Soochow Institute for Energy and Materials Innovations (SIEMIS), Soochow University, Suzhou 215006, China.
SynCat@Beijing, Synfuels China Technology Co. Ltd., Leyuan South Street II, No. 1, Beijing 101407, China.
J Am Chem Soc. 2023 Mar 8;145(9):5353-5362. doi: 10.1021/jacs.2c13196. Epub 2023 Feb 28.
Photocatalysis provides an eco-friendly route for the hydrogenation of aromatic carbonyls to O-free aromatics, which is an important refining process in the chemical industry that is generally carried out under high pressure of hydrogen at elevated temperatures. However, aromatic carbonyls are often only partially hydrogenated to alcohols, which readily desorbs and are hardly further deoxygenated under ambient conditions. Here, we show that by constructing an oxide surface over the Pd cocatalyst supported on graphitic carbon nitride, an alternative hydrogenation path of aromatic carbonyls becomes available via a step-wise acetalization and hydrogenation, thus allowing efficient and selective production of O-free aromatics. The PdO surface allows for optimum adsorption of reactants and intermediates and rapid abstraction of hydrogen from the alcohol donor, favoring fast acetalization of the carbonyls and their consecutive hydrogenation to O-free hydrocarbons. The photocatalytic hydrogenation of benzaldehyde into toluene shows a high selectivity of >90% and a quantum efficiency of ∼10.2% under 410 nm irradiation. By adding trace amounts of HCl to the reaction solution, the PdO surface remains stable and active for long-term operation at high concentrations, offering perspective for practical applications.
光催化为芳香族羰基化合物氢化生成无氧芳烃提供了一种环保途径,这是化学工业中的一个重要精炼过程,通常在高温下高压氢气下进行。然而,芳香族羰基化合物通常只是部分氢化生成醇,醇在环境条件下容易解吸,几乎无法进一步脱氧。在这里,我们通过在负载在石墨相氮化碳上的钯助催化剂上构建氧化物表面,展示了芳香族羰基化合物的另一种氢化途径,通过逐步缩醛化和氢化,从而可以高效和选择性地生产无氧芳烃。PdO 表面允许反应物和中间体的最佳吸附以及从醇供体中快速提取氢,有利于羰基的快速缩醛化及其连续氢化生成无氧烃。在 410nm 照射下,苯甲醛光催化氢化生成甲苯的选择性>90%,量子效率约为 10.2%。通过向反应溶液中添加痕量的 HCl,可以使 PdO 表面在高浓度下长时间稳定且保持活性,为实际应用提供了前景。