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Acid-in-Clay Electrolyte for Wide-Temperature-Range and Long-Cycle Proton Batteries

  • Shitong Wang
  • , Heng Jiang
  • , Yanhao Dong
  • , David Clarkson
  • , He Zhu
  • , Charles M. Settens
  • , Yang Ren
  • , Thanh Nguyen
  • , Fei Han
  • , Weiwei Fan
  • , So Yeon Kim
  • , Jianan Zhang
  • , Weijiang Xue
  • , Sean K. Sandstrom
  • , Guiyin Xu
  • , Emre Tekoglu
  • , Mingda Li
  • , Sili Deng
  • , Qi Liu
  • , Steven G. Greenbaum
  • Xiulei Ji*, Tao Gao*, Ju Li*
*此作品的通讯作者
  • Massachusetts Institute of Technology
  • University of Utah
  • Oregon State University
  • City University of New York
  • City University of Hong Kong

科研成果: 期刊稿件文章同行评审

摘要

Proton conduction underlies many important electrochemical technologies. A family of new proton electrolytes is reported: acid-in-clay electrolyte (AiCE) prepared by integrating fast proton carriers in a natural phyllosilicate clay network, which can be made into thin-film (tens of micrometers) fluid-impervious membranes. The chosen example systems (sepiolite–phosphoric acid) rank top among the solid proton conductors in terms of proton conductivities (15 mS cm−1 at 25 °C, 0.023 mS cm−1 at −82 °C), electrochemical stability window (3.35 V), and reduced chemical reactivity. A proton battery is assembled using AiCE as the solid electrolyte membrane. Benefitting from the wider electrochemical stability window, reduced corrosivity, and excellent ionic selectivity of AiCE, the two main problems (gassing and cyclability) of proton batteries are successfully solved. This work draws attention to the element cross-over problem in proton batteries and the generic “acid-in-clay” solid electrolyte approach with superfast proton transport, outstanding selectivity, and improved stability for room- to cryogenic-temperature protonic applications.

源语言英语
文章编号2202063
期刊Advanced Materials
34
23
DOI
出版状态已出版 - 9 6月 2022
已对外发布

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