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偶氮苯连接的(NHC)金(I)和(NHC)铜(I)配合物作为光开关催化剂。

Azobenzene-Attached (NHC)Gold(I) and (NHC)Copper(I) Complexes as Photoswitchable Catalysts.

作者信息

Islam Sk Aminul, Ghosh Ayan, Kundu Kshama, Murugan Indukumari, Kundu Pintu K

机构信息

Department of Oils, Oleochemicals and Surfactants Technology, Institute of Chemical Technology, N. P. Marg, Matunga, Mumbai, 400019, India.

Laser and Plasma Technology Division, Bhabha Atomic Research Centre, Mumbai, 400085, India.

出版信息

Chemistry. 2024 Nov 15;30(64):e202402381. doi: 10.1002/chem.202402381. Epub 2024 Oct 29.

Abstract

Photoswitchable (pre)catalysts, N,N'-bis-azobenzene-based (NHC)gold(I) and N,N'-bis-azobenzene-derived (NHC)copper(I) complexes are reported. Trans to cis isomerization of the attached photoswitchable moieties in the Au(I) complex enables four-fold decrement in the rate of oxazoline formation reaction. Whereas the progress of the copper(I) catalyzed, azide-alkyne cycloaddition reaction gets reduced by at least threefold. Alternate exposure to UV and blue light could easily toggle the rate of reactions remotely. The catalytic activity of thermodynamically stable trans-trans isomers is found to be similar to the common N-aryl substituted NHC-Au/Cu(I) complexes. NHC-Au(I) and -Cu(I) compounds bearing (trans)azobenzene moieties were characterized by X-ray diffraction. Photoswitching, recyclability studies, and the metastable isomer's thermal half-life in both complexes were studied via UV-visible spectroscopy. Whereas the extent of photoswitching and concomitant formation of geometrical isomers were investigated by using H-NMR spectroscopic study. Calculated percentage buried volumes of the three geometrical isomers show the trend trans-trans<trans-cis<cis-cis.

摘要

报道了可光开关的(预)催化剂、基于N,N'-双偶氮苯的(NHC)金(I)和N,N'-双偶氮苯衍生的(NHC)铜(I)配合物。金(I)配合物中连接的可光开关部分从反式到顺式的异构化使恶唑啉形成反应的速率降低了四倍。而铜(I)催化的叠氮化物-炔烃环加成反应的进程至少降低了三倍。交替暴露于紫外光和蓝光可以轻松地远程切换反应速率。发现热力学稳定的反-反式异构体的催化活性与常见的N-芳基取代的NHC-Au/Cu(I)配合物相似。带有(反式)偶氮苯部分的NHC-Au(I)和-Cu(I)化合物通过X射线衍射进行了表征。通过紫外-可见光谱研究了两种配合物中的光开关、可回收性以及亚稳态异构体的热半衰期。而通过1H-NMR光谱研究考察了光开关程度和几何异构体的伴随形成。计算得到的三种几何异构体的埋藏体积百分比显示出反-反式<反-顺式<顺-顺式的趋势。

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