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October 5, 2001Physical review. B, Condensed matter475 citations

Electron affinity of plasma-hydrogenated and chemically oxidized diamond (100) surfaces

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FMFlorian MaierFriedrich-Alexander-Universität Erlangen-NürnbergJRJ. RisteinFriedrich-Alexander-Universität Erlangen-NürnbergLLL. LeyUniversity of Stuttgart

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Abstract

The electron affinity (EA) of single crystal diamond (100) is determined as a function of hydrogen and oxygen coverage by a combination of work function and photoemission experiments. For the fully hydrogenated (100) - (21): H surface an EA of -1. 3 eV and for the oxidized surface C (100) - (11): O =+1. 7 eV are obtained. These are the lowest and the highest electron affinities, respectively, ever reported for any diamond surface. The variation in with O and H coverage is well described by a simple dipole model provided that the depolarization is properly taken into account for high adsorbate densities. This analysis favors the bridge position (etherlike) for oxygen on C (100). By mixing H and O adsorbates on a microscopic scale the EA of C (100) can be adjusted at will over 3 eV between the extreme values without jeopardizing the chemical passivation of the diamond surface afforded by H or O termination.

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Cite This Study

Maier et al. (2001) studied this question.

synapsesocial.com/papers/69db1e761e19c8ae08836780https://doi.org/10.1103/physrevb.64.165411
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