The poor stability of high efficiency photoabsorber materials in aqueous media is one factor holding back the realization of photoelectrochemical (PEC) water splitting for large scale, practical solar fuels generation. Here, we demonstrate that highly efficient thin film Sb2Se3 – fabricated by a simple, low temperature selenization of electrodeposited Sb – is intrinsically stable towards photocorrosion in strongly acidic media (1 M H2SO4). Coupling with a photoelectrodeposited MoSx hydrogen evolution catalyst gives high photocurrents (5 mA cm−2 at 0 V vs. RHE) and high stability without protective layers. A low temperature sulfurization of the Sb2Se3–MoSx stack dramatically improved the onset potential, resulting in high photocurrent densit...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
We demonstrate that applying atomic layer deposition-derived molybdenum disulfide (MoS2) catalytic c...
The poor stability of high efficiency photoabsorber materials in aqueous media is one factor holding...
A highly efficient low-band-gap (1.2-0.8 eV) photoelectrode is critical for accomplishing efficient ...
We present a novel solution-based synthesis method enabling the morphology variation of Sb2Se3 light...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
International audienceSb2Se3 has emerged as an ideal photocathode candidate profiting from its super...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
Achieving both high onset potential and photocurrent in photoelectrodes is a key challenge while per...
For the first time, we present exploratory investigations on the performance of thermally evaporated...
Achieving both high onset potential and photocurrent in photoelectrodes is a key challenge while per...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
We demonstrate that applying atomic layer deposition-derived molybdenum disulfide (MoS2) catalytic c...
The poor stability of high efficiency photoabsorber materials in aqueous media is one factor holding...
A highly efficient low-band-gap (1.2-0.8 eV) photoelectrode is critical for accomplishing efficient ...
We present a novel solution-based synthesis method enabling the morphology variation of Sb2Se3 light...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
International audienceSb2Se3 has emerged as an ideal photocathode candidate profiting from its super...
Determining cost-effective semiconductors exhibiting desirable properties for commercial photoelectr...
Achieving both high onset potential and photocurrent in photoelectrodes is a key challenge while per...
For the first time, we present exploratory investigations on the performance of thermally evaporated...
Achieving both high onset potential and photocurrent in photoelectrodes is a key challenge while per...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
We demonstrate that applying atomic layer deposition-derived molybdenum disulfide (MoS2) catalytic c...