Investigations on electrical and electrochemical properties of Ag+ ion conducting quaternary solid electrolyte systems:: x[0.75 AgI : 0.25 AgCl] : (1-x) RbI

被引:11
作者
Agrawal, R. C. [1 ]
Chandra, Angesh [1 ]
Bhatt, Alok [1 ]
Mahipal, Y. K. [1 ]
机构
[1] Pt R S S Univ, Sch Studies Phys, Solid State Ion Res Lab, Raipur 492010, Madhya Pradesh, India
关键词
D O I
10.1088/0022-3727/40/15/054
中图分类号
O59 [应用物理学];
学科分类号
摘要
Investigations on ion transport behaviour of new Ag+ ion conducting quaternary solid electrolyte systems: x[0.75AgI : 0.25AgCl] : (1 - x)RbI, where 0.1 <= x <= 1 mol.wt fractions, are reported. The solid electrolyte systems were synthesized adopting different routes of solid solution reactions. An alternative host salt, 'a quenched [0.75AgI : 0.25AgCl] mixed system solid solution', discovered at the present laboratory, has been used in place of AgI. The compositional dependent conductivity studies at room temperature revealed the quaternary systems 0.7[0.75AgI : 0.25AgCl] : 0.3RbI as the optimum conducting composition (OCC). AgI has been traditionally and most widely used as host salt in the past to prepare the majority of well-known fast Ag+ ion conductors including the ternary superionic solids MAg4I5 (M = Rb, K, NH4). Also, RbAg4I5 has been recognized as one of the highest conducting superionic solids with conductivity sigma(rt) similar to 10(-1) S cm(-1) at room temperature. However, it has been observed that RbAg4I5 is thermodynamically unstable, particularly in the open ambient conditions, while the newly synthesized quaternary solid electrolyte, having OCC 0.7[0.75AgI : 0.25AgCl] : 0.3RbI, has been observed to be much more stable than RbAg4I5. For direct comparison of the ion conduction behaviour of the newly synthesized OCC, the ternary superionic solid RbAg4I5 (0.8AgI : 0.2RbI) has also been synthesized in an identical manner. The room temperature conductivity (srt) of the newly synthesized quaternary OCC was slightly lower than that of RbAg4I5. However, srt remained practically stable for a fairly long time in the open ambient conditions as compared with that of RbAg4I5. The mechanism of ion transport in OCC has been characterized on the basis of experimental studies on various ionic parameters namely conductivity (s), ionic mobility (mu), mobile ion concentration (n), ionic drift velocity (upsilon(d)), ionic transference number (t(ion)) etc. The temperature dependent studies on these ionic parameters provided information regarding various energies involved in the respective thermally activated processes. Solid state batteries have been fabricated using OCC as electrolyte in the cell configuration Ag-metal (anode)/0.7 0.75AgI : 0.25AgCl] : 0.3RbI (solid electrolyte)/C+I-2 (cathode) and the cell potential discharge characteristics have been studied under various load conditions.
引用
收藏
页码:4714 / 4721
页数:8
相关论文
共 30 条
  • [1] 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.
    [J]. IONICS, 2002, 8 (5-6) : 426 - 432
  • [2] 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
    [J]. JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1998, 31 (20) : 2854 - 2860
  • [3] 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
    [J]. IONICS, 2004, 10 (1-2) : 113 - 117
  • [4] Electrical and electrochemical properties of a new silver tungstate glass system:: x[0.75AgI: 0.25AgCl]: (1-x)[Ag2O: WO3]
    Agrawal, RC
    Verma, ML
    Gupta, RK
    [J]. SOLID STATE IONICS, 2004, 171 (3-4) : 199 - 205
  • [5] [0.75AGI-0.25AGCL] QUENCHED SYSTEM - A BETTER CHOICE AS HOST COMPOUND IN-PLACE OF AGI TO PREPARE AG+ ION CONDUCTING SUPERIONIC GLASSES AND COMPOSITES
    AGRAWAL, RC
    KUMAR, R
    GUPTA, RK
    SALEEM, M
    [J]. JOURNAL OF NON-CRYSTALLINE SOLIDS, 1995, 181 (1-2) : 110 - 115
  • [6] Transport property and mixed former effect studies on a new fast Ag+ ion conducting glass system:: 0.7[0.75AgI : 0.25AgCl]:0.3[Ag2O: {xB2O3:(1-x)MoO3}]
    Agrawal, RC
    Verma, ML
    Gupta, RK
    Kumar, R
    [J]. JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2002, 35 (08) : 810 - 815
  • [7] IONIC TRANSPORT IN THE (AGIAGCL) MIXED-SYSTEM
    AGRAWAL, RC
    GUPTA, RK
    KUMAR, R
    KUMAR, A
    [J]. JOURNAL OF MATERIALS SCIENCE, 1994, 29 (14) : 3673 - 3677
  • [8] Transport studies on a new fast silver ion conducting system: 0.7[0.75AgI:0.25AgCl]:0.3[yAg(2)O:(1-y)B2O3]
    Agrawal, RC
    Kumar, R
    Chandra, A
    [J]. SOLID STATE IONICS, 1996, 84 (1-2) : 51 - 60
  • [9] TRANSPORT PROPERTY AND BATTERY DISCHARGE CHARACTERISTIC STUDIES ON 1-X (0.75AGL-0.25AGCL)XAL(2)O(3) COMPOSITE ELECTROLYTE SYSTEM
    AGRAWAL, RC
    GUPTA, RK
    [J]. JOURNAL OF MATERIALS SCIENCE, 1995, 30 (14) : 3612 - 3618
  • [10] Detailed investigation of the temperature dependence of ionic transport parameters of a new composite electrolyte system (1-x) (0.75Agl:0.25AgCl):xSnO(2)
    Agrawal, RC
    Gupta, RK
    [J]. JOURNAL OF MATERIALS SCIENCE, 1997, 32 (12) : 3327 - 3333