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Microstructure and adhesion properties of a-CN and Ti/a-CN nanocomposite thin films prepared by hybrid ion beam deposition technique

机译:混合离子束沉积技术制备的A-CN和Ti / A-CN纳米复合薄膜的微观结构和粘附性能

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Carbon based materials have attracted much for its unique surface microstructure and nanomechanical properties among researchers. In this study, the influence of microstructure on the nanomechanical properties of thin carbon based films was studied in detail. For which amorphous Carbon nitride (a-CN) and Titanium incorporated amorphous Carbon nitride (Ti/a-CN) thin films were prepared with a thickness of less than 100 nm using hybrid ion beam deposition technique. The incorporation of Ti into the a-CN matrix greatly modified the (sp)~3/(sp)~2 hybridized bonding ratio and it is reflected in the mechanical hardness of Ti/a-CN thin film. Most of the incorporated Ti reacts with carbon and nitrogen to form TiN and TiCN phases respectively. On the other hand, owing to the usage of energetic ion bombardment and the presence of TiN/TiCN phases in the carbon nitride matrix, the Ti/a-CN nanocomposite film shows improved adhesion strength compared to that of pure a-CN film. Overall the presence of hard metallic phase in the amorphous carbon network alters the microstructure and improves the adhesion strength of a-CN films suitable for protective coating applications.
机译:基于碳的材料吸引了研究人员独特的表面微观结构和纳米机械特性。在该研究中,详细研究了微观结构对薄碳基薄膜纳米力学性质的影响。对于使用混合离子束沉积技术的厚度小于100nm的厚度小于100nm的制备无定形碳氮化物(A-CN)和钛掺入的无定形碳氮化物(Ti / A-CN)薄膜。将Ti掺入A-CN基质大大改性(SP)〜3 /(SP)〜2杂交键合比,并反映在Ti / A-CN薄膜的机械硬度中。大多数掺入的Ti与碳和氮气反应分别形成锡和TiCN相。另一方面,由于使用能量离子轰击和在氮化物基质中存在锡/ TiCN相,与纯A-CN膜相比,Ti / A-A-CN纳米复合膜显示出改善的粘合强度。总体而言,非晶碳网络中的硬质金属相改变了微观结构并提高了适用于保护涂料应用的A-CN膜的粘合强度。

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