Suppr超能文献

重新思考 CuInS@ZnS 量子点敏化剂在光化学析氢反应中的电子效应。

Rethinking Electronic Effects in Photochemical Hydrogen Evolution Using CuInS@ZnS Quantum Dots Sensitizers.

机构信息

Department of Chemical, Pharmaceutical and Agricultural Sciences (DOCPAS), University of Ferrara, Via L. Borsari 46, 44121 Ferrara, Italy.

Department of Chemistry, University of Fribourg, Chemin de Musée 9, CH-1700 Fribourg, Switzerland.

出版信息

Molecules. 2022 Nov 27;27(23):8277. doi: 10.3390/molecules27238277.

Abstract

Molecular catalysts based on coordination complexes for the generation of hydrogen via photochemical water splitting exhibit a large versatility and tunability of the catalytic properties through chemical functionalization. In the present work, we report on light-driven hydrogen production in an aqueous solution using a series of cobalt polypyridine complexes as hydrogen evolving catalysts (HECs) in combination with CuInS@ZnS quantum dots (QDs) as sensitizers, and ascorbate as the electron donor. A peculiar trend in activity has been observed depending on the substituents present on the polypyridine ligand. This trend markedly differs from that previously recorded using [Ru(bpy)] (where bpy = 2,2'-bipyridine) as the sensitizer and can be ascribed to different kinetically limiting pathways in the photochemical reaction (. protonation kinetics with the ruthenium chromophore, catalyst activation via electron transfer from the QDs in the present system). Hence, this work shows how the electronic effects on light-triggered molecular catalysis are not exclusive features of the catalyst unit but depend on the whole photochemical system.

摘要

基于配位配合物的分子催化剂可通过光化学水分解产生氢气,通过化学功能化具有很大的多功能性和催化性能的可调节性。在本工作中,我们报告了在水溶液中使用一系列钴多吡啶配合物作为氢析出催化剂(HECs)与 CuInS@ZnS 量子点(QDs)结合作为敏化剂,并以抗坏血酸作为电子供体来进行光驱动产氢。根据多吡啶配体上存在的取代基,观察到了活性的特殊趋势。该趋势与以前使用 [Ru(bpy)](其中 bpy = 2,2'-联吡啶)作为敏化剂所记录的趋势明显不同,这可归因于光化学反应中不同的动力学限制途径(与钌发色团的质子化动力学,在本系统中通过 QDs 从电子转移来催化剂活化)。因此,这项工作表明,对光触发分子催化的电子效应不仅是催化剂单元的特有特征,而且还取决于整个光化学系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b46/9735784/5c94119bb8f9/molecules-27-08277-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验