Wan Chieh-Hao, Wu Chun-Lin, Lin Meng-Tsun, Shih Chihhsiong
Department of Electro-Optical and Energy Engineering, MingDao University, Changhua 52345, Taiwan.
J Nanosci Nanotechnol. 2010 Jul;10(7):4612-8. doi: 10.1166/jnn.2010.1711.
In this paper, a modified technique to prepare Pt-Ir catalyst layer on the proton exchange membrane (PEM) surface using the impregnation-reduction (IR) method is proposed to improve the electrocatalytic activity as well as the life cycle of the bifunctional oxygen electrode (BOE). The resulted electrocatalysts were characterized by the Scanning Electron Microscopy (SEM), X-ray Diffraction (XRD), Electron Probe Micro-Analysis (EPMA), and Transmission Electron Microscope (TEM). The electrocatalytic properties of the Pt-Ir layer on PEM surface for the oxygen reduction and water oxidation reactions as well as the life cycle of MEA were investigated. Experimental results showed that the Ir particles were dispersed densely in the platinum layer through the modified IR technique. The atomic ratio of Pt over Ir elements was 9:1, and the resulted thickness of the obtained Pt-Ir catalyst layer was about 1.0 microm. The Pt-Ir catalyst layer was composed of Pt layer doped with Ir nano-particles comprising nano Pt-Ir alloy phase. The large surface area of Ir core with Pt shell particles and the presence of nano Pt-Ir alloy phase led to a higher electrocatalytic activity of BOE. Due to the good binding between the Nafion membrane and the Pt-Ir alloy catalyst, as well as the composite structure of the resulted Pt-Ir, the life cycle of Unitized Regenerative Fuel Cell (URFC) is improved through this novel BOE.
本文提出了一种改进的技术,采用浸渍还原(IR)法在质子交换膜(PEM)表面制备Pt-Ir催化剂层,以提高双功能氧电极(BOE)的电催化活性和使用寿命。通过扫描电子显微镜(SEM)、X射线衍射(XRD)、电子探针微分析(EPMA)和透射电子显微镜(TEM)对所得电催化剂进行了表征。研究了PEM表面Pt-Ir层对氧还原和水氧化反应的电催化性能以及膜电极组件(MEA)的使用寿命。实验结果表明,通过改进的IR技术,Ir颗粒在铂层中密集分散。Pt与Ir元素的原子比为9:1,所得Pt-Ir催化剂层的厚度约为1.0微米。Pt-Ir催化剂层由掺杂有Ir纳米颗粒的Pt层组成,包含纳米Pt-Ir合金相。具有Pt壳层颗粒的Ir核的大表面积和纳米Pt-Ir合金相的存在导致BOE具有更高的电催化活性。由于Nafion膜与Pt-Ir合金催化剂之间的良好结合以及所得Pt-Ir的复合结构,通过这种新型BOE提高了统一再生燃料电池(URFC)的使用寿命。