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配体对溴化铯铅钙钛矿量子点在光催化C(sp)-H溴化反应中性能的影响

Ligand Influence on the Performance of Cesium Lead Bromide Perovskite Quantum Dots in Photocatalytic C(sp)-H Bromination Reactions.

作者信息

Amberg Willi M, Lindner Henry, Sahin Yesim, Staudinger Erich, Morad Viktoriia, Sabisch Sebastian, Feld Leon G, Li Yuxuan, Dirin Dmitry N, Kovalenko Maksym V, Carreira Erick M

机构信息

Department of Chemistry and Applied Biosciences, ETH Zürich, 8093 Zurich, Switzerland.

Laboratory for Thin Films and Photovoltaics, Empa─Swiss Federal Laboratories for Materials Science and Technology, CH-8600 Dübendorf, Switzerland.

出版信息

J Am Chem Soc. 2025 Mar 12;147(10):8548-8558. doi: 10.1021/jacs.4c17013. Epub 2025 Feb 28.

Abstract

Lead halide perovskite quantum dots (LHP QDs) CsPbX generate immense interest as narrow-band emitters for displays, lasers, and quantum light sources. All QD applications rely on suited engineering of surface capping ligands. The first generation of LHP QDs employed oleic acid/oleyl amine capping and have found only a limited use in photoredox catalysis. These catalysts have been reported to be unstable and decompose over the course of the reaction, thus reducing turnover numbers (TONs) and limiting their synthetic ability. Herein, the impact of eight distinct surface ligands on monodisperse CsPbBr QDs is reported, affording a thorough comprehension of their performance in photocatalytic C-H brominations. These efforts yielded QDs operating at extremely low catalyst loadings (<100 ppb) with TONs over 9,000,000 per LHP QD. We emphasize that the optimal catalytic performance requires increased QD surface accessibility without compromising the QD structural and colloidal integrity. Control experiments indicated that well-known photoredox catalysts such as Ir(ppy), Ru(bpy)Cl, or 4CzlPN are ineffective in the same reaction. Mechanistic studies reveal that the C-Br bond reduction in CHBr is the rate-limiting step and is likely facilitated through interaction with the CsPbBr QD surface. This work outlines a holistic approach toward the design of practically useful photocatalysts out of QDs comprising structurally soft QD cores and dynamically bound capping ligands.

摘要

卤化铅钙钛矿量子点(LHP QDs)CsPbX作为用于显示器、激光器和量子光源的窄带发射体引起了极大的关注。所有量子点应用都依赖于表面封端配体的合适工程设计。第一代LHP QDs采用油酸/油胺封端,仅在光氧化还原催化中有有限的应用。据报道,这些催化剂不稳定,在反应过程中会分解,从而降低周转数(TONs)并限制其合成能力。在此,报道了八种不同表面配体对单分散CsPbBr量子点的影响,从而深入了解它们在光催化C-H溴化反应中的性能。这些努力得到了在极低催化剂负载量(<100 ppb)下运行的量子点,每个LHP量子点的TONs超过9,000,000。我们强调,最佳催化性能需要在不损害量子点结构和胶体完整性的情况下增加量子点表面可及性。对照实验表明,诸如Ir(ppy)、Ru(bpy)Cl或4CzlPN等知名光氧化还原催化剂在同一反应中无效。机理研究表明,CHBr中C-Br键的还原是限速步骤,可能通过与CsPbBr量子点表面的相互作用而促进。这项工作概述了一种整体方法,用于从包含结构柔软的量子点核和动态结合的封端配体的量子点中设计出实际有用的光催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/913d/11912481/20e34a3d9c55/ja4c17013_0001.jpg

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