Tailored thermal expansion and electrical properties of α-Cu2V2O7/Al
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Xiansheng Liu | E. Liang | Juan Guo | Yanchao Mao | M. Chao | Mengdi Zhang | Mengjie Yang | Xuhui Kong | Niu Zhang | Xiaoshuai Kong
[1] E. Liang,et al. Negative thermal expansion and electrical properties of α-Cu2V2O7 , 2016 .
[2] Xiansheng Liu,et al. Electrical properties of Al–ZrMgMo3O12 with controllable thermal expansion , 2015 .
[3] Wenbo Song,et al. High Solubility of Hetero-Valence Ion (Cu 2+ ) for Reducing Phase Transition and Thermal Expansion of ZrV 1.6 P 0.4 O 7 , 2014 .
[4] Wenbo Song,et al. The control of thermal expansion and impedance of Al–Zr2(WO4)(PO4)2 nano-cermets for near-zero-strain Al alloy and fine electrical components , 2013 .
[5] Yi Wu,et al. The effect of phase transformation on the thermal expansion property in Al/ZrW2O8 composites , 2013, Journal of Materials Science.
[6] Kazuya Saito,et al. Negative thermal expansion emerging upon structural phase transition in ZrV2O7 and HfV2O7. , 2011, Dalton transactions.
[7] V. G. Bamburov,et al. Atomic and Electronic Structure of Zinc and Copper Pyrovanadates with Negative Thermal Expansion , 2010 .
[8] Byung Gon Kim,et al. Effects of thermal processing on thermal expansion coefficient of a 50 vol.% SiCp/Al composite , 2001 .
[9] John S. O. Evans,et al. Room‐Temperature Superstructure of ZrV2O7 , 1998 .
[10] A. Mortensen,et al. Thermal expansion responses of pressure infiltrated SiC/Al metal-matrix composites , 1997 .
[11] A. Sleight,et al. Negative Thermal Expansion and Phase Transitions in the ZrV2-xPxO7 Series , 1995 .
[12] P. Štefánik,et al. Wettability of zirconia-coated carbon by aluminium , 1994 .
[13] F. A. Benko,et al. Semiconductivity and optical interband transitions of CuV2O6 and Cu2V2O7 , 1992 .
[14] R. Buchanan,et al. Properties of Hot‐Pressed Zirconium Pyrovanadate Ceramics , 1983 .