Chiu Hau-Yu, Liu Yi-Chen, Hsieh Yi-Ting, Sun I-Wen
Department of Chemistry, National Cheng Kung University, Tainan 70101, Taiwan.
Department of Chemistry, Soochow University, Taipei 11102, Taiwan.
ACS Omega. 2017 Aug 24;2(8):4911-4919. doi: 10.1021/acsomega.7b00924. eCollection 2017 Aug 31.
The high thermal stability of the Lewis acidic ZnCl-1-ethyl-3-methylimidazolium chloride ionic liquid enables the in situ fabrication of hierarchical nanostructured Pd-Au bimetallic surfaces via electrochemical alloying/dealloying of (PdAu)Zn on PdAu substrate in the ionic liquid. Nanostructured PdAu samples that consist of patterned cracks and ligaments are fabricated by using potential cycling method and constant-potential electrolysis method, respectively. The effects of working temperature and amounts of the deposited Zn on the morphology of the dealloyed (PdAu)Zn nanostructure are examined. The formation of the hierarchical nanostructure is a compromise between high-surface-diffusive Au and low-surface-diffusive Pd. Whereas Au in the alloy promotes the nanostructure formation, Pd in the PdAu nanostructure protects this material from coarsening. Compared with the plain PdAu, the nanostructured PdAu surface prepared at 150 °C exhibits a significantly higher active surface area and a high capability for the electro-oxidation of glucose.
路易斯酸性的氯化锌-1-乙基-3-甲基咪唑鎓离子液体具有高热稳定性,这使得通过在离子液体中对PdAu基底上的(PdAu)Zn进行电化学合金化/脱合金化,原位制备出具有分级纳米结构的Pd-Au双金属表面成为可能。分别采用电位循环法和恒电位电解法制备了由图案化裂纹和韧带组成的纳米结构PdAu样品。研究了工作温度和沉积锌量对脱合金化(PdAu)Zn纳米结构形貌的影响。分级纳米结构的形成是高表面扩散性的金和低表面扩散性的钯之间的一种平衡。合金中的金促进了纳米结构的形成,而PdAu纳米结构中的钯则保护这种材料不发生粗化。与普通的PdAu相比,在150℃下制备的纳米结构PdAu表面具有显著更高的活性表面积和对葡萄糖电氧化的高能力。