壳聚糖微球和冷藏箱负载Pd0和Pd2+催化活性的筛选

IF 0.8 Q4 MATERIALS SCIENCE, BIOMATERIALS
A. Pestov, A. V. Mekhaev, Y. Privar, N. Prokuda, E. Modin, S. Bratskaya
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引用次数: 1

摘要

本文报道了含pd壳聚糖微球和低温凝胶在交叉偶联反应、烯烃、硝基和羰基化合物加氢反应和氯酚加氢脱氯反应中的催化活性的筛选结果。含pd0的壳聚糖微球和低温剂对烯烃和硝基芳烃的还原具有中等的催化活性。硝基芳烃的转化率随着吸电子取代基的激活而降低,而烯烃的转化率随着碳碳双键的激活而提高。对于几种底物,壳聚糖微球和冷藏箱负载的钯纳米颗粒在动力学和转化程度上有显著差异。研究发现,加氢脱氯反应的转化率取决于底物的结构,对于含有具有正中间体效应取代基的底物,转化率更高。Pd2+-壳聚糖催化剂在交叉偶联(Heck反应)中表现出较高的催化活性,与已知的催化体系相比,具有以下优点:较低的反应温度,C-I键的选择性功能化,以及与碘苯进行反应而不需要碱加成的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SCREENING OF THE CATALYTIC ACTIVITY OF Pd0 AND Pd2+- SUPPORTED ON CHITOSAN BEADS AND CRYOGELS
Here, we report the results of screening of the catalytic activity of Pd-containing chitosan beads and cryogels in the cross-coupling reaction, hydrogenation of alkenes, nitro-, and carbonyl compounds and the hydrodechlorination of chlorophenols. Pd0-containing chitosan beads and cryogels show moderate catalytic activity in the reduction of alkenes and nitroaromatics. The conversion of nitroaromatics decreases for substrates with electron-withdrawing substituents, while the conversion of alkenes increases with the activation of carbon-carbon double bonds. For several substrates, a significant difference in kinetics and conversion degrees was observed for Pd nanoparticles supported on chitosan beads and cryogels. It was found that conversion in the hydrodechlorination reaction depends on substrate structure, being higher for substrates containing substituents with a positive mesomeric effect. Pd2+-chitosan catalysts showed high catalytic activity in cross-coupling (Heck reaction) offering the following advantages over known catalytic systems: lower reaction temperature, the selective functionalisation of C-I bonds, and the possibility to perform reactions with iodobenzene without base addition.
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来源期刊
CiteScore
1.10
自引率
16.70%
发文量
19
期刊介绍: Progress in the Chemistry and Application of Chitin and its Derivatives is an annual journal focused on all aspects of production, modification, enzymology and application of chitin and its many derivatives, including chitosan. The journal publishes full-length papers as well as invited reviews. To be considered, papers must present original research that has not been published or accepted for publication elsewhere. The language of the journal will be English.
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