近期论文
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2014年
[1] H.Y. Wang, B.Y. Wang, J.K. Meng, J.G. Wang*, Q.C. Jiang, “One-step synthesis of Co-doped Zn2SnO4-graphene-carbon nanocomposites with improved lithium storage performances”, Journal of Materials Chemistry A, 3 (2015) 1023–1030.
[2] B.Y. Wang, H.Y. Wang, Y.L. Ma, X.H. Zhao, W. Qi, Q.C. Jiang, “Facile synthesis offine Zn2SnO4 nanoparticles/graphene composites with superior lithium storage performance”, Journal of Power Sources 281 (2015) 341-349.
[3] X.L. Nan, H.Y. Wang*, J. Rong, E.S. Xue, G.J. Liu, Q.C. Jiang, “Tensile deformation behaviors in a fine-grained, rolled Mg–3Al–3Sn alloy at room temperature up to 250 oC”, Advanced Engineering Materials, 2015, in press.
[4] D. Luo, C.H. Pei, J. Rong, H.Y. Wang*, Q. Li, Q.C. Jiang, “Microstructure and mechanical properties of SiC particles reinforced Mg–8Al–1Sn magnesium matrix composites fabricated by powder metallurgy”, Powder Metallurgy, 2015, In press.
[5] X.Z. Ma, B. Jin, H.Y. Wang, J.Z. Hou, X.B. Zhong, H.H. Wang, P.M. Xin, “S–TiO2 composite cathode materials for lithium/sulfur batteries”, Journal of Electroanalytical Chemistry 736 (2015) 127–131.
[6] Z.Z. Yang, H.Y. Wang,* X.B. Zhong, W. Qi., B.Y. Wang, Q.C. Jiang, “Assembling sulfur spheres on carbon fiber with graphene coated hybrid bulk electrodes for lithium sulfur batteries”, RSC Advance, 4 (2014) 50964–50968.
[7] X.B. Zhong, B. Jin*, Z.Z. Yang, C. Wang, H.Y. Wang*, “Facile shape design and fabrication of ZnFe2O4 as an anode material for Li-ion batteries”, RSC Adv. 4 (2014) 55173–55178.
[8] L. Chen, H.Y. Wang*, Y.J. Li, M. Zha, Q.C. Jiang, “Morphology and size control of octahedral and cubic primary Mg2Si in Mg–Si system by regulating Sr contents”, CrystEngComm, 16 (2014) 448–454.
[9] L. Zhang, C.G. Liu, H.Y. Wang*, X.L. Nan, G.J. Liu, Q.C. Jiang, “Slip-induced texture evolution of rolled Mg–6Al–3Sn alloy during uniaxial tension along rolling and transverse directions”, Materials Science and Engineering A, 597(2014)376–380.
[10] D. Luo, H.Y. Wang*, Z.T. Ouyang, L. Chen, J.G. Wang, Q.C. Jiang, “Microstructure and mechanical properties of Mg–5Sn alloy fabricated by a centrifugal casting method”, Materials Letters, 116 (2014)108–111.
[11] D. Luo, N. Xia, H.Y. Wang*, L. Chen, J.G. Wang, Q.C. Jiang, “Microstructure and tensile properties of a new type of hot-rolled Mg–3Sn–1Zn alloy sheet at elevated temperatures”, Materials Science and Technology, 30 (2014) 1305-1308
2013年
[1] L. Chen, H.Y. Wang*, D. Luo, H.Y. Zhang, B. Liu, Q.C. Jiang, “Synthesis of octahedron and truncated octahedron primary Mg2Si by controlling the Sb contents”, CrystEngComm, 15(2013) 1787–1793.
[2] C. Wang, H.Y. Zhang, H.Y. Wang*, G.J. Liu, Q.C. Jiang, “Effects of doping atoms on generalized-stacking-fault (GSF) energies of Mg from first-principles calculations”, Scripta Materialia, 69 (2013) 445–448.
