fa>سید عرفان</first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa>ساداتی سرخی</last_name_fa>
	<suffix_fa></suffix_fa>
	<email>Erfan.sadati@gmail.com</email>
	<code>3900319475328460068536</code>
	<orcid>3900319475328460068536</orcid>
	<coreauthor>No</coreauthor>
	<affiliation>Department of Chemistry, Science and Research Branch, Islamic Azad University, Tehran, Iran</affiliation>
	<affiliation_fa>گروه شیمی آلی، دانشکده علوم پایه، دانشگاه آزاد اسلامی واحد علوم تحقیقات، تهران، ایران</affiliation_fa>
	 </author>


	<author>
	<first_name>Mohammad</first_name>
	<middle_name></middle_name>
	<last_name>Mahmoud Hashemi</last_name>
	<suffix></suffix>
	<first_name_fa>سید محمد</first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa>محمودی هاشمی</last_name_fa>
	<suffix_fa></suffix_fa>
	<email>mhashemi@sharif.edu</email>
	<code>3900319475328460068537</code>
	<orcid>3900319475328460068537</orcid>
	<coreauthor>Yes
</coreauthor>
	<affiliation>Department of Organic Chemistry, Faculty of Science, Sharif University of Technology, Tehran, Iran</affiliation>
	<affiliation_fa>گروه شیمی آلی، دانشکده علوم پایه، دانشگاه صنعتی شریف، تهران، ایران</affiliation_fa>
	 </author>


</author_list>


	</article>
</articleset>
</journal>
