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Experimental Studies on the Dynamic Memcapacitance Modulation of the ReO3@ReS2 Composite Material-Based Diode.


ABSTRACT: In this study, both memcapacitive and memristive characteristics in the composite material based on the rhenium disulfide (ReS2) rich in rhenium (VI) oxide (ReO3) surface overlayer (ReO3@ReS2) and in the indium tin oxide (ITO)/ReO3@ReS2/aluminum (Al) device configuration is presented. Comprehensive experimental analysis of the ReO3@ReS2 material properties' dependence on the memcapacitor electrical characteristics was carried out by standard as well as frequency-dependent current-voltage, capacitance-voltage, and conductance-voltage studies. Furthermore, determination of the charge carrier conduction model, charge carrier mobility, density of the trap states, density of the available charge carrier, free-carrier concentration, effective density of states in the conduction band, activation energy of the carrier transport, as well as ion hopping was successfully conducted for the ReO3@ReS2 based on the experimental data. The ITO/ReO3@ReS2/Al charge carrier conduction was found to rely on the mixed electronic-ionic processes, involving electrochemical metallization and lattice oxygen atoms migration in response to the externally modulated electric field strength. The chemical potential generated by the electronic-ionic ITO/ReO3@ReS2/Al resistive memory cell non-equlibrium processes leads to the occurrence of the nanobattery effect. This finding supports the possibility of a nonvolatile memory cell with a new operation principle based on the potential read function.

SUBMITTER: Borowiec J 

PROVIDER: S-EPMC7690752 | biostudies-literature | 2020 Oct

REPOSITORIES: biostudies-literature

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Experimental Studies on the Dynamic Memcapacitance Modulation of the ReO<sub>3</sub>@ReS<sub>2</sub> Composite Material-Based Diode.

Borowiec Joanna J   Liu Mengren M   Liang Weizheng W   Kreouzis Theo T   Bevan Adrian J AJ   He Yi Y   Ma Yao Y   Gillin William P WP  

Nanomaterials (Basel, Switzerland) 20201023 11


In this study, both memcapacitive and memristive characteristics in the composite material based on the rhenium disulfide (ReS<sub>2</sub>) rich in rhenium (VI) oxide (ReO<sub>3</sub>) surface overlayer (ReO<sub>3</sub>@ReS<sub>2</sub>) and in the indium tin oxide (ITO)/ReO<sub>3</sub>@ReS<sub>2</sub>/aluminum (Al) device configuration is presented. Comprehensive experimental analysis of the ReO<sub>3</sub>@ReS<sub>2</sub> material properties' dependence on the memcapacitor electrical characteri  ...[more]

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