Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water splitting. Recently, the PEC performances of Cu2O based devices have been considerably improved by introducing nanostructures, semiconductor overlayers, and hydrogen evolution reaction HER catalysts. However, Cu2O devices still suffer from poor stability in aqueous solution, especially in strong acidic or alkaline conditions, despite the use of an intrinsically stable oxide overlayer as a protection layer. Thus, it is essential to fully understand the stability of the entire Cu2O photocathodes in these conditions for establishing suitable protection strategies to achieve durable PEC water splitting. In this work, the stability of bare and protec...
The cost-effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC) water-spli...
The utilisation of Cu2O photocathodes for photoelectrochemical water splitting requires their stabil...
The utilisation of Cu2O photocathodes for photoelectrochemical water splitting requires their stabil...
Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water split...
Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water split...
Core-shell CuO-Cu_2O nanowires with a surface amorphous Cu2-δO layer leads to high stability photoca...
In recent years, development of sustainable energy has been playing an important role in creating an...
Core-shell CuO-Cu_2O nanowires with a surface amorphous Cu2-δO layer leads to high stability photoca...
In the present study, cuprous oxide nanowire fabricated using wet chemical oxidation method was prov...
To date, TiO2 films prepared by atomic layer deposition are widely used to prepare Cu2O nanowire (NW...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
The use of sunlight for photoelectrochemically splitting water into hydrogen and oxygen has aroused ...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
The origin of instability of p-Cu2O films deposited on a platinized Si substrate when used as photoc...
The cost-effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC) water-spli...
The utilisation of Cu2O photocathodes for photoelectrochemical water splitting requires their stabil...
The utilisation of Cu2O photocathodes for photoelectrochemical water splitting requires their stabil...
Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water split...
Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water split...
Core-shell CuO-Cu_2O nanowires with a surface amorphous Cu2-δO layer leads to high stability photoca...
In recent years, development of sustainable energy has been playing an important role in creating an...
Core-shell CuO-Cu_2O nanowires with a surface amorphous Cu2-δO layer leads to high stability photoca...
In the present study, cuprous oxide nanowire fabricated using wet chemical oxidation method was prov...
To date, TiO2 films prepared by atomic layer deposition are widely used to prepare Cu2O nanowire (NW...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
The use of sunlight for photoelectrochemically splitting water into hydrogen and oxygen has aroused ...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
The origin of instability of p-Cu2O films deposited on a platinized Si substrate when used as photoc...
The cost-effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC) water-spli...
The utilisation of Cu2O photocathodes for photoelectrochemical water splitting requires their stabil...
The utilisation of Cu2O photocathodes for photoelectrochemical water splitting requires their stabil...