Zhang Ruikang, Shao Mingfei, Li Zhenhua, Ning Fanyu, Wei Min, Evans David G, Duan Xue
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beisanhuan East Road No.15, Beijing, P. R. China.
Chemistry. 2017 Jun 16;23(34):8142-8147. doi: 10.1002/chem.201701107. Epub 2017 May 24.
Selective oxidation of alcohols to aldehydes plays an important role in perfumery, pharmaceuticals, and agrochemicals industry. Different from traditional catalysis or photocatalytic process, here we report an effective photoelectrochemical (PEC) approach for selective anaerobic oxidation of alcohols accompanied with H production by means of solar energy. By using TiO nanowires modified with graphitic carbon layer as photoanode, benzyl alcohol (BA) has been oxidized to benzaldehyde with high efficiency and selectivity (>99 %) in aqueous media at room temperature, superior to individual electrocatalytic or photocatalytic processes. Moreover, this PEC synthesis method can be effectively extended to the oxidation of several other aryl alcohols to their corresponding aldehydes under mild conditions. The electron spin resonance (ESR) results indicate the formation of intermediate active oxygen (O ) on the photoanode, which further reacts with alcohols to produce final aldehyde compounds.
醇选择性氧化为醛在香料、制药和农用化学品工业中起着重要作用。与传统催化或光催化过程不同,在此我们报道了一种有效的光电化学(PEC)方法,用于通过太阳能将醇选择性厌氧氧化并伴随氢气产生。通过使用用石墨碳层修饰的TiO纳米线作为光阳极,在室温下的水性介质中,苯甲醇(BA)已被高效且选择性地(>99%)氧化为苯甲醛,优于单独的电催化或光催化过程。此外,这种PEC合成方法可以在温和条件下有效地扩展到将其他几种芳基醇氧化为其相应的醛。电子自旋共振(ESR)结果表明在光阳极上形成了中间活性氧(O),其进一步与醇反应生成最终的醛化合物。