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质子交换膜燃料电池中铂电极催化剂失活的动态环境透射电子显微镜观察。

Dynamic environmental transmission electron microscopy observation of platinum electrode catalyst deactivation in a proton-exchange-membrane fuel cell.

机构信息

Institute of Advanced Research, Nagoya University, Chikusa-ku, Nagoya, 464-8603, Japan.

出版信息

Nanotechnology. 2013 Feb 15;24(6):065705. doi: 10.1088/0957-4484/24/6/065705. Epub 2013 Jan 22.

Abstract

Spherical-aberration-corrected environmental transmission electron microscopy (AC-ETEM) was applied to study the catalytic activity of platinum/amorphous carbon electrode catalysts in proton-exchange-membrane fuel cells (PEMFCs). These electrode catalysts were characterized in different atmospheres, such as hydrogen and air, and a conventional high vacuum of 10(-5) Pa. A high-speed charge coupled device camera was used to capture real-time movies to dynamically study the diffusion and reconstruction of nanoparticles with an information transfer down to 0.1 nm, a time resolution below 0.2 s and an acceleration voltage of 300 kV. With such high spatial and time resolution, AC-ETEM permits the visualization of surface-atom behaviour that dominates the coalescence and surface-reconstruction processes of the nanoparticles. To contribute to the development of robust PEMFC platinum/amorphous carbon electrode catalysts, the change in the specific surface area of platinum particles was evaluated in hydrogen and air atmospheres. The deactivation of such catalysts during cycle operation is a serious problem that must be resolved for the practical use of PEMFCs in real vehicles. In this paper, the mechanism for the deactivation of platinum/amorphous carbon electrode catalysts is discussed using the decay rate of the specific surface area of platinum particles, measured first in a vacuum and then in hydrogen and air atmospheres for comparison.

摘要

球差校正环境透射电子显微镜(AC-ETEM)被应用于研究质子交换膜燃料电池(PEMFC)中铂/非晶碳电极催化剂的催化活性。这些电极催化剂在不同的气氛中进行了表征,例如氢气和空气,以及传统的 10(-5) Pa 高真空度。高速电荷耦合器件相机用于捕获实时电影,以动态研究纳米粒子的扩散和重构,其信息传递低至 0.1nm,时间分辨率低于 0.2s,加速电压为 300kV。如此高的空间和时间分辨率,AC-ETEM 允许对表面原子行为进行可视化,这些行为主导着纳米粒子的聚结和表面重构过程。为了促进稳健的 PEMFC 铂/非晶碳电极催化剂的发展,评估了铂颗粒在氢气和空气中的比表面积变化。在实际车辆中实际使用 PEMFC 时,必须解决此类催化剂在循环运行期间失活的问题。在本文中,使用铂颗粒比表面积的衰减率来讨论铂/非晶碳电极催化剂失活的机制,首先在真空中测量,然后在氢气和空气中进行比较。

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