Transition‐metal phosphides (TMP) prepared by atomic layer deposition (ALD) are reported for the first time. Ultrathin Co‐P films were deposited by using PH3 plasma as the phosphorus source and an extra H2 plasma step to remove excess P in the growing films. The optimized ALD process proceeded by self‐limited layer‐by‐layer growth, and the deposited Co‐P films were highly pure and smooth. The Co‐P films deposited via ALD exhibited better electrochemical and photoelectrochemical hydrogen evolution reaction (HER) activities than similar Co‐P films prepared by the traditional post‐phosphorization method. Moreover, the deposition of ultrathin Co‐P films on periodic trenches was demonstrated, which highlights the broad and promising potential ap...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
The work investigates the selective deposition of cobalt oxide via atomic layer deposition. Methoxys...
Atomic Layer Deposition (ALD) enables the fabrication of highly uniform and conformal thin films, an...
The development of active and stable earth-abundant catalysts for hydrogen and oxygen evolution is o...
Electrodeposited cobalt phosphate has been reported in the literature as a robust alternative to nob...
Electrodeposited cobalt phosphate has been reported as a valid alternative to noble metals as an ele...
Cobalt phosphides electrocatalysts have great potential for water splitting, but the unclear active ...
One of the challenges to realize large-scale water splitting is the lack of active and low-cost elec...
We have developed a low-temperature atomic layer deposition (ALD) process for depositing crystalline...
The development of efficient and stable earth-abundant water oxidation catalysts is vital for econom...
Because of their unique structural, chemical, optical, and biological properties, metal phosphate co...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
The work investigates the selective deposition of cobalt oxide via atomic layer deposition. Methoxys...
Atomic Layer Deposition (ALD) enables the fabrication of highly uniform and conformal thin films, an...
The development of active and stable earth-abundant catalysts for hydrogen and oxygen evolution is o...
Electrodeposited cobalt phosphate has been reported in the literature as a robust alternative to nob...
Electrodeposited cobalt phosphate has been reported as a valid alternative to noble metals as an ele...
Cobalt phosphides electrocatalysts have great potential for water splitting, but the unclear active ...
One of the challenges to realize large-scale water splitting is the lack of active and low-cost elec...
We have developed a low-temperature atomic layer deposition (ALD) process for depositing crystalline...
The development of efficient and stable earth-abundant water oxidation catalysts is vital for econom...
Because of their unique structural, chemical, optical, and biological properties, metal phosphate co...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
The work investigates the selective deposition of cobalt oxide via atomic layer deposition. Methoxys...
Atomic Layer Deposition (ALD) enables the fabrication of highly uniform and conformal thin films, an...