Yao Xin-Rong, Jia Meng-Ze, Miao Xiao-Li, Yu Shi-Kai, Chen Yun-Rui, Pan Jia-Qi, Zhang Jie
MOE Key Laboratory of Cluster Science, Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 102488, P. R. China.
ChemSusChem. 2024 Aug 12;17(15):e202301911. doi: 10.1002/cssc.202301911. Epub 2024 Apr 5.
The multifunctional derivatization of alcohols has been achieved by the bipyridinium-based conjugated small molecule photocatalysts with redox center and Lewis acid site. Besides exhibiting high activity in the selective generation of aldehydes/ketones, acids from alcohols through solvent modulation, this system renders the first selective synthesis of esters via an attractive cross-coupling pattern, whose reaction route is significantly different from the traditional condensation of alcohols and acids or esterification from hemiacetals. Following the oxidization of alcohol to aldehyde via bipyridinium-mediated electron and energy transfer, the Lewis acid site of bipyridinium then activates the aldehyde and methanol to obtain the acetal, which further reacts with methanol to generate ester. This method not only demonstrates a clear advantage of bipyridinium in diverse catalytic activities, but also paves the way for designing efficient multifunctional small molecule photocatalysts. This metal- and additive-free photocatalytic esterification reaction marks a significant advancement towards a more environmentally friendly, cost-effective and green sustainable approach, attributed to the utilization of renewable substrate alcohol and the abundant, low-cost air as the oxidant. The mildness of this esterification reaction condition provides a more suitable alternative for large-scale industrial production of esters.
基于联吡啶的具有氧化还原中心和路易斯酸位点的共轭小分子光催化剂实现了醇的多功能衍生化。除了在通过溶剂调节从醇选择性生成醛/酮、酸方面表现出高活性外,该体系还通过一种有吸引力的交叉偶联模式首次实现了酯的选择性合成,其反应路线与传统的醇酸缩合或半缩醛酯化反应有显著不同。通过联吡啶介导的电子和能量转移将醇氧化为醛后,联吡啶的路易斯酸位点激活醛和甲醇以得到缩醛,缩醛再与甲醇反应生成酯。该方法不仅展示了联吡啶在多种催化活性方面的明显优势,还为设计高效的多功能小分子光催化剂铺平了道路。这种无金属和添加剂的光催化酯化反应标志着朝着更环保、更具成本效益和绿色可持续的方法迈出了重要一步,这归功于可再生底物醇的利用以及丰富、低成本的空气作为氧化剂。这种酯化反应条件的温和性为酯的大规模工业生产提供了更合适的替代方案。