Physical, photoelectrochemical properties of CuIn3Se5 and relevance for hydrogen production
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science
Reference20 articles.
1. Minimization of the effect of the collecting grid in a solar cell based silicon
2. p-Type CuYO2 as hydrogen photocathode
3. Thermochemical Module for Hydrogen Production by Steam Reforming of Methanol
4. Analysis of solar chemical processes for hydrogen production from water splitting thermochemical cycles
5. Photoelectrochemical study of p-type copper indium diselenide thin films for photovoltaic applications
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1. Copper indium selenide water splitting photoanodes with artificially designed heterophasic blended structure and their high photoelectrochemical performances;Nano Energy;2018-04
2. Physical and photoelectrochemical properties of spherical nanoparticles of α-AgBiS2;Journal of Solid State Chemistry;2017-10
3. Investigation on Stability of Electroplated-Sulfurized CuInS2-based Photocathode Modified with an In2S3 Layer for H2 Evolution under Various pH Conditions;Oriental Journal of Chemistry;2017-04-25
4. Enhanced thermoelectric performance of a chalcopyrite compound CuIn3Se5−xTex (x = 0~0.5) through crystal structure engineering;Scientific Reports;2017-01-06
5. Investigation of the Electric Structures of Heterointerfaces in Pt- and In2S3-Modified CuInS2 Photocathodes Used for Sunlight-Induced Hydrogen Evolution;ACS Applied Materials & Interfaces;2015-07-14
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