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用于下一代燃料电池的柔性聚亚苯基质子传导膜的设计

Design of flexible polyphenylene proton-conducting membrane for next-generation fuel cells.

作者信息

Miyake Junpei, Taki Ryunosuke, Mochizuki Takashi, Shimizu Ryo, Akiyama Ryo, Uchida Makoto, Miyatake Kenji

机构信息

Clean Energy Research Center, University of Yamanashi, 4-4-37 Takeda, Kofu, Yamanashi 400-8510, Japan.

Fuel Cell Nanomaterials Center, University of Yamanashi, Kofu, Yamanashi 400-8510, Japan.

出版信息

Sci Adv. 2017 Oct 25;3(10):eaao0476. doi: 10.1126/sciadv.aao0476. eCollection 2017 Oct.

Abstract

Proton exchange membrane fuel cells (PEMFCs) are promising devices for clean power generation in automotive, stationary, and portable applications. Perfluorosulfonic acid (PFSA) ionomers (for example, Nafion) have been the benchmark PEMs; however, several problems, including high gas permeability, low thermal stability, high production cost, and environmental incompatibility, limit the widespread dissemination of PEMFCs. It is believed that fluorine-free PEMs can potentially address all of these issues; however, none of these membranes have simultaneously met the criteria for both high performance (for example, proton conductivity) and durability (for example, mechanical and chemical stability). We present a polyphenylene-based PEM (SPP-QP) that fulfills the required properties for fuel cell applications. The newly designed PEM exhibits very high proton conductivity, excellent membrane flexibility, low gas permeability, and extremely high stability, with negligible degradation even under accelerated degradation conditions, which has never been achieved with existing fluorine-free PEMs. The polyphenylene PEM also exhibits reasonably high fuel cell performance, with excellent durability under practical conditions. This new PEM extends the limits of existing fluorine-free proton-conductive materials and will help to realize the next generation of PEMFCs via cost reduction as well as the performance improvement compared to the present PFSA-based PEMFC systems.

摘要

质子交换膜燃料电池(PEMFCs)是用于汽车、固定式和便携式应用中清洁发电的有前景的装置。全氟磺酸(PFSA)离聚物(例如,Nafion)一直是基准质子交换膜;然而,包括高气渗透性、低热稳定性、高生产成本和环境不兼容性在内的几个问题限制了PEMFCs的广泛应用。据信,无氟质子交换膜有可能解决所有这些问题;然而,这些膜中没有一种同时满足高性能(例如,质子传导率)和耐久性(例如,机械和化学稳定性)的标准。我们提出了一种基于聚苯的质子交换膜(SPP-QP),它满足燃料电池应用所需的性能。新设计的质子交换膜表现出非常高的质子传导率、优异的膜柔韧性、低气体渗透性和极高的稳定性,即使在加速降解条件下降解也可忽略不计,这是现有无氟质子交换膜从未实现过的。聚苯质子交换膜在实际条件下也表现出相当高的燃料电池性能和优异的耐久性。这种新型质子交换膜扩展了现有无氟质子传导材料的极限,并将通过降低成本以及与目前基于PFSA的PEMFC系统相比提高性能,有助于实现下一代PEMFCs。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d814/5656417/6c6b2c781347/aao0476-F1.jpg

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