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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Organoselenium ligands for heterogeneous and nanocatalytic systems: development and applications
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Organoselenium ligands for heterogeneous and nanocatalytic systems: development and applications

机译:非均相和纳米催化系统的有机烯烯鎓配体:开发和应用

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Organoselenium ligands have attracted great attention among researchers during the past two decades. Various homogeneous, heterogeneous and nanocatalytic systems have been designed using such ligands. Although reports on selenium ligated homogeneous catalysts are quite high in number, significant work has also been done on the development of heterogeneous and nanocatalytic systems using organoselenium ligands. A review article, focusing on the utility of organoselenium compounds in the development of catalytic systems, was published in 2012 (A. Kumar, G. K. Rao, F. Saleem and A. K. Singh, Dalton Trans., 2012, 41, 11949). Moreover, it mainly covered the homogeneous catalysts. There are no review articles in the literature on heterogeneous and nanocatalytic systems designed using organoselenium compounds and their applications. Hence, this perspective aims to cover the developments pertaining to the synthetic aspects of such catalytic systems (using organoselenium compounds) and their applications in catalysis of a variety of chemical transformations. Salient features and advantages of organoselenium compounds have also been highlighted to justify the rationale behind their use in catalyst development. Their performance in various chemical transformations [viz. Suzuki-Miyaura coupling, Heck coupling, Sonogashira coupling, O-arylation of phenol, transfer hydrogenation of aldehydes and ketones, aldehyde-alkyne-amine (A(3)) coupling, hydration of nitriles, conversion of aldehydes to amides, cross-dehydrogenative coupling (CDC), photodegradation of substrates (formic acid, methylene blue), reduction of nitrophenols, electrolysis (hydrogen evolution reaction and oxygen reduction reactions), organocatalysis and dye sensitized solar cells] and relevant aspects of catalytic processes (such as recyclability, substrate scope and green aspects) have been critically analyzed. Future perspectives have also been discussed.
机译:在过去的二十年中,有机硒配体引起了研究人员的极大关注。使用这种配体设计了各种均相、非均相和纳米催化系统。虽然关于硒配体均相催化剂的报道很多,但在使用有机硒配体开发多相和纳米催化系统方面也做了大量工作。2012年发表了一篇综述文章,重点介绍了有机硒化合物在催化系统开发中的用途(A.Kumar,G.K.Rao,F.Saleem和A.K.Singh,Dalton Trans.,2012,41,11949)。此外,它主要涉及均相催化剂。文献中没有关于使用有机硒化合物设计的多相和纳米催化系统及其应用的综述文章。因此,本观点旨在涵盖此类催化系统(使用有机硒化合物)的合成方面的发展及其在各种化学转化催化中的应用。还强调了有机硒化合物的显著特征和优势,以证明其用于催化剂开发的合理性。它们在各种化学转化中的性能[即Suzuki Miyaura偶联、Heck偶联、Sonogashira偶联、苯酚的O-芳基化、醛和酮的转移氢化、醛-炔胺(A(3))偶联、腈的水合、醛到酰胺的转化、交叉脱氢偶联(CDC)、底物的光降解(甲酸、亚甲基蓝)对硝基酚的还原、电解(析氢反应和氧还原反应)、有机催化和染料敏化太阳能电池)以及催化过程的相关方面(如可回收性、底物范围和绿色方面)进行了批判性分析。还讨论了未来的前景。

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