Li Junsheng, Wang Zhengbang, Li Junrui, Pan Mu, Tang Haolin
J Nanosci Nanotechnol. 2014 Feb;14(2):1181-93. doi: 10.1166/jnn.2014.8744.
As a clean and highly efficient energy source, the proton exchange membrane fuel cell (PEMFC) has been considered an ideal alternative to traditional fossil energy sources. Great efforts have been devoted to realizing the commercialization of the PEMFC in the past decade. To eliminate some technical problems that are associated with the low-temperature operation (such as catalyst poisoning and poor water management), PEMFCs are usually operated at elevated temperatures (e.g., > 100 degrees C). However, traditional proton exchange membrane (PEM) shows poor performance at elevated temperature. To achieve a high-performance PEM for high temperature fuel cell applications, novel PEMs, which are based on nanostructures, have been developed recently. In this review, we discuss and summarize the methods for fabricating the nanostructure-based PEMs for PEMFC operated at elevated temperatures and the high temperature performance of these PEMs. We also give an outlook on the rational design and development of the nanostructure-based PEMs.
作为一种清洁高效的能源,质子交换膜燃料电池(PEMFC)被认为是传统化石能源的理想替代品。在过去十年中,人们为实现PEMFC的商业化付出了巨大努力。为消除与低温运行相关的一些技术问题(如催化剂中毒和水管理不善),PEMFC通常在高温下运行(例如,>100摄氏度)。然而,传统质子交换膜(PEM)在高温下表现不佳。为了获得用于高温燃料电池应用的高性能PEM,最近已开发出基于纳米结构的新型PEM。在这篇综述中,我们讨论并总结了用于制造在高温下运行的PEMFC的基于纳米结构的PEM的方法以及这些PEM的高温性能。我们还对基于纳米结构的PEM的合理设计和开发进行了展望。