Shi Yanzhe, Luo Bingcheng, Liu Runqi, Sang Rui, Cui Dandan, Junge Henrik, Du Yi, Zhu Tianle, Beller Matthias, Li Xiang
School of Space and Environment, Beihang University, Beijing, 100191, P. R. China.
College of Science, China Agricultural University, Beijing, 100083, P. R. China.
Angew Chem Int Ed Engl. 2023 Oct 23;62(43):e202313099. doi: 10.1002/anie.202313099. Epub 2023 Sep 19.
The development of practical materials for (de)hydrogenation reactions is a prerequisite for the launch of a sustainable hydrogen economy. Herein, we present the design and construction of an atomically dispersed dual-metal site Co/Cu-N-C catalyst allowing significantly improved dehydrogenation of formic acid, which is available from carbon dioxide and green hydrogen. The active catalyst centers consist of specific CoCuN moieties with double-N-bridged adjacent metal-N clusters decorated on a nitrogen-doped carbon support. At optimal conditions the dehydrogenation performance of the nanostructured material (mass activity 77.7 L ⋅ g ⋅ h ) is up to 40 times higher compared to commercial 5 % Pd/C. In situ spectroscopic and kinetic isotope effect experiments indicate that Co/Cu-N-C promoted formic acid dehydrogenation follows the so-called formate pathway with the C-H dissociation of HCOO* as the rate-determining step. Theoretical calculations reveal that Cu in the CoCuN moiety synergistically contributes to the adsorption of intermediate HCOO* and raises the d-band center of Co to favor HCOO* activation and thereby lower the reaction energy barrier.
开发用于(脱)氢化反应的实用材料是启动可持续氢经济的先决条件。在此,我们展示了一种原子分散的双金属位点Co/Cu-N-C催化剂的设计与构建,该催化剂能显著提高甲酸的脱氢性能,甲酸可由二氧化碳和绿色氢气制得。活性催化剂中心由特定的CoCuN部分组成,在氮掺杂碳载体上装饰有双N桥连的相邻金属-N簇。在最佳条件下,纳米结构材料的脱氢性能(质量活性77.7 L·g⁻¹·h⁻¹)比商业5% Pd/C高出40倍。原位光谱和动力学同位素效应实验表明,Co/Cu-N-C促进的甲酸脱氢遵循所谓的甲酸盐途径,其中HCOO的C-H解离是速率决定步骤。理论计算表明,CoCuN部分中的Cu协同促进中间体HCOO的吸附,并提高Co的d带中心以利于HCOO*的活化,从而降低反应能垒。