Titanium phosphate thin films were deposited by a new plasma-enhanced atomic layer deposition process. The process consisted of sequential exposures to trimethyl phosphate (TMP, Me3PO4) plasma, O2 plasma and titanium isopropoxide (TTIP, Ti(OCH(CH3)2)4) vapor, and it was characterized by in situ spectroscopic ellipsometry and ex situ X-ray reflectometry. The growth linearity, growth per cycle (GPC), and density of the resulting thin films were investigated as a function of the pulse times and the substrate temperature. The conformality of the process was characterized by deposition on micropillars. At a substrate temperature of 300 °C and using saturated pulse times, linear growth with a GPC of 0.66 nm per cycle and without nucleation delay ...
Titanium dioxide films were grown by atomic layer deposition (ALD) using titanium tetraisopropoxide ...
High quality Lithium phosphate (Li3PO4) thin films have been deposited by metal-organic chemical vap...
Thin-film lithium carbonate (Li2CO3) has applications in various electrochemical devices, like Li-io...
Titanium phosphate thin films were deposited by a new plasma-enhanced atomic layer deposition proces...
A new plasma-enhanced atomic layer deposition process was developed to deposit iron phosphate by usi...
Vanadium phosphate films were deposited by a new process consisting of sequential exposures to trime...
The use of Ti phosphate as a functional coating for Li ion battery electrodes has been investigated,...
A plasma-enhanced ALD process has been developed to deposit nickel phosphate. The process combines t...
Lithium titanate (Li4Ti5O12) (LTO) has several promising properties with regard to energy storage. T...
Atomic layer deposition (ALD) of TiO2 was applied on porous polypropylene (PP) membranes which were ...
Aluminum phosphate thin films were deposited by plasma-assisted atomic layer deposition (ALD) using ...
Titanium dioxide (TiO2) films were deposited by plasma enhanced atomic layer deposition (PE-ALD) sys...
This work reports on the atomic layer deposition process combining lithium hexamethyl disilazide (Li...
Spatial atomic layer deposition retains the advantages of conventional atomic layer deposition: conf...
High quality Lithium phosphate (Li3PO4) thin films have been deposited by metal-organic chemical vap...
Titanium dioxide films were grown by atomic layer deposition (ALD) using titanium tetraisopropoxide ...
High quality Lithium phosphate (Li3PO4) thin films have been deposited by metal-organic chemical vap...
Thin-film lithium carbonate (Li2CO3) has applications in various electrochemical devices, like Li-io...
Titanium phosphate thin films were deposited by a new plasma-enhanced atomic layer deposition proces...
A new plasma-enhanced atomic layer deposition process was developed to deposit iron phosphate by usi...
Vanadium phosphate films were deposited by a new process consisting of sequential exposures to trime...
The use of Ti phosphate as a functional coating for Li ion battery electrodes has been investigated,...
A plasma-enhanced ALD process has been developed to deposit nickel phosphate. The process combines t...
Lithium titanate (Li4Ti5O12) (LTO) has several promising properties with regard to energy storage. T...
Atomic layer deposition (ALD) of TiO2 was applied on porous polypropylene (PP) membranes which were ...
Aluminum phosphate thin films were deposited by plasma-assisted atomic layer deposition (ALD) using ...
Titanium dioxide (TiO2) films were deposited by plasma enhanced atomic layer deposition (PE-ALD) sys...
This work reports on the atomic layer deposition process combining lithium hexamethyl disilazide (Li...
Spatial atomic layer deposition retains the advantages of conventional atomic layer deposition: conf...
High quality Lithium phosphate (Li3PO4) thin films have been deposited by metal-organic chemical vap...
Titanium dioxide films were grown by atomic layer deposition (ALD) using titanium tetraisopropoxide ...
High quality Lithium phosphate (Li3PO4) thin films have been deposited by metal-organic chemical vap...
Thin-film lithium carbonate (Li2CO3) has applications in various electrochemical devices, like Li-io...