Li Xingchi, You Huaming, Wang Cheng, Liu Dongmei, Yu Rui, Guo Siyu, Wang Yuan, Du Yukou
College of Chemistry, Chemical Engineering and Materials Science, Soochow University, 199 Renai Road, Suzhou 215123, PR China.
College of Chemistry, Chemical Engineering and Materials Science, Soochow University, 199 Renai Road, Suzhou 215123, PR China.
J Colloid Interface Sci. 2021 Jun;591:203-210. doi: 10.1016/j.jcis.2021.02.018. Epub 2021 Feb 9.
Modifying the electronic structure and optimizing the geometric structure can expeditiously tune the electrocatalytic properties of catalysts, resulting in considerably enhanced electrocatalytic performance towards electrocatalytic oxidation of liquid fuels. We herein report a simple synthetic strategy to prepare Bi-doped 3D taraxacum-like Pd nanocages (NCs) composed of porous nanosheets, which possess high surface areas and strong synergistic effects. Notably, a trace of Bi diffuses into the lattice of Pd and increases the electronic effects of the surface of Pd, endowing PdBi-0.5 NCs/C with superior electrocatalytic performance towards ethanol oxidation reaction (EOR). The mass activity and specific activity of PdBi-0.5 NCs/C were 3494.8 mA mg and 10.37 mA cm, being 4.08- and 4.82- fold enhancements as compared with commercial Pd/C, respectively. Moreover, the highly open porous 3D nanocages structure with rich active sites and defects can also facilitate the mass/electron transfer to favor the EOR kinetics.
改变电子结构并优化几何结构可以迅速调节催化剂的电催化性能,从而显著提高其对液体燃料电催化氧化的电催化性能。我们在此报告一种简单的合成策略,用于制备由多孔纳米片组成的Bi掺杂三维蒲公英状Pd纳米笼(NCs),其具有高表面积和强协同效应。值得注意的是,微量的Bi扩散到Pd晶格中,增加了Pd表面的电子效应,使PdBi-0.5 NCs/C对乙醇氧化反应(EOR)具有优异的电催化性能。PdBi-0.5 NCs/C的质量活性和比活性分别为3494.8 mA mg和10.37 mA cm,与商业Pd/C相比分别提高了4.08倍和4.82倍。此外,具有丰富活性位点和缺陷的高度开放的多孔三维纳米笼结构还可以促进质量/电子转移,有利于EOR动力学。