The Education Ministry Key Lab of Resource Chemistry, Department of Chemistry, Shanghai Normal University , Shanghai 200234, P. R. China.
ACS Appl Mater Interfaces. 2018 Feb 7;10(5):4743-4749. doi: 10.1021/acsami.7b17731. Epub 2018 Jan 25.
Large-scale preparation of hollow echinus-like PdCuCo alloy nanostructures (HENSs) with a high surface area-to-volume ratio, rich active sites, and relatively efficient catalytic activity has attracted considerable research interest. Herein, we present an economic and facile approach to synthesize HENSs by galvanic exchange reactions using Co nanospheres as sacrificial templates. Moreover, the catalytic activity could be adjusted via changing the composition of the catalyst. The composition, morphology, and crystal structure of the as-obtained nanomaterials are characterized by various techniques, such as inductively coupled plasma atomic emission spectrometry, transmission electron microscopy, and X-ray diffraction. Electrochemical catalytic measurement results prove that the PdCuCo catalyst obtained under optimal preparation conditions exhibits 10-fold higher activity for ethanol oxidation in comparison with the commercially available 20% Pd/C catalyst. The eminent performance of the PdCuCo electrochemical catalyst could be ascribed to the peculiar echinus-like nanostructures.
大规模制备具有高表面积体积比、丰富的活性位点和相对高效催化活性的中空海胆状 PdCuCo 合金纳米结构 (HENSs) 引起了相当多的研究兴趣。在此,我们提出了一种经济且简便的方法,通过使用 Co 纳米球作为牺牲模板的电交换反应来合成 HENSs。此外,通过改变催化剂的组成可以调节催化活性。通过电感耦合等离子体原子发射光谱、透射电子显微镜和 X 射线衍射等各种技术对所获得的纳米材料的组成、形态和晶体结构进行了表征。电化学催化测量结果证明,在最佳制备条件下获得的 PdCuCo 催化剂在乙醇氧化反应中的活性比市售的 20% Pd/C 催化剂高 10 倍。PdCuCo 电化学催化剂的卓越性能可归因于独特的海胆状纳米结构。