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中山大学理工学院导师介绍:王成新

 


16.Y. H. Yang, C. X. Wang, B. Wang, Z. Y. Li, J. Chen, D. H. C

hen, N. S. Xu, G. W. Yang, and J. B. Xu, Radial ZnO nanowir

e nucleation on amorphous carbons,

Appl. Phys. Lett. Vol. 87, pp. 183109,

Oct., 2005.


15.H.W. Liu, C.X. Wang, C.X. Gao, Y.H. Han, J.F. Luo, G.T. Zo

u, and C. Wen, Diamond films grown on seeded substrates by

hot-filament chemical vapour deposition with H2 as the onl

y feeding gas,

J Phys-Condens. Mat., Vol. 14, No. 44, pp. 10969-10972,

Nov., 2002.


14.H.W. Liu, C.X. Wang, C.X. Gao, Y.H. Han, J.F. Luo, G.T. Zo

u, and C. Wen, New insights into selected-area deposition o

f diamond films by means of selective seeding,

J Phys-Condens. Mat., Vol. 14, No. 44, pp.10973-10977,

Nov., 2002.


13.G. Ouyang, C. X. Wang, S. W. Li, X. Zhou, and G. W. Yang, S

ize-dependent thermodynamic criterion for the thermal stabi

lity of binary immiscible metallic multilayersSize-dependen

t thermodynamic criterion for the thermal stability of bina

ry immiscible metallic multilayers,

Appl. Surf. Sci., Vol. 252, No. 11, pp. 3993-3996,

Mar., 2006.


12.G. Ouyang, X. Tan, C. X. Wang, and G. W. Yang, Solid solubi

lity limit in alloying nanoparticles,

Nanotechnology, Vol.17, No. 16, pp. 4257-4262,

Aug., 2006.


11.G. Ouyang, X. Tan, C. X. Wang, and G. W. Yang, Charge-induc

ed transition between miscible and immiscible in nanometer-

sized alloying particles,

Chem. Phys. Lett., Vol. 423, No. 1-3, pp. 143-146,

May, 2006.


10.G. Ouyang, L. H. Liang, C. X. Wang, and G. W. Yang, Size-de

pendent interface energy,

Appl. Phys. Lett. Vol. 88, pp. 091914,

Mar., 2006.


9.G Ouyang, X. Tan, C. X. Wang, and G. W. Yang, Physical and

chemical origin of size-dependent spontaneous interfacial a

lloying of core–shell nanostructures,

Chem. Phys. Lett., Vol. 420, No. 1-3, pp. 65-70,

March, 2006.


8.B. Wang, Y. H. Yang, C. X. Wang, and G. W. Yang, Nanostruct

ures and self-catalyzed growth of SnO2,

J. Appl. Phys., Vol. 98, pp. 073520 (1-5),

Oct., 2005.


7.B. Wang, Y. H. Yang, C. X. Wang, and G. W. Yang, Growth an

d photoluminescence of SnO2 nanostructures synthesized by A

u-Ag alloying catalyst assisted carbothermal evaporation,

Chem. Phys. Lett., Vol. 407, No. 4-6, pp. 347-363,

May, 2005.


6.B. Wang, Y. H. Yang, C. X. Wang, N. S. Xu, and G. W. Yang,

Field emission and photoluminescence of SnO2 nanograss,

J. Appl. Phys., Vol. 98, pp. 124303,

Dec., 2005.


5.Y. H. Yang, Z. Y. Li, B. Wang, C. X. Wang, D. H. Chen, and

G. W. Yang, Self-assembled ZnO agave-like nanowires and ano

malous superhydrophobicity,

J Phys-Condens. Mat. Vol. 17, No. 35, pp. 5441-5446,

Sep., 2005.


4.H. W. Liu, C.X. Gao, X. Li, C.X. Wang, Yonghao Han, Guangti

an Zou, Wenkui Wang, Liling Sun, and Chao Wen, Patterning o

f Polycrystalline Diamond Thin Films on a Variety of Substr

ates by Selectively Seeding with Purified Ultrafine Diamon

d Powder,

J. Vac. Sci.& Technol. A., Vol. 18, No. 3, pp. 1041-1044,

May-July, 2000.


3.H.W. Liu, C.X. Gao, X. Li, C.X. Wang, Y.H. Han, and G.T. Zo

u, Selective deposition of diamond films on

insulators by selective seeding with a double-layer mask,

Diam. Relat. Mater., Vol. 10, No. 9-10, pp. 1573-1577,

Sep.-Nov., 2001.


2.Hongwu Liu, Chunxiao Gao, Guangtian Zou, Xun Li, Chengxin W

ang, and Cao Wen, The Selective Area Deposition of Diamond

Films,

Jpn. J. Appl. Phys part 1., Vol.39, No. 3A, pp. 1323-1324,

Mar., 2000.


1.Baozhao Tu, Qiliang Cui, Peng Xu, Xin Wang, Wei Gao, Chengx

in Wang, Jing Liu, and Guangtian Zou, The pressure-induced

phase transition of Ga2O3,

J.Phys.:Condens.Matter, Vol, 14, No. 44, pp. 10627-10630,

Nov., 2002.
获奖情况
教育部新世纪优秀人才支持计划

2008年度广东省科学技术奖(自然科学类)一等奖(第二完成人)


广东省高等学校“千百十工程”培养对象(校级)


日本 JSPS Research Fellowship


中山大学百人计划
 

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