Growth mechanism of Mo2C coatings on diamond particles in molten salt

Xutong Zheng, Yejie Cao*, Yongsheng Liu, Jiangyi He, Jing Wang, Yunhai Zhang, Ning Dong

*此作品的通讯作者

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摘要

Diamond has always been used for reinforcing diamond tools and thermal management materials owing to its high hardness and good thermal conductivity. However, surface inertness of diamond hinders tight bonding with the matrix, leading to significantly declined performance of diamond-reinforced composites. This can be solved by forming coatings with good wetting on diamond surface to serve as a bridge for optimizing interfacial bonding of composites. Accordingly, Mo2C coating was prepared in this study through molten salt method. Key parameters influencing coating quality were investigated systematically by multi-scale microstructural characterizations to shed light on growth mechanism. Results revealed nucleation process of Mo2C highly depended on different diamond surface nucleation sites controlled by reaction mechanism, while further growth of Mo2C coating was controlled by diffusion mechanism. Affinity of as-prepared Mo2C coating on diamond was directly verified by thermal shock tests. Overall, novel insights into nucleation process were provided, promising for further preparation and regulation of carbide coating on diamond.

源语言英语
文章编号103054
期刊Surfaces and Interfaces
40
DOI
出版状态已出版 - 8月 2023
已对外发布

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Zheng, X., Cao, Y., Liu, Y., He, J., Wang, J., Zhang, Y., & Dong, N. (2023). Growth mechanism of Mo2C coatings on diamond particles in molten salt. Surfaces and Interfaces, 40, 文章 103054. https://doi.org/10.1016/j.surfin.2023.103054