Electronic to protonic conduction switching in Cu2O nanostructured porous films: the effect of humidity exposure
Author:
Affiliation:
1. DST-CSIR National Centre for Nanostructured Materials
2. Council for Scientific and Industrial Research
3. Pretoria 0001
4. South Africa
5. Applied Chemistry Department
Abstract
In this paper, we present the first experimental evidence for electronic to protonic conduction switching in p-type semiconducting nanostructured cuprous oxide (Cu2O) porous films when exposed to humidity.
Funder
Department of Science and Technology, Republic of South Africa
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemical Engineering,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2017/RA/C7RA00383H
Reference57 articles.
1. Recent achievements in miniaturised humidity sensors—a review of transduction techniques
2. Humidity Sensors: A Review of Materials and Mechanisms
3. Humidity Sensors Principle, Mechanism, and Fabrication Technologies: A Comprehensive Review
4. TiO2:WO3 composite humidity sensors doped with ZnO and CuO investigated by impedance spectroscopy
5. Electrodeposited p-type Cu2O for H2 evolution from photoelectrolysis of water under visible light illumination
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