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Nitrogen-incorporated ultrananocrystalline diamond and multi-layer-graphene-like hybrid carbon films

机译:掺氮超纳米晶金刚石和类多层石墨烯杂化碳膜

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Nitrogen-incorporated ultrananocrystalline diamond (N-UNCD) and multi-layer-graphene-like hybrid carbon films have been synthesized by microwave plasma enhanced chemical vapor deposition (MPECVD) on oxidized silicon which is pre-seeded with diamond nanoparticles. MPECVD of N-UNCD on nanodiamond seeds produces a base layer, from which carbon structures nucleate and grow perpendicularly to form standing carbon platelets. High-resolution transmission electron microscopy and Raman scattering measurements reveal that these carbon platelets are comprised of ultrananocrystalline diamond embedded in multilayer-graphene-like carbon structures. The hybrid carbon films are of low electrical resistivity. UNCD grains in the N-UNCD base layer and the hybrid carbon platelets serve as high-density diamond nuclei for the deposition of an electrically insulating UNCD film on it. Biocompatible carbon-based heaters made of low-resistivity hybrid carbon heaters encapsulated by insulating UNCD for possible electrosurgical applications have been demonstrated.
机译:掺氮的超纳米晶金刚石(N-UNCD)和多层石墨烯状杂化碳膜是通过在预先沉积有金刚石纳米粒子的氧化硅上进行微波等离子体增强化学气相沉积(MPECVD)合成的。 N-UNCD的MPECVD在纳米金刚石种子上产生基础层,碳结构从该基础层成核并垂直生长以形成立式碳片。高分辨率透射电子显微镜和拉曼散射测量结果表明,这些碳片是由嵌入多层石墨烯状碳结构中的超纳米晶金刚石组成的。杂化碳膜的电阻率低。 N-UNCD基础层中的UNCD晶粒和杂化碳片用作高密度金刚石核,以在其上沉积电绝缘的UNCD膜。已经证明了由低电阻率的混合碳加热器制成的生物相容性碳基加热器,该加热器由绝缘的UNCD封装而成,可用于可能的电外科应用。

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