Generation of highly n-type titanium oxide using plasma fluorine insertion.

Seo, Hyungtak; Baker, L Robert; Hervier, Antoine; Kim, Jinwoo; Whitten, J L; Somorjai, Gabor A · Nano Lett · 2011

basic_science · Level V

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Abstract

True n-type doping of titanium oxide without formation of midgap states would expand the use of metal oxides for charge-based devices. We demonstrate that plasma-assisted fluorine insertion passivates defect states and that fluorine acts as an n-type donor in titanium oxide. This enabled us to modify the Fermi level and transport properties of titanium oxide outside the limits of O vacancy doping. The origin of the electronic structure modification is explained by ab initio calculation.

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