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CsPbBr量子点通过光催化半氢化/还原策略促进氧化木质素的解聚

CsPbBr Quantum Dots Promoted Depolymerization of Oxidized Lignin via Photocatalytic Semi-Hydrogenation/Reduction Strategy.

作者信息

Jiang Huating, Liu Minxia, Lian Xiao, Zhu Mingxiang, Zhang Fang

机构信息

The Education Ministry Key Lab of Resource Chemistry, Shanghai Key Laboratory of Rare Earth Functional Materials, Shanghai Frontiers Science Center of Biomimetic Catalysis, Shanghai Normal University, Shanghai, 200234, China.

出版信息

Angew Chem Int Ed Engl. 2024 Feb 12;63(7):e202318850. doi: 10.1002/anie.202318850. Epub 2024 Jan 15.

Abstract

Due to the demanding depolymerization conditions and limited catalytic efficiency, enhancing lignin valorization remains challenging. Therefore, lowering the bond dissociation energy (BDE) has emerged as a viable strategy for achieving mild yet highly effective cleavage of bonds. In this study, a photocatalytic semi-hydrogenation/reduction strategy utilizing CsPbBr quantum dots (CPB-QDs) and Hantzsch ester (HEH ) as a synergistic catalytic system was introduced to reduce the BDE of C -O-Ar, achieving effective cleavage of the C -O-Ar bond. This strategy offers a wide substrate scope encompassing various β-O-4 model lignin dimers, preoxidized β-O-4 polymers, and native oxidized lignin, resulting in the production of corresponding ketones and phenols. Notably, this approach attained a turnover frequency (TOF) that is 17 times higher than that of the reported Ir-catalytic system in the photocatalytic depolymerization of the lignin model dimers. It has been observed via meticulous experimentation that HEH can be activated by CPB-QDs via single electron transfer (SET), generating HEH ⋅ as a hydrogen donor while also serving as a hole quencher. Moreover, HEH ⋅ readily forms an active transition state with the substrates via hydrogen bonding. Subsequently, the proton-coupled electron transfer (PCET) from HEH ⋅ to the carbonyl group of the substrate generates a C ⋅ intermediate.

摘要

由于苛刻的解聚条件和有限的催化效率,提高木质素的价值仍然具有挑战性。因此,降低键解离能(BDE)已成为实现温和而高效的键断裂的可行策略。在本研究中,引入了一种利用CsPbBr量子点(CPB-QDs)和汉斯酯(HEH)作为协同催化体系的光催化半氢化/还原策略,以降低C-O-Ar的BDE,实现C-O-Ar键的有效断裂。该策略具有广泛的底物范围,包括各种β-O-4模型木质素二聚体、预氧化的β-O-4聚合物和天然氧化木质素,从而产生相应的酮和酚。值得注意的是,在木质素模型二聚体的光催化解聚中,该方法获得的周转频率(TOF)比报道的Ir催化体系高17倍。通过细致的实验观察到,HEH可以通过单电子转移(SET)被CPB-QDs激活,生成HEH·作为氢供体,同时还作为空穴猝灭剂。此外,HEH·通过氢键与底物容易形成活性过渡态。随后,从HEH·到底物羰基的质子耦合电子转移(PCET)产生一个C·中间体。

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