[3] H.Y. Wang, E.S. Xue, X.L. Nan, T. Yue, Y.P. Wang, Q.C. Jiang*, “Influence of grain size on strain rate sensitivity in rolled Mg–3Al–3Sn alloy at room temperature”, Scripta Materialia, 68 (2013) 229–232.
[4] X.L. Nan, H.Y. Wang*, Z.Q. Wu, E.S. Xue, L. Zhang, Q.C. Jiang*, “Effect of c/a axial ratio on Schmid factors in hexagonal close-packed metals”, Scripta Materialia, 68 (2013) 530–533
[5] D. Luo, H.Y. Wang*, L. Chen, G.J. Liu, J.G. Wang*, Q.C. Jiang, “Strong strain hardening ability in an as-cast Mg–3Sn–1Zn alloy”, Materials Letters 94 (2013) 51–54.
[6] H.Y. Zhang, H.Y. Wang*, C. Wang, G.J. Liu, Q.C. Jiang, “First-principles calculations of generalized stacking fault energy in Mg alloys with Sn,Pb and Sn+Pb dopings”, Materials Science and Engineering A584 (2013) 82–87.
[7] C. Wang, H.Y. Wang*, H.Y. Zhang, X.L. Nan, E.S. Xue, Q.C. Jiang, “Influence of Al contents on generalized-stacking-fault (GSF) energy in Mg–Al–Zn alloys: First-principles calculations”, Journal of Alloys and Compounds 575 (2013) 423–433.
[8] L. Zhang, C.G. Liu, H.Y. Wang*, X.L. Nan, Z.Q. Wu, Q.C. Jiang, “Deformation mechanisms of a rolled Mg-6Al-3Sn alloy during plane strain compression”, Materials Science and Engineering A, 578(2013)362–369.
[9] L. Zhang, C.G. Liu, H.Y. Wang*, X.L. Nan, W. Xiao, Q.C. Jiang, “Twinning and mechanical behavior of an extruded Mg–6Al–3Sn alloy with a dual basal texture”, Materials Science and Engineering A, 578 (2013) 14–17.
[10] H.Y. Wang, G.Y. Liu, Z.Z. Yang, B.Y. Wang, L. Chen, Q.C. Jiang, “Facile Synthesis of Mesoporous SnO2 Submicrospheres by Microemulsion Approach as High-Capacity Anodes Material for Lithium-Ion Batteries”, International Journal of Electrochemical Science, 8(2013), 8 (2013) 2345–2353.
[11] G.Y. Liu, H.Y. Wang, B. Jin, Z.Z. Yang, W. Qi, Y.C. Liu, Q.C. Jiang, “Synthesis and Electrochemical Properties of Mesoporous SnO2/C Composites as Anode Materials for Lithium Ion Batteries”, International Journal of Electrochemical Science, 8(2013), 8 (2013) 4797-4806.
[12] H.Y. Wang, S.J. Lü, W. Xiao, G.J. Liu, J.G. Wang, Q.C. Jiang, “Reaction pathway of combustion synthesis of Ti5Si3 in Cu–Ti–Si System”, Journal of the American Ceramic Society, 96(3) (2013) 950-956.
[13] G.Y. Liu, H.Y. Wang, G.Q. Liu, Z.Z. Yang, B. Jin, Q.C. Jiang, “Synthesis and electrochemical performance of high-rate dual-phase Li4Ti5O12–TiO2 nanocrystallines for Li-ion batteries”, Electrochimica Acta, 87 (2013) 218–223.
[14] B. Jin, A.H. Liu, G.Y. Liu, Z.Z. Yang, X.B. Zhong, X.Z. Ma, M. Yang, H.Y. Wang, “Fe3O4-pyrolytic graphite oxide composite as an anode material for lithium secondary batteries”, Electrochimica Acta 90 (2013) 426–432.