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通过调节氢化苯偶姻中间体的吸附取向精确控制C-H键活化或O-H键活化,实现苯甲醇到脱氧苯偶姻或苯偶姻的特定光催化C-C偶联。

Specific Photocatalytic C-C Coupling of Benzyl Alcohol to Deoxybenzoin or Benzoin by Precise Control of C-H Bond Activation or O-H Bond Activation by Adjusting the Adsorption Orientation of Hydrobenzoin Intermediates.

作者信息

Yue Zongyang, Lu Guanchu, Wei Wenjing, Deng Yanan, Yang Luxi, Shao Shibo, Chen Xianfeng, Huang Yi, Qian Jianhua, Fan Xianfeng

机构信息

Institute for Materials and Processes, School of Engineering, The University of Edinburgh, Edinburgh EH9 3BF, U.K.

Petrochemical Research Institute, PetroChina Company Limited, Beijing 102206, China.

出版信息

ACS Catal. 2024 Oct 2;14(20):15306-15324. doi: 10.1021/acscatal.4c03426. eCollection 2024 Oct 18.

Abstract

Benzyl alcohol (BA) is a major biomass derivative and can be further converted into deoxybenzoin (DOB) and benzoin (BZ) as high-value products for industrial applications through photocatalytic C-C coupling reaction. The photocatalytic process contains two reaction steps, which are (1) the C-C coupling of BA to hydrobenzoin (HB) intermediates and (2) either dehydration of HB to DOB or dehydrogenation of HB to BZ. We found that generation of DOB or BZ is mainly determined by the activation of C-H or O-H bonds in HB. In this study, phase junction CdS photocatalysts and Ni/CdS photocatalysts were elaborately designed to precisely control the activation of C-H or O-H bonds in HB by adjusting the adsorption orientation of HB on the photocatalyst surfaces. After orienting the C-H groups in HB on the CdS surfaces, the C-H bond dissociation energy (BDE) at 1.39 eV is lower than the BDE of the O-H bond at 2.69 eV, therefore improving the selectivity of the DOB. Conversely, on Ni/CdS photocatalysts, the O-H groups in HB orient toward the photocatalyst surfaces. The BDE of the O-H bonds is 1.11 eV to form BZ, which is lower than the BDE of the C-H bonds to the DOB (1.33 eV), thereby enhancing the selectivity of BZ. As a result, CdS photocatalysts can achieve complete conversion of BA to 80.4% of the DOB after 9 h of visible light irradiation, while 0.3% Ni/CdS photocatalysts promote complete conversion of BA to 81.5% of BZ after only 5 h. This work provides a promising strategy in selective conversion of BA to either DOB or BZ through delicate design of photocatalysts.

摘要

苯甲醇(BA)是一种主要的生物质衍生物,通过光催化C-C偶联反应可进一步转化为脱氧安息香(DOB)和安息香(BZ),作为高价值产品用于工业应用。光催化过程包含两个反应步骤,即(1)BA与氢化安息香(HB)中间体的C-C偶联,以及(2)HB脱水生成DOB或脱氢生成BZ。我们发现DOB或BZ的生成主要取决于HB中C-H或O-H键的活化。在本研究中,精心设计了相结CdS光催化剂和Ni/CdS光催化剂,通过调整HB在光催化剂表面的吸附取向来精确控制HB中C-H或O-H键的活化。将HB中的C-H基团定向排列在CdS表面后,C-H键的解离能(BDE)为1.39 eV,低于O-H键的BDE(2.69 eV),从而提高了DOB的选择性。相反,在Ni/CdS光催化剂上,HB中的O-H基团朝向光催化剂表面。O-H键的BDE为1.11 eV以形成BZ,低于生成DOB的C-H键的BDE(1.33 eV),从而提高了BZ的选择性。结果,CdS光催化剂在可见光照射9小时后可实现BA完全转化为80.4%的DOB,而0.3%的Ni/CdS光催化剂仅在5小时后就能促进BA完全转化为81.5%的BZ。这项工作通过精心设计光催化剂,为将BA选择性转化为DOB或BZ提供了一种有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fce0/11494511/260fa618055d/cs4c03426_0006.jpg

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