个人简介
学习经历
1986年9月- 1991年7月,上海同济大学本科毕业,获学士学位
1993年9月- 1996年7月,北京清华大学研究生毕业,获硕士学位
1996年9月- 1999年7月,上海交通大学博士毕业,获博士学位。
工作经历
1991年8月-1993年8月,江苏工学院 (现江苏大学)机械工程系,任助教
1999年7月-至今,上海交通大学材料学院任教
2000年12月-2004年7月,被聘为上海交通大学副教授
2002年7月-2004年1月,美国佐治亚理工学院,作高级访问学者。
2004年8月-至今,被聘为上海交通大学教授
近期论文
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Mao JJ, Kong XY, Wang D Assembly of metallic carbon nanodots aligned on vicinal Si(111)-7×7surface, JACS, 129:3782(2007)
Zou ZQ, Wang H, and Kong XY, Epitaxial growth of manganese silicide nanowires on Si(111)-(7?7) surface, Appl. Phys. Lett. 99: 133111 (2007)
Guo GF, Li JB, and Kong XY, et al., Direct measurement of residual stresses and their effects on the microstructure and mechanical properties of heat-treated Si3N4 ceramics II: with CeO2 as a single additive, Acta Materialia, 55: 3245 (2007)
Gou, XL, Wang GX, Kong XY,,Facile Synthesis and Characterization of Gallium Oxide (?-Ga2O3) 1D Nanostructures: Nanowires, Nanoribbons and Nanosheets, Chemistry- A European,14:5996 (2008)
Wang GX, Park J, Kong XY,, Branched nanostructures of Fermite for gas nanosenor, Crystal growth and design,8, 1940 (2008)
Guo GF, Li JB, and Kong XY, et al., Phase evolution in heat-treated Si3N4 with various additions of Yb2O3, J. Am. Ceram. Soc. 91, 614. (2008).
Ji D, Kong XY, Li JM, Atomistic failure mechanism of single wall carbon nanotubes with small diameters, Chinese Physics Letters, 24: 165(2007)
Kong XY, Ding Y, Yang R, Wang ZL Single-Crystal Nanorings Formed by Epitaxial Self-Coiling of Polar Nanobelts, Science, 303: 1348-1351 (2004) with website cover and Highlights
Kong XY, Wang ZL Spontaneous polarization-induced nanohelixes, nanosprings, and nanorings of piezoelectric nanobelts NANO LETT 3: 1625-1631 (2003) with cover,
Wang ZL, Kong XY, Zuo JM Induced growth of asymmetric nanocantilever arrays on polar surfaces PHYS REV LETT 91 (18): Art. No. 185502 (2003) with cover,
Ding Y, Kong XY, Wang ZL Doping and planar defects in the formation of single-crystal ZnO nanorings PHY. REV. B 70 (23): Art. No. 235408 (2004)
Wang ZL, Kong XY, Ding Y, et al.Semiconducting and piezoelectric oxide nanostructures induced by polar surfaces ADV. FUN. MAT. 14 (10): 943-956 OCT 2004