Characterization of ion transport property and study of solid state battery discharge performance on newly synthesized Ag+ ion conducting quaternary solid electrolyte systems:: x[0.75AgI: 0.25AgCl]: (1-x)KI

被引:6
|
作者
Agrawal, R. C. [1 ]
Chandra, A.
Bhatt, A. [2 ]
Mahipal, Y. K.
机构
[1] Pt RSS Univ, Sch Studies Phys, Solid State Ion Res Lab, Raipur 492010, Madhya Pradesh, India
[2] MP Christian Coll Engg & Tech, Bhilai 490026, India
来源
关键词
D O I
10.1051/epjap:2008135
中图分类号
O59 [应用物理学];
学科分类号
摘要
Investigations on ion transport mechanism in the new Ag(+) ion conducting quaternary solid electrolyte systems: (1 - x)[0.75AgI: 0.25AgCl]: xKI, where 0 < x < 1 in mol. wt.%, are reported. The quaternary systems were prepared by solid solution reaction of an alternate host: 'a quenched [0.75AgI: 0.25AgCl] mixed system/solid solution', instead of the traditional host salt AgI, and KI. The compositional dependent conductivity studies on the quaternary systems identified the composition: 0.7[0.75AgI: 0.25AgCl]: 0.3KI, as the Optimum Conducting Composition (OCC) having conductivity sigma similar to 5.9 x 10(-3) S cm(-1) at 27 degrees C. For direct comparison of the room temperature conductivity behaviour of the quaternary OCC, AgI-based ternary solid solution composition: 0.8AgI: 0.2KI, resulting into the well-known superionic system: KAg(4)I(5), has also been synthesized in the identical manner which exhibited sigma similar to 1.12 x 10(-2) S cm(-1) at 27 degrees C. The conductivity of newly synthesized quaternary OCC was slightly lower than that of as prepared ternary KAg(4)I(5). However, in the open ambient conditions sigma of OCC sample remained practically stable for over hundred hours while that of KAg(4)I(5) decreased by more than two orders of magnitude in the same duration. The phase identification and material characterization studies on the quaternary OCC have been carried out using XRD and DTA techniques. The ion transport mechanism has been characterized on the basis of experimental studies on some basic ionic parameters viz. conductivity (sigma), ionic mobility (mu), mobile ion concentration (n), ionic transference number (t(ion)) and ionic drift velocity (v(d)). Solid state batteries have been fabricated using the newly synthesized quaternary OCC as well as KAg(4)I(5) as electrolytes, sandwiched between Ag/I(2) electrode couple and the cell potential discharge performances have been studied under varying load conditions.
引用
收藏
页码:209 / 216
页数:8
相关论文
共 27 条
  • [1] Transport properties and battery discharge characteristics of the Ag+ ion conducting composite electrolyte system (1-x)[0.75AgI: 0.25AgCl]: xFe2O3
    Agrawal, RC
    Gupta, RK
    Sinha, CK
    Kumar, R
    Pandey, GP
    IONICS, 2004, 10 (1-2) : 113 - 117
  • [2] Investigations on electrical and electrochemical properties of Ag+ ion conducting quaternary solid electrolyte systems:: x[0.75 AgI : 0.25 AgCl] : (1-x) RbI
    Agrawal, R. C.
    Chandra, Angesh
    Bhatt, Alok
    Mahipal, Y. K.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2007, 40 (15) : 4714 - 4721
  • [3] Characterization of basic transport properties in a new fast Ag+ ion conducting composite electrolyte system:: (1-x)[0.75AgI:0.25AgCl]:x-ZrO2
    Agrawal, RC
    Verma, ML
    Gupta, RK
    Thaker, S
    SOLID STATE IONICS, 2000, 136 : 473 - 478
  • [4] Transport properties and battery discharge characteristics of the Ag+ ion conducting composite electrolyte system (1−x)[0.75AgI: 0.25AgCl]: xFe2O3
    R. C. Agrawal
    R. K. Gupta
    C. K. Sinha
    R. Kumar
    G. P. Pandey
    Ionics, 2004, 10 : 113 - 117
  • [5] A study of ionic transport properties on a new Ag+-ion-conducting composite electrolyte system:: (1-x)[0.75AgI:0.25AgCl]:xSiO2
    Agrawal, RC
    Verma, ML
    Gupta, RK
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1998, 31 (20) : 2854 - 2860
  • [6] Transport property and structural characterization studies on (1-x)[0.75AgI:0.25AgCl]:xTiO2 conducting composite electrolyte system
    Nagarch, RK
    Kumar, R
    Agrawal, RC
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2006, 352 (05) : 450 - 457
  • [7] Ion transport and electrochemical cell performance studies on hot-press-synthesized Ag+ ion conducting electroactive polymeric membranes:: (1-x) PEO:x[0.7( 0.75AgI:0.25AgCl):0.3MI]
    Agrawal, R. C.
    Chandra, Angesh
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2007, 40 (22) : 7024 - 7031
  • [8] Polarization/self-depolarization studies on Ag+ ion conducting quenched [0.75AgI:0.25AgCl] mixed system solid solution
    Agrawal, RC
    Gupta, RK
    Verma, ML
    Sharma, AR
    INDIAN JOURNAL OF PURE & APPLIED PHYSICS, 1999, 37 (04) : 235 - 238
  • [9] Ion Transport and Solid State Battery Studies on a New Silver Molybdate Superionic Glass System: x[0.75AgI: 0.25AgCl]: (1-x)[Ag2O: MoO3]
    Agrawal, R. C.
    Verma, M. L.
    Gupta, R. K.
    Kumar, R.
    Chandola, R. M.
    IONICS, 2002, 8 (5-6) : 426 - 432
  • [10] Ion transport and solid state battery studies on a new silver molybdate superionic glass system: x[0.75AgI: 0.25AgCl]: (1-x)[Ag2O: MoO3]
    R. C. Agrawal
    M. L. Verma
    R. K. Gupta
    R. Kumar
    R. M. Chandola
    Ionics, 2002, 8 : 426 - 432