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Chemical State of Carbon Atoms on a Nanodiamond Surface: Growth Mechanism of Detonation Nanodiamond

机译:纳米金刚石表面上碳原子的化学状态:爆轰纳米金刚石的生长机理

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Identification of intermediate and final products of the chemical reaction that produces nanodiamond particles is a key factor in understanding its mechanism. In this work different nanodiamond samples were studied before and after chemical cleaning by X-ray photoelectron and Auger spectroscopy. It was found that the chemical state of carbon atoms is the same before and after chemical cleaning. We find that the carbon atoms are sp3-bonded inside nanodiamond particles and have a new, unique chemical state on the surfaces. The latter differs significantly from sp2- and sp3-bonded carbon and can be figured as the valence band near the Fermi level being occupied by three electrons.
机译:识别产生纳米金刚石颗粒的化学反应的中间产物和最终产物是理解其机理的关键因素。在这项工作中,在通过X射线光电子和俄歇光谱法进行化学清洗之前和之后研究了不同的纳米金刚石样品。发现碳原子的化学状态在化学清洗前后是相同的。我们发现碳原子在纳米金刚石粒子内部是sp 3 键结合的,并且在表面上具有新的独特化学状态。后者与sp 2 -和sp 3 键合的碳显着不同,可以看作是费米能级附近的价带被三个电子占据。

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