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Cited 6 time in webofscience Cited 9 time in scopus
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Al2O3-incorporated proton-conducting solid polymer electrolytes for electrochemical devices: a proficient method to achieve high electrochemical performance

Authors
Regu, T.Ambika, C.Karuppasamy, K.Jeon, Ji-HoonJeong, Yen-TaeVikraman, DhanasekaranRaj, T. Ajith BoscoKim, Hyun-Seok
Issue Date
Nov-2019
Publisher
SPRINGER HEIDELBERG
Keywords
Polyvinylpyrrolidone; Electrolytes; Proton battery; AC impedance analysis
Citation
IONICS, v.25, no.11, pp 5117 - 5129
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
IONICS
Volume
25
Number
11
Start Page
5117
End Page
5129
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/7470
DOI
10.1007/s11581-019-03075-5
ISSN
0947-7047
1862-0760
Abstract
A new series of proton-conducting solid polymer electrolytes with different compositions, comprising polyvinylpyrrolidone (PVPK40) and polymethylmethacrylate (PMMA) as host polymers, methanesulfonic acid (MSA) as a proton-conducting salt, and alumina (Al2O3) as the nanofiller, were prepared using solution casting. High proton-conducting samples were identified and utilized for the construction of primary proton batteries. The electrical properties of the prepared electrolytes were investigated through AC impedance analysis. The highest proton conductivity (2.51 x 10(-5) S/cm) was achieved at room temperature by PMMA-PVPK40-MSA-based blended polymer electrolytes (BS3). The discharge characteristics of filler-dispersed solid polymer electrolytes were better than those of other solid polymer electrolytes. The estimated energy density of the constructed proton battery using solid polymer electrolytes with blended polymers and nanofillers was 0.66 and 3.25 Wh kg(-1), respectively.
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