Effect of contact phenomena on the electrical conductivity of reduced lithium niobate

Author:

Shportenko Andrey S.,Kislyuk Alexander M.ORCID,Turutin Andrei V.ORCID,Kubasov Ilya V.ORCID,Malinkovich Mikhail D.,Parkhomenko Yuri N.ORCID

Abstract

Lithium niobate is a ferroelectric material finding a wide range of applications in optical and acoustic engineering. Annealing of lithium niobate crystals in an oxygen-free environment leads to appearance of black coloration and concomitant increasing electrical conductivity due to chemical reduction. There are plenty of literary data on the electrophysical properties of reduced lithium niobate crystals though contact phenomena occurring during electrical conductivity measurement as well as issues of interaction between the electrode material and the test specimens are almost disregarded. The effect of chromium and indium tin oxide electrodes on the results of measurements of electrophysical parameters at room temperature for lithium niobate specimens reduced at 1100 °C has been investigated. It was found that significant nonlinearities in the VACs of the specimens at below 5 V distort the specific resistivity readings for lithium niobate. This requires measurements at higher voltages. Impedance spectroscopy studies have shown that the measurement results are largely affected by capacities including those probably induced near the contacts. It has been shown that the experimental results are described adequately well by a model implying the presence of near-contact capacities that are parallel to the specimen’s own capacity. Possible mechanism of the induction of these capacities has been described and a hypothesis has been proposed of the high density of electron states at the electrode/specimen interface that can trap carriers, the concentration of trapped carriers growing with an increase in annealing duration.

Publisher

Pensoft Publishers

Subject

Automotive Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Electrophysical properties, memristive and resistive switching of charged domain walls in lithium niobate;Modern Electronic Materials;2023-12-12

2. Electrophysical properties, memristive and resistive switching in charged domain walls in lithium niobate;Izvestiya Vysshikh Uchebnykh Zavedenii. Materialy Elektronnoi Tekhniki = Materials of Electronics Engineering;2023-12-01

3. Degradation of the electrical conductivity of the charged domain wall in reduced lithium niobate;Izvestiya Vysshikh Uchebnykh Zavedenii. Materialy Elektronnoi Tekhniki = Materials of Electronics Engineering;2022-04-14

4. Degradation of the electrical conductivity of charged domain walls in reduced lithium niobate crystals;Modern Electronic Materials;2022-04-12

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