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Paper Publications
[11]J.W. Li, H.L. Zhang, L.H. Wang, Z.F. Che, Y. Zhang, J.G. Wang, M.J. Kim, X.T. Wang: Optimized thermal properties in diamond particles reinforced copper-titanium matrix composites produced by gas pressure infiltration, Composites Part A, 91 (2016) 189-194.
[12]Z.F. Che, Q.X. Wang, L.H. Wang, J.W. Li, H.L. Zhang, Y. Zhang, X.T. Wang, J.G. Wang, M.J. Kim: Interfacial structure evolution of Ti-coated diamond particle reinforced Al matrix composite produced by gas pressure infiltration, Composites Part B, 113 (2017) 285-290.
[13]Z.F. Che, J.W. Li, Q.X. Wang, L.H. Wang, H.L. Zhang, Y. Zhang, X.T. Wang, J.G. Wang, M.J. Kim: The formation of atomic-level interfacial layer and its effect on thermal conductivity of W-coated diamond particles reinforced Al matrix composites, Composites Part A, 107 (2018) 164-170.
[14]L.H. Wang, J.W. Li, M. Catalano, G.Z. Bai, N. Li, J.J. Dai, X.T. Wang, H.L. Zhang, J.G. Wang, M.J. Kim: Enhanced thermal conductivity in Cu/diamond composites by tailoring the thickness of interfacial TiC layer, Composites Part A, 113 (2018) 76-82.
[15]L.H. Wang, J.W. Li, M. Catalano, G.Z. Bai, N. Li, J.J. Dai, X.T. Wang, H.L. Zhang, J.G. Wang, M.J. Kim: Enhanced thermal conductivity in Cu/diamond composites by tailoring the thickness of interfacial TiC layer, Composites Part A, 113 (2018) 76-82.
[16]G. Chang, F.Y. Sun, L.H. Wang, Z.X. Che, X.T. Wang, J.G. Wang, M.J. Kim, H.L. Zhang: Regulated interfacial thermal conductance between Cu and diamond by a TiC interlayer for thermal management applications, ACS Applied Materials & Interfaces, 11 (2019) 26507-26517.
[17]X.Y. Liu, F.Y. Sun, L.H. Wang, Z.X. Wu, X.T. Wang, J.G. Wang, M.J. Kim, H.L. Zhang: The role of Cr interlayer in determining interfacial thermal conductance between Cu and diamond, Applied Surface Science, 515 (2020) 146046.
[18]X.Y. Zhu, C. Yang, P.W. Wu, Z.Q. Ma, Y.Y. Shang, G.Z. Bai, X.Y. Liu, G. Chang, N. Li, J.J. Dai, X.T. Wang, H.L. Zhang: Precise control of versatile microstructure and properties of graphene aerogel via freezing manipulation, Nanoscale, 12 (2020) 4882-4894.
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