A unique nanostructured rod-like morphol. of hematite (α-Fe2O3), designed with no grain boundaries, has been investigated for the aim of a direct splitting of water at the hematite/electrolyte interface. Photoelectrochem. properties were studied by steady-state measurements on electrodes with controlled morphol. and film thickness in aq. electrolyte. The hematite electrodes were able to generate incident photon-to-current efficiencies (IPCEs) of ∼8% by illumination through the substrate with a wavelength of 350 nm and a light intensity of 0.1 mW cm-2 without any applied voltage. On the basis of light intensity studies, it is concluded that charge carrier recombinations due to the poor semiconductor properties in combination with slow oxidn....
Photoelectrochemical response of electrodeposited hematite (a-Fe2O3) thin films, whose surface has b...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
A unique nanostructured rod-like morphology of hematite (a-Fe2O3), designed with no grain boundaries...
Hematite nanostructures were electrochemically grown by ultrasound-assisted anodization of iron subs...
We report great enhancement in photoelectrochemical water splitting efficiency of hematite assisted ...
International audienceThe perfomance of hematite and Ti-substituted hematite nanorods as photoanodes...
Ultrahigh-efficiency photoelectrochemical water oxidation using modified hematite (alpha-Fe2O3) nano...
One possibility to partially satisfy the ever-increasing energy needs of modern society, without com...
We study hematite (alpha-Fe2O3) photoelectrodes for water splitting by examining the fate of photoge...
In this report, we show that by creating a nanoporous haematite (alpha-Fe2O3) structure using boric ...
We report a new strategy for efficient suppression of electron-hole recombination in hematite photoa...
In this paper, we report a novel strategy for surface treatment of hematite nanorods for efficient p...
The preparation of hematite nanorod electrodes modified with molybdenum and their photoelectrochemic...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
Photoelectrochemical response of electrodeposited hematite (a-Fe2O3) thin films, whose surface has b...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...
A unique nanostructured rod-like morphology of hematite (a-Fe2O3), designed with no grain boundaries...
Hematite nanostructures were electrochemically grown by ultrasound-assisted anodization of iron subs...
We report great enhancement in photoelectrochemical water splitting efficiency of hematite assisted ...
International audienceThe perfomance of hematite and Ti-substituted hematite nanorods as photoanodes...
Ultrahigh-efficiency photoelectrochemical water oxidation using modified hematite (alpha-Fe2O3) nano...
One possibility to partially satisfy the ever-increasing energy needs of modern society, without com...
We study hematite (alpha-Fe2O3) photoelectrodes for water splitting by examining the fate of photoge...
In this report, we show that by creating a nanoporous haematite (alpha-Fe2O3) structure using boric ...
We report a new strategy for efficient suppression of electron-hole recombination in hematite photoa...
In this paper, we report a novel strategy for surface treatment of hematite nanorods for efficient p...
The preparation of hematite nanorod electrodes modified with molybdenum and their photoelectrochemic...
Photoelectrochemical (PEC) solar water splitting represents a clean and sustainable approach for hyd...
Photoelectrochemical response of electrodeposited hematite (a-Fe2O3) thin films, whose surface has b...
Solar water splitting is an environmentally friendly reaction of producing hydrogen gas. Since Honda...
DoctorHematite (-Fe2O3) is a photoactive material which is widely investigated in the research field...