Zhuang Zhihong, Zhang Yicheng, Hu Liang, Ying Hangjun, Han Weiqiang
School of Materials Science and Engineering, Zhejiang University, 38 Zheda Road, Hangzhou, 310027, Zhejiang, People's Republic of China.
Chem Asian J. 2020 Jul 16;15(14):2153-2159. doi: 10.1002/asia.202000379. Epub 2020 Jun 15.
The typical preparation route of carbon-supported metallic catalyst is complex and uneconomical. Herein, we reported a thiol-assisted one-pot method by using 3-mercaptopropionic acid (MPA) to synthesize carbon-supported metal nanoparticles catalysts for efficient electrocatalytic reduction of carbon dioxide (CO RR). We found that the synthesized Au-MPA/C catalyst achieves a maximum CO faradaic efficiency (FE) of 96.2% with its partial current density of -11.4 mA/cm , which is much higher than that over Au foil or MPA-free carbon-supported Au (Au/C). The performance improvement in CO RR over the catalyst is probably derived from the good dispersion of Au nanoparticles and the surface modification of the catalyst caused by the specific interaction between Au nanoparticles and MPA. This thiol-assisted method can be also extended to synthesize Ag-MPA/C with enhanced CO RR performance.
碳载金属催化剂的典型制备路线复杂且不经济。在此,我们报道了一种硫醇辅助的一锅法,通过使用3-巯基丙酸(MPA)合成用于高效电催化还原二氧化碳(CO RR)的碳载金属纳米颗粒催化剂。我们发现,合成的Au-MPA/C催化剂实现了96.2%的最大CO法拉第效率(FE),其分电流密度为-11.4 mA/cm ,远高于Au箔或无MPA的碳载Au(Au/C)上的效率。该催化剂在CO RR方面的性能提升可能源于Au纳米颗粒的良好分散以及Au纳米颗粒与MPA之间的特定相互作用对催化剂的表面改性。这种硫醇辅助方法还可扩展用于合成具有增强CO RR性能的Ag-MPA/C。