Plasticized chitosan-PVA blend polymer electrolyte based proton battery

被引:253
|
作者
Kadir, M. F. Z. [1 ]
Majid, S. R. [1 ]
Arof, A. K. [1 ]
机构
[1] Univ Malaya, Dept Phys, Fac Sci, Kuala Lumpur 50603, Malaysia
关键词
Chitosan; NH4NO3; Plasticizer; Rice and Roth model; Proton battery; POLY(ETHYLENE OXIDE); IONIC TRANSPORT; COMPOSITE; FILMS;
D O I
10.1016/j.electacta.2009.05.011
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
This paper focused on the transport studies of PVA-chitosan blended electrolyte system and application in proton batteries. The electrolytes were prepared by the solution cast technique. In this work, 36 wt.% PVA and 24 wt.% chitosan blend doped with 40 wt.% NH4NO3 exhibited the highest room temperature conductivity. The conductivity value obtained was 2.07 x 10(-5) S cm(-1). EC was then added in various quantities to the 60 wt.% [60 wt.% PVA-40 wt.% chitosan]-40 wt.% NH4NO3 composition in order to enhance the conductivity of the sample. The highest conductivity obtained was 1.60 x 10(-3) S cm(-1) for the sample containing 70 wt.% EC. The Rice and Roth model was applied to analyze the conductivity enhancement. The highest conducting sample in the plasticized system was used to fabricate several batteries with configuration Zn//MnO2. The open circuit potential (OCP) of the fabricated batteries was between 1.6 and 1.7 V. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1475 / 1482
页数:8
相关论文
共 50 条
  • [21] PROTON CONDUCTING POLYMER ELECTROLYTE BASED ON PVA-PAN
    Devi, S. Siva
    Selvasekarapandian, S.
    Rajeswari, N.
    Genova, F. Kingslin Mary
    Karthikeyan, S.
    Raja, C. Sanjeevi
    Solid State Ionics: Ionics for Sustainable World, 2013, : 253 - 261
  • [22] Application of PVA-chitosan blend polymer electrolyte membrane in electrical double layer capacitor
    Kadir, M. F. Z.
    Arof, A. K.
    MATERIALS RESEARCH INNOVATIONS, 2011, 15 : 217 - 220
  • [23] EFFECT OF MECHANICAL STRENGTH ON CHITOSAN-PVA BLEND THROUGH IONIC CROSSLINKING FOR FOOD PACKAGING APPLICATION
    Jahan, Firdos
    Mathad, R. D.
    Farheen, Shazia
    MATERIALS TODAY-PROCEEDINGS, 2016, 3 (10) : 3689 - 3696
  • [24] Effect of Sulfuric Acid on the Physiochemical Properties of Chitosan-PVA Blend for Direct Methanol Fuel Cell
    Murmu, Rabiranjan
    Roy, Debashis
    Sutar, Harekrushna
    Senapati, Pragyan
    Mohapatra, Swetak Abhisek
    JOURNAL OF POLYMER MATERIALS, 2022, 39 (1-2): : 89 - 109
  • [25] LiClO4-doped plasticized chitosan and poly(ethylene glycol) blend as biodegradable polymer electrolyte for supercapacitors
    Y. N. Sudhakar
    M. Selvakumar
    D. Krishna Bhat
    Ionics, 2013, 19 : 277 - 285
  • [26] LiClO4-doped plasticized chitosan and poly(ethylene glycol) blend as biodegradable polymer electrolyte for supercapacitors
    Sudhakar, Y. N.
    Selvakumar, M.
    Bhat, D. Krishna
    IONICS, 2013, 19 (02) : 277 - 285
  • [27] PEO-based polymer blend electrolyte for composite structural battery
    Gucci, Francesco
    Grasso, Marzio
    Shaw, Christopher
    Leighton, Glenn
    Marchante Rodriguez, Veronica
    Brighton, James
    POLYMER-PLASTICS TECHNOLOGY AND MATERIALS, 2023, 62 (08): : 1019 - 1028
  • [28] Binding of Zn(II) Ions to Chitosan-PVA Blend in Aqueous Environment: Adsorption Kinetics and Equilibrium Studies
    Anitha, T.
    Kumar, P. Senthil
    Kumar, K. Sathish
    ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY, 2015, 34 (01) : 15 - 22
  • [29] Characterization of proton conducting polymer blend electrolytes based on PVdF-PVA
    Muthuvinayagam, M.
    Gopinathan, C.
    POLYMER, 2015, 68 : 122 - 130
  • [30] Characterization of Plasticized PEO-PAM Blend Polymer Electrolyte System
    Dave, Gargi
    Kanchan, Dinesh
    61ST DAE-SOLID STATE PHYSICS SYMPOSIUM, 2017, 1832