4.6 Article

High-performance binary cross-linked alkaline anion polymer electrolyte membranes for all-solid-state supercapacitors and flexible rechargeable zinc-air batteries

期刊

JOURNAL OF MATERIALS CHEMISTRY A
卷 7, 期 18, 页码 11257-11264

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9ta02314c

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资金

  1. National Natural Science Foundation of China [91645110]
  2. International Academic Cooperation and Exchange Program of Shanghai Science and Technology Committee [18160723600]
  3. Fundamental Research Funds for the Central Universities [2232018A3-06, CUSF-DH-D-2018084]

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Development of a high-performance alkaline anion-exchange membrane (AAEM) is a subject of intense research owing to its potential applications in polymer electrolyte membrane fuel cells, supercapacitors and zinc-air batteries. However, high ionic conductivity is still a major challenge for AAEM. Herein, we developed a novel binary cross-linking strategy by employing glutaraldehyde (GA) and pyrrole-2-carboxaldehyde (PCL) as binary cross-linkers for fabricating a highly conductive, flexible and thin AAEM composed of poly(vinyl alcohol)/guar hydroxypropyltrimonium chloride (PGG-GP). The resultant PGG-GP membrane delivered an exceptional hydroxide conductivity of 0.123 S cm(-1) at room temperature, while retaining high swelling resistance, outstanding mechanical strength and excellent thermal stability. An activated carbon-based all-solid-state supercapacitor exploiting the PGG-GP membrane as an electrolyte demonstrated a long cycling life of 8000 charge/discharge cycles with 87.5% capacitance retention. Moreover, the flexible all-solid-state zinc-air batteries comprising the PGG-GP polymer electrolyte displayed a peak power density of 50.2 mW cm(-2) and a superior cycling stability (9 h @ 2 mA cm(-2)). These merits make the PGG-GP membrane very promising for application in both all-solid-state supercapacitors and flexible, rechargeable zinc-air batteries, providing new opportunities for improving the ionic conductivity in all-solid-state devices.

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