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Charge Transfer Equilibria Between Diamond and an Aqueous Oxygen Electrochemical Redox Couple

机译:金刚石与水氧电化学氧化还原对之间的电荷转移平衡

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Undoped, high-quality diamond is, under almost all circumstances, one of the best insulators known. However, diamond covered with chemically bound hydrogen shows a pronounced conductivity when exposed to air. This conductivity arises from positive-charge carriers (holes) and is confined to a narrow near-surface region. Although several explanations have been proposed, none has received wide acceptance, and the mechanism remains controversial. Here, we report the interactions of hydrogen-terminated, macroscopic diamonds and diamond powders with aqueous solutions of controlled pH and oxygen concentration. We show that electrons transfer between the diamond and an electrochemical reduction/oxidation couple involving oxygen. This charge transfer is responsible for the surface conductivity and also influences contact angles and zeta potentials. The effect is not confined to diamond and may play a previously unrecognized role in other disparate systems.
机译:在几乎所有情况下,未掺杂的高质量钻石都是已知的最佳绝缘体之一。但是,被化学键合的氢覆盖的金刚石在暴露于空气时显示出明显的导电性。该电导率来自于正电荷载流子(空穴),并被限制在狭窄的近表面区域。尽管已经提出了几种解释,但没有一种被广泛接受,并且该机制仍存在争议。在这里,我们报告了氢封端的宏观金刚石和金刚石粉末与受控pH和氧气浓度的水溶液之间的相互作用。我们表明,电子在金刚石与涉及氧的电化学还原/氧化对之间转移。这种电荷转移负责表面电导率,还影响接触角和ζ电势。这种影响不仅限于钻石,而且可能在其他不同的系统中发挥以前无法识别的作用。

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