Oswal Preeti, Arora Aayushi, Singh Siddhant, Nautiyal Divyanshu, Kumar Sushil, Rao Gyandshwar Kumar, Kumar Arun
Department of Chemistry, School of Physical Sciences, Doon University, Dehradun, 248012, India.
Department of Chemistry Biochemistry and Forensic Science, Amity School of Applied Sciences, Amity University Haryana, Gurgaon, Haryana 122413, India.
Dalton Trans. 2020 Sep 22;49(36):12503-12529. doi: 10.1039/d0dt01201g.
Organochalcogen compounds have been used as the building blocks for the development of a variety of catalysts that have been studied comprehensively during the last two decades for several chemical transformations. Transfer hydrogenation (reduction of carbonyl compounds to alcohols) and oxidation of alcohols (conversion of alcohols to their respective ketones and aldehydes) are also among such chemical transformations. Some compilations are available in the literature on the development of catalysts, based on organochalcogen ligands, and their applications in Heck reaction, Suzuki reaction, and other related aspects. Some review articles have also been published on different aspects of oxidation of alcohols and transfer hydrogenation. However, no such article is available in the literature on the syntheses and use of organochalcogen ligated catalysts for these two reactions. In this perspective, a survey of developments pertaining to the synthetic aspects of such organochalcogen (S/Se/Te) based catalysts for the two reactions has been made. In addition to covering the syntheses of chalcogen ligands, their metal complexes and nanoparticles (NPs), emphasis has also been placed on the efficient conversion of different substrates during catalytic reactions, diversity in catalytic potential and mechanistic aspects of catalysis. It also includes the analysis of comparison (in terms of efficiency) between this unique class of catalysts and efficient catalysts without a chalcogen donor. The future scope of this area has also been highlighted.
有机硫属元素化合物已被用作开发各种催化剂的基础材料,在过去二十年中,针对多种化学转化反应,人们对这些催化剂进行了全面研究。转移氢化反应(将羰基化合物还原为醇)和醇的氧化反应(将醇转化为各自相应的酮和醛)也属于此类化学转化反应。文献中有一些关于基于有机硫属元素配体的催化剂的开发及其在Heck反应、Suzuki反应和其他相关方面应用的综述。也有一些关于醇的氧化和转移氢化不同方面的综述文章发表。然而,文献中没有关于用于这两种反应的有机硫属元素配位催化剂的合成与应用的文章。从这个角度出发,本文对用于这两种反应的此类基于有机硫属元素(硫/硒/碲)的催化剂的合成方面的进展进行了综述。除了涵盖硫属元素配体、它们的金属配合物和纳米颗粒(NPs)的合成外,还重点关注了催化反应过程中不同底物的高效转化、催化潜力的多样性以及催化机理方面。它还包括对这类独特催化剂与不含硫属元素供体的高效催化剂之间(在效率方面)的比较分析。本文还突出了该领域的未来发展前景。