[1] J. Sang, W. Yang, J. Zhu, L. Fu, D. Li, L. Zhou, Regulating interface adhesion and enhancing thermal conductivity of diamond/copper composites by ion beam bombardment and following surface metallization pretreatment, J. Alloy. Compd., 740 (2018) 1060-1066.
[2] W. Yang, J. Sang, L. Zhou, K. Peng, J. Zhu, D. Li, Overcoming selective interfacial bonding and enhancing thermal conductivity of diamond/aluminum composite by an ion bombardment pretreatment, Diamond and Related Materials, 81 (2018) 127-132.
[3] J. Zhu, Y. Hu, M. Xu, W. Yang, L. Fu, D. Li, L. Zhou, Enhancement of the Adhesive Strength between Ag Films and Mo Substrate by Ag Implanted via Ion Beam-Assisted Deposition, Materials, 11 (2018).
[4] T. Xie, J. Zhu, L. Fu, R. Zhang, N. Li, M. Yang, J. Wang, W. Qin, W. Yang, D. Li, L. Zhou, The evolution of hardness in Cu-W alloy thin films, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing, 729 (2018) 170-177.
[5] T. Xie, L. Fu, W. Qin, J. Zhu, W. Yang, D. Li, L. Zhou, Self-assembled metal nano-multilayered film prepared by co-sputtering method, Applied Surface Science, 435 (2018) 16-22.
[6] S. Chen, W. Yang, J. Zhu, L. Fu, D. Li, L. Zhou, Preparation of highly-ordered lanthanum hexaboride nanotube s and optimizing its field emission property by ion bombardment post-treatment, Journal of Materials Science-Materials in Electronics, 29 (2018) 10008-10015.
[7] W. Qin, L. Fu, J. Zhu, W. Yang, J. Sang, D. Li, L. Zhou, Electrical and thermal properties of Cu-Ta films prepared by magnetron sputtering, Applied Surface Science, 443 (2018) 97-102.
[8] W. Qin, L. Fu, T. Xie, J. Zhu, W. Yang, D. Li, L. Zhou, Abnormal hardness behavior of Cu-Ta films prepared by magnetron sputtering, J. Alloy. Compd., 708 (2017) 1033-1037.
[9] R. Peng, W. Yang, L. Fu, J. Zhu, D. Li, L. Zhou, Superhydrophilicity of novel anodic alumina nanofibers films and their formation mechanism, Materials Research Express, 4 (2017).
[10] W. Yang, K. Peng, J. Zhu, D. Li, L. Zhou, Enhanced thermal conductivity and stability of diamond/aluminum composite by introduction of carbide interface layer, Diamond and Related Materials, 46 (2014) 35-41.
[11] W. Yang, K. Peng, L. Zhou, J. Zhu, D. Li, Finite element simulation and experimental investigation on thermal conductivity of diamond/aluminium composites with imperfect interface, Computational Materials Science, 83 (2014) 375-380.
[12] W. Yang, L. Zhou, K. Peng, J. Zhu, L. Wan, Effect of tungsten addition on thermal conductivity of graphite/copper composites, Composites Part B-Engineering, 55 (2013) 1-4.