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Chin. Phys. B, 2019, Vol. 28(6): 060705    DOI: 10.1088/1674-1056/28/6/060705
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Structure, conductivity, and ion emission properties of RbAg4I5 solid electrolyte film prepared by pulsed laser deposition

Jun-Lian Chen(陈军联)1,2, Wen-Bin Zuo(左文彬)2, Xian-Wen Ke(柯贤文)1, Alexander B Tolstoguzov3, Can-Xin Tian(田灿鑫)4, Neena Devi1,5, Ranjana Jha5, Gennady N Panin6, De-Jun Fu(付德君)2
1 School of Printing and Packaging, Wuhan University, Wuhan 430072, China;
2 Shenzhen Institute of Wuhan University, A302 Research Bldg., No.6 Aoxin 2nd Rd., Nanshan Hitech Zone, Shenzhen 518057, China;
3 Ryazan State Radio Engineering University, Gagarin Str. 59/1, 390005 Ryazan, Russia;
4 School of Physics and Technology, Lingnan Normal University, Zhanjiang 524048, China;
5 Department of Physics, Netaji Subhas Institute of Technology, University of Delhi, Dwarka Sector-3, New Delhi 110078, India;
6 Institute of Microelectronics Technology, Russian Academy of Sciences, Chernogolovka, Moscow 142432, Russia
Abstract  

We fabricated a silver ion emitter based on the solid state electrolyte film of RbAg4I5 prepared by pulsed laser deposition. The RbAg4I5 target for PLD process was mechano-chemically synthesized by high-energy ball milling in Ar atmosphere using β-AgI and RbI as raw materials. The ion-conducting properties of RbAg4I5 were studied by alternating current (AC) impedance spectroscopy and the ionic conductivity at room temperature was estimated 0.21 S/m. The structure, morphology, and elemental composition of the RbAg4I5 film were investigated. The Ag+ ion-conducting property of the prepared superioni-conductor film was exploited for ion-beam generation. The temperature and accelerating voltage dependences of the ion current were studied. Few nA current was obtained at the temperature of 196 ℃ and the accelerating voltage of 10 kV.

Keywords:  RbAg4I5      ball milling      solid state electrolyte film      ion-beam source      ionic conductivity  
Received:  14 February 2019      Revised:  18 March 2019      Accepted manuscript online: 
PACS:  07.77.Ka (Charged-particle beam sources and detectors)  
Fund: 

Project supported by the National Natural Science Foundation of China (Grant No. 11875210), China Postdoctoral Science Foundation (Grant No. 2018M640724), the International Cooperation Program of Guangdong Provincial Science and Technology Plan Project (Grant No. 2018A050506082), and the Talent Project of Lingnan Normal University, China (Grant No. ZL1931).

Corresponding Authors:  De-Jun Fu     E-mail:  djfu@whu.edu.cn

Cite this article: 

Jun-Lian Chen(陈军联), Wen-Bin Zuo(左文彬), Xian-Wen Ke(柯贤文), Alexander B Tolstoguzov, Can-Xin Tian(田灿鑫), Neena Devi, Ranjana Jha, Gennady N Panin, De-Jun Fu(付德君) Structure, conductivity, and ion emission properties of RbAg4I5 solid electrolyte film prepared by pulsed laser deposition 2019 Chin. Phys. B 28 060705

[1] Reuter B and Hardell K 1961 Naturwiss. 48 161
[2] Wang P F, Liu Y, Yin J, Ma W Y, Zhu J L, Dong Z M and Sun J L 2019 Nanotechnol. 30 25602
[3] Yoshiasa A, Kanamaru F and Koto K 1988 Solid State Ionics 27 275
[4] Lee D Y and Tseng T Y 2012 IEEE Electron Dev. Lett. 33 803
[5] Cosentino I C and Muccillo R 1997 Mater. Lett. 32 295
[6] Yi E, Temeche E and Laine R M 2018 J. Mater. Chem. A 6 12411
[7] Yang B, Liang X F, Guo H X, Yin K B, Yin J and Liu Z G 2008 J. Phys. D: Appl. Phys. 41 115304
[8] Kim D H, Oh D Y, Park K H, Choi Y E, Nam Y J, Lee H A, Lee S M and Jung Y S 2017 Nano Lett. 17 3013
[9] Gao J, Zhao Y S, Shi S Q and Li H 2016 Chin. Phys. B 25 018211
[10] Wang S F and Chen L Q 2016 Chin. Phys. B 25 018202
[11] Moria M, Tompsettb G M, Sammesc N M, Suda E and Takeda Y 2003 Solid State Ionics 158 79
[12] Yoo S J, Lim J W and Sung Y 2006 Sol. Energy Mater. Sol. Cells 90 477
[13] Huang J Q, Shi L P, Yeo E G, Yi K J and Zhao R 2012 IEEE Electron Dev. Lett. 33 98
[14] Shizukuishi M, Kaga E, Shimizu I, Kokado H and Inoue E 1981 Jpn. J. Appl. Phys. 20 581
[15] Miura N, Nakatou M and Zhuiykov S 2003 Sens. Actuators B: Chem. 93 221
[16] Zuo W B, Pelenovich V, Tolstogouzov A, Zeng X M, Wang Z G, Song X Q, Gusev S I, Tian C X and Fu D J 2019 J. Alloys Compd. 790 109
[17] Tolstoguzov A B, Belykh S F, Gololobov G P, Gurov V S, Gusev S I, Suvorov D V, Taganov A I, Fu D J, Ai Z and Liu C S 2018 Instrum. Exp. Tech. 61 159
[18] Tolstogouzov A, Aguas H, Ayouchi R, Belykh S F, Fernandes F, Gololobov G P, Moutinho A M C, Schwarz R, Suvorov D V and Teodoro O M N D 2016 Vacuum 131 252
[19] Wilbur P J, Wilson M and Hutchings K J 2007 Propul. Power 23 1049
[20] Escher C, Thomann S, Andreoli C and Fink H W 2006 Appl. Phys. Lett. 89 53513
[21] Owens B B and Argue G R 1967 Science 157 308
[22] Peng H F, Machida N and Shigematsu T 2002 J. Jpn. Soc. Powder Powder Metall. 49 69
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