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使用各向异性一维BiS纳米棒的可见光驱动光催化硫醇-烯/炔反应:一种绿色合成方法。

Visible light-driven photocatalytic thiol-ene/yne reactions using anisotropic 1D BiS nanorods: a green synthetic approach.

作者信息

Ali Haider, Mahto Bhagirath, Barhoi Ashok, Hussain Sahid

机构信息

Department of Chemistry, Indian Institute of Technology Patna, Bihta, 801103, India.

出版信息

Nanoscale. 2023 Sep 14;15(35):14551-14563. doi: 10.1039/d3nr02889e.

Abstract

Thiol-ene/yne click reactions play a significant role in creating carbon-sulfur (C-S) bonds, and there has been a growing interest in using visible-light photoredox catalysis for their formation. In this study, anisotropic 1D BiS nanorods were prepared using a simple polyol-assisted reflux method, and they were used as catalysts for the thiol-ene/yne click reactions under visible light irradiation. The developed protocol is highly compatible and tolerant to various substrates with excellent product yields. Also, thiol-ene and -yne reactions achieved maximum TONs of 93 and 95, respectively. Detailed mechanistic studies were conducted and supported by NMR studies, radical trapping utilizing TEMPO, and ESI-MS product analysis. The ability of BiS nanorods to catalyze thiol-ene/yne reactions is primarily due to the creation of photoexcited holes, which aid in the formation of thiyl radicals. This method can be scaled up to the gram-scale synthesis of benzyl styryl sulfide with an excellent chemical yield of 90%. The 1D BiS nanorods also demonstrated structural and morphological stability throughout five reaction cycles while maintaining a favorable photocatalytic activity. The developed methodology had the advantages of broad substrate scope, mild reaction conditions, scaled-up synthesis, and nonrequirement of free radical initiators.

摘要

硫醇-烯/炔点击反应在形成碳-硫(C-S)键方面发挥着重要作用,并且利用可见光光氧化还原催化来促进其形成的研究兴趣与日俱增。在本研究中,采用简单的多元醇辅助回流法制备了各向异性的一维BiS纳米棒,并将其用作可见光照射下硫醇-烯/炔点击反应的催化剂。所开发的方案与各种底物具有高度兼容性和耐受性,产物收率优异。此外,硫醇-烯和硫醇-炔反应的最大TON值分别达到93和95。通过核磁共振研究、利用TEMPO进行自由基捕获以及电喷雾电离质谱产物分析进行了详细的机理研究并得到了相应支持。BiS纳米棒催化硫醇-烯/炔反应的能力主要归因于光激发空穴的产生,这些空穴有助于硫自由基的形成。该方法可扩大到苄基苯乙烯基硫醚的克级合成,化学产率高达90%。一维BiS纳米棒在五个反应循环中还表现出结构和形态稳定性,同时保持良好的光催化活性。所开发的方法具有底物范围广、反应条件温和、可扩大合成规模以及无需自由基引发剂等优点。

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