Electronic transport in natively oxidized silicon nanowires.
basic_science · Level V
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- Record sourced from PubMed, PMID 21375292.
- Also identified by DOI 10.1021/nn103363y.
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Abstract
Silicon nanowires are widely used as active functional elements in advanced electronic devices, most notably in biological sensors. While surface oxidation of the wires occurs upon exposure to a wet environment, theoretical studies are often limited to ideally crystalline, H-terminated wire models. We present an accurate computational study of the electronic and transport properties of natively oxidized, ultrathin silicon nanowires including dopant elements. Comparisons with perfectly ordered and distorted H-terminated structures reveal an unexpected interplay of effects that oxidation-induced structural distortions and electronegative Si/SiO(x) interfaces have on the conductance of B- or P-doped nanowires.