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首页> 外文期刊>Kinetics and catalysis >Phospho Sulfonic Acid: A Highly Efficient and Novel Catalyst for Formation of Bis(Indolyl)Alkanes from Aldehydes and Indole under Aqueous Conditions
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Phospho Sulfonic Acid: A Highly Efficient and Novel Catalyst for Formation of Bis(Indolyl)Alkanes from Aldehydes and Indole under Aqueous Conditions

机译:磷酸磺酸:在水性条件下,用于从醛和吲哚形成双(吲哚基)烷烃的高效和新的催化剂

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摘要

Bis(indolyl)alkanes are a class of alkaloids that possess significant biological activities. Every year, the varieties of bis(indolyl)alkanes isolated from natural sources are increasing. Nevertheless, the deficiency of natural products from natural sources led to a decrease in the exploration of natural products for biological investigations. Corresponding to this fact, there is a demand to develop efficient protocols for the construction of bis(indolyl)alkanes. In this regards, we have prepared phospho sulfonic acid (PSA), which is a non-corrosive, highly reactive, inexpensive and low toxic catalyst, and have applied to construct bis(indolyl)alkanes. The catalyst was prepared by reaction of diammonium hydrogen phosphate with chloro sulfuric acid and was fully characterized by FTIR spectrometry. PSA has been used as a solid acid catalyst to promote the electrophilic substitution reaction of indole with aldehydes under water to furnish a library of bis(indolyl)alkanes in excellent yields over short reaction times. The present method eliminates use of toxic catalyst and solvent, and tolerates a series of functional groups. The catalyst can be reused several times without any important activity loss. The methodology has several advantages, for example, simple experimental procedure, cost efficiency (use of inexpensive catalyst), ease of preparation and handling of the catalyst and no side reactions.
机译:双(吲哚基)烷烃是一类具有重要生物活性的生物碱。每年,从天然来源中分离的双(吲哚基)烷烃的品种正在增加。尽管如此,来自自然来源的天然产品的缺乏导致自然产品探索的生物研究。对应于这一事实,需要开发有效的协议,用于构建双(吲哚基)烷烃。在这方面,我们制备了磷酸磺酸(PSA),其是非腐蚀性,高反应性,廉价且低毒性催化剂,并施用于构建双(吲哚基)烷烃。催化剂通过磷酸二铵与氯酸反应制备,并通过FTIR光谱完全表征。 PSA已被用作固体酸催化剂,以促进吲哚与水下的醛的亲电取代反应,以在短反应时间内提供优异的产率的双(吲哚基)烷基化合物文库。本方法消除了毒性催化剂和溶剂的用途,并耐受一系列官能团。催化剂可以重复使用几次,而无需任何重要的活动损失。该方法具有多种优点,例如简单的实验程序,成本效率(使用廉价的催化剂),易于制备和处理催化剂和无副反应。

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