This work reports on the synthesis of chromium (III, IV) oxides films by KrF laser-assisted CVD. Films were deposited onto sapphire substrates at room temperature by the photodissociation of Cr(CO)(6) in dynamic atmospheres containing oxygen and argon. A study of the processing parameters has shown that partial pressure ratio Of O-2 to Cr(CO)(6) and laser fluence are the prominent parameters that have to be accurately controlled in order to co-deposit both the crystalline oxide phases. Films consistent with such a two-phase system were synthesised for a laser fluence of 75 mJ cm(-2) and a partial pressure ratio of about 1. (c) 2005 Elsevier B.V. All rights reserved
Cr2O3 films have been deposited on glass substrates by atmospheric pressure chemical vapour depositi...
Chromium oxide (CrO) thin films were grown by pulsed-DC reactive magnetron sputter deposition in an ...
Chromium dioxide is deposited as a ferromagnetic layer onto selected portions of a substrate or over...
This work reports on the synthesis of chromium oxide thin films prepared by photodissociation of Cr(...
Chromia (Cr2O3) has been extensively explored for the purpose of developing widespread industrial ap...
We have used laser-initiated chemical vapor deposition to grow the chromium oxide thin films through...
Chromium oxides, CrxOy, are of great interest due to the wide variety of their technological applica...
Tese de doutoramento em Física, apresentada à Universidade de Lisboa através da Faculdade de Ciência...
Abstract. This work reports on the synthesis of chromium oxide thin films prepared by photodisso-cia...
Laser-assisted chemical vapour deposition (LCVD) has been extensively studied in the last two decade...
We demonstrate that two-phase CrO2 and Cr2O3 thin films can be grown by using selective organometall...
In this work we report on the structure and magnetic and electrical transport properties of CrO2 fil...
The deposition of highly oriented a-axis CrO(2) films onto Al(2)O(3)(0001) by atmospheric pressure (...
Thin coatings of Cr2O3 have been used for numerous applications. Selective oxidation of chromium wil...
We have been able to fabricate CrO2 and Cr2O3 from ultraviolet photolytic and plasma-assisted decomp...
Cr2O3 films have been deposited on glass substrates by atmospheric pressure chemical vapour depositi...
Chromium oxide (CrO) thin films were grown by pulsed-DC reactive magnetron sputter deposition in an ...
Chromium dioxide is deposited as a ferromagnetic layer onto selected portions of a substrate or over...
This work reports on the synthesis of chromium oxide thin films prepared by photodissociation of Cr(...
Chromia (Cr2O3) has been extensively explored for the purpose of developing widespread industrial ap...
We have used laser-initiated chemical vapor deposition to grow the chromium oxide thin films through...
Chromium oxides, CrxOy, are of great interest due to the wide variety of their technological applica...
Tese de doutoramento em Física, apresentada à Universidade de Lisboa através da Faculdade de Ciência...
Abstract. This work reports on the synthesis of chromium oxide thin films prepared by photodisso-cia...
Laser-assisted chemical vapour deposition (LCVD) has been extensively studied in the last two decade...
We demonstrate that two-phase CrO2 and Cr2O3 thin films can be grown by using selective organometall...
In this work we report on the structure and magnetic and electrical transport properties of CrO2 fil...
The deposition of highly oriented a-axis CrO(2) films onto Al(2)O(3)(0001) by atmospheric pressure (...
Thin coatings of Cr2O3 have been used for numerous applications. Selective oxidation of chromium wil...
We have been able to fabricate CrO2 and Cr2O3 from ultraviolet photolytic and plasma-assisted decomp...
Cr2O3 films have been deposited on glass substrates by atmospheric pressure chemical vapour depositi...
Chromium oxide (CrO) thin films were grown by pulsed-DC reactive magnetron sputter deposition in an ...
Chromium dioxide is deposited as a ferromagnetic layer onto selected portions of a substrate or over...