Inkjet Printing Meets Electrochemical Energy Conversion.

Inkjet Printing Meets Electrochemical Energy Conversion.
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喷墨打印满足电化学能量转换。

DOI:
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发表时间:
2015
期刊:
Chimia (Basel)
影响因子:
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通讯作者:
H. Girault
H. Girault
中科院分区:
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文献类型:
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作者:
A. Lesch;F. Cortés;Victor Costa Bassetto;V. Amstutz;H. Girault

文献摘要

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喷墨打印是一种非常强大的数字和无掩模微制造技术,已经引起了几个致力于电化学能量转换概念的研究小组的注意。在这篇简短的综述中,概述了喷墨打印在寻找新的电催化剂材料和制备聚合物电解质膜燃料电池催化层方面的最新努力。介绍了洛桑联邦理工学院物理和分析电化学实验室(LEPA)在催化层和膜电极组件喷墨打印方面的最新方法,并总结了瓦莱州Energypolis新校区基于喷墨打印的LEPA未来的能源研究方向。
Inkjet printing is a very powerful digital and mask-less microfabrication technique that has attracted the attention of several research groups working on electrochemical energy conversion concepts. In this short review, an overview is given about recent efforts to employ inkjet printing for the search of new electrocatalyst materials and for the preparation of catalyst layers for polymer electrolyte membrane fuel cell applications. Recent approaches of the Laboratory of Physical and Analytical Electrochemistry (LEPA) at the École Polytechnique Fédérale de Lausanne for the inkjet printing of catalyst layers and membrane electrode assemblies are presented and future energy research directions of LEPA based on inkjet printing in the new Energypolis campus in the Canton of Valais are summarized.