Because of their unique structural, chemical, optical, and biological properties, metal phosphate coatings are highly versatile for various applications. Thermodynamically facile and favorable functionalization of phosphate moieties (like orthophosphates, metaphosphates, pyrophosphates, and phosphorus-doped oxides) makes them highly sought-after functional materials as well. Being a sequential self-limiting technique, atomic layer deposition has been used for producing high-quality conformal coatings with sub-nanometer control. In this review, different atomic layer deposition-based strategies used for the deposition of phosphate materials are discussed. The mechanisms underlying those strategies are discussed, highlighting advantages and l...
The increasingly complex nanoscale three-dimensional and multilayered structures utilized in nanoele...
Titanium phosphate thin films were deposited by a new plasma-enhanced atomic layer deposition proces...
A plasma-enhanced ALD process has been developed to deposit nickel phosphate. The process combines t...
Electrodeposited cobalt phosphate has been reported in the literature as a robust alternative to nob...
With the fast-growing request for miniaturized electronic components, in the last few decades deposi...
The work presented in this thesis concerns the reactions of phosphites when replacing phosphates in ...
Aluminum phosphate was deposited onto bundles of carbon fibers and flat glassy carbon substrates usi...
Electrodeposited cobalt phosphate has been reported as a valid alternative to noble metals as an ele...
Aluminum phosphate thin films were deposited by plasma-assisted atomic layer deposition (ALD) using ...
The development of active and stable earth-abundant catalysts for hydrogen and oxygen evolution is o...
A new plasma-enhanced atomic layer deposition process was developed to deposit iron phosphate by usi...
The coating of complex three-dimensional structures with ultrathin metal films is of great interest ...
Transition‐metal phosphides (TMP) prepared by atomic layer deposition (ALD) are reported for the fir...
High purity, uniform, and conformal aluminum phosphate (AlPxOy) thin films were deposited by atomic ...
The increasingly complex nanoscale three-dimensional and multilayered structures utilized in nanoele...
Titanium phosphate thin films were deposited by a new plasma-enhanced atomic layer deposition proces...
A plasma-enhanced ALD process has been developed to deposit nickel phosphate. The process combines t...
Electrodeposited cobalt phosphate has been reported in the literature as a robust alternative to nob...
With the fast-growing request for miniaturized electronic components, in the last few decades deposi...
The work presented in this thesis concerns the reactions of phosphites when replacing phosphates in ...
Aluminum phosphate was deposited onto bundles of carbon fibers and flat glassy carbon substrates usi...
Electrodeposited cobalt phosphate has been reported as a valid alternative to noble metals as an ele...
Aluminum phosphate thin films were deposited by plasma-assisted atomic layer deposition (ALD) using ...
The development of active and stable earth-abundant catalysts for hydrogen and oxygen evolution is o...
A new plasma-enhanced atomic layer deposition process was developed to deposit iron phosphate by usi...
The coating of complex three-dimensional structures with ultrathin metal films is of great interest ...
Transition‐metal phosphides (TMP) prepared by atomic layer deposition (ALD) are reported for the fir...
High purity, uniform, and conformal aluminum phosphate (AlPxOy) thin films were deposited by atomic ...
The increasingly complex nanoscale three-dimensional and multilayered structures utilized in nanoele...
Titanium phosphate thin films were deposited by a new plasma-enhanced atomic layer deposition proces...
A plasma-enhanced ALD process has been developed to deposit nickel phosphate. The process combines t...