College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, PR China.
Nanoscale. 2017 Nov 9;9(43):17004-17012. doi: 10.1039/c7nr06737b.
Highly open metallic nanocages represent a novel class of nanostructures for advanced catalytic applications in direct liquid fuels cells due to their specific capability of providing easy access to reactants in both internal and external active sites and also desirable electronic structures for the adsorption of molecules, which render superior catalytic performances. However, to date, the rational design of trimetallic nanocages with tunable compositions remains a challenge. Herein, we demonstrate a facile method combining seed mediated and galvanic replacement for the preparation of unique trimetallic Pd-Au-Ag nanocages catalysts with tunable compositions. A series of controlled experiments reveal that the reaction time plays a crucial role in affecting the morphology of the final product. Importantly, the newly-generated Pd-Au-Ag nanocages are high-performance electrocatalysts for the oxidation of both ethylene glycol and glycerol with mass activities of 7578.2 and 5676.1 mA mg, respectively, which are far superior to that of commercial Pd/C. We firmly believe that the strategy and enhanced electrocatalysts developed in this study can be well applied to boost the commercial development of fuel cell technologies.
高度开放的金属纳米笼因其在直接液体燃料电池中具有提供反应物易于进入内部和外部活性位的特殊能力以及对分子吸附的理想电子结构而成为用于先进催化应用的新型纳米结构。然而,迄今为止,具有可调组成的三元金属纳米笼的合理设计仍然是一个挑战。在此,我们展示了一种简便的方法,将种子介导和电置换结合起来,制备具有可调组成的独特三元 Pd-Au-Ag 纳米笼催化剂。一系列对照实验表明,反应时间在影响最终产物的形态方面起着至关重要的作用。重要的是,新生成的 Pd-Au-Ag 纳米笼是氧化乙二醇和甘油的高性能电催化剂,其质量活性分别为 7578.2 和 5676.1 mA mg,远远超过商业 Pd/C。我们坚信,本研究中开发的策略和增强型电催化剂可以很好地应用于推动燃料电池技术的商业发展。