2010Electrochemical and Solid-State LettersOpen access

Phase Change Behavior in Ag[sub 10]Ge[sub 15]Te[sub 75] and the Electrolytic Resistive Switching in Both Amorphous and Crystalline Ag[sub 10]Ge[sub 15]Te[sub 75] Films

Hanni Xu, Zhiguo Liu, Yidong Xia, Liang Chen, Hao Zhu, Hongxuan Guo, Jiang Yin

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Abstract

The amorphous/crystalline phase change behavior of (AGT) electrolyte was investigated. Satisfactory electrolytic resistive switching phenomena were observed in the memory cells composed of amorphous or crystalline AGT films sandwiched between Ag and Pt electrodes. The measured high and low resistance values of amorphous/crystalline cells are distinguishable and in different order of magnitudes. The electrically driven amorphous/crystalline phase change was also demonstrated in the cells sandwiched between two Pt electrodes. It is proposed that by controlling and using the electrolytic resistive switching in amorphous/crystalline cells and the electrically driven amorphous/crystalline phase change of these cells, a new type of four-state memory might be created.

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The amorphous/crystalline phase change behavior of (AGT) electrolyte was investigated. Satisfactory electrolytic resistive switching phenomena were observed in the memory cells composed of amorphous or crystalline AGT films sandwiched between Ag and Pt electrodes. The measured high and low resistance values of amorphous/crystalline cells are distinguishable and in different order of magnitudes. The electrically driven amorphous/crystalline phase change was also demonstrated in the cells sandwiched between two Pt electrodes. It is proposed that by controlling and using the electrolytic resistive switching in amorphous/crystalline cells and the electrically driven amorphous/crystalline phase change of these cells, a new type of four-state memory might be created.

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Available abstract

The amorphous/crystalline phase change behavior of (AGT) electrolyte was investigated. Satisfactory electrolytic resistive switching phenomena were observed in the memory cells composed of amorphous or crystalline AGT films sandwiched between Ag and Pt electrodes. The measured high and low resistance values of amorphous/crystalline cells are distinguishable and in different order of magnitudes. The electrically driven amorphous/crystalline phase change was also demonstrated in the cells sandwiched between two Pt electrodes. It is proposed that by controlling and using the electrolytic resistive switching in amorphous/crystalline cells and the electrically driven amorphous/crystalline phase change of these cells, a new type of four-state memory might be created.

Key concepts: Amorphous solid, Materials science, Electrolyte, Electrode, Phase (matter), Resistive touchscreen, Crystallography, Electrical engineering

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Phase Change Behavior in Ag[sub 10]Ge[sub 15]Te[sub 75] and the Electrolytic Resistive Switching in Both Amorphous and Crystalline Ag[sub 10]Ge[sub 15]Te[sub 75] Films — Research Paper | ScholarLens