李春
个人信息Personal Information
教授
博士生导师
性别:男
学历:博士研究生毕业
学位:理学博士学位
办公地点:成都市清水河校区4号科研楼B区125
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[21]
X. Z. Zhao
,
G. H. Li
,
K. Ding
,
D. S. Zhao
,
N. S. Liu
,
L. Ai
,
L. Y. Yuan
,
C. Li
,
G. J. Fang
,
and J. Li
,
Synthesis and photoluminescence, field emission properties of stalactite-like ZnS-ZnO composite nanostructures
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[22]
X. Zhao
,
N. Liu
,
M. Wang
,
J. Li
,
C. Li
,
G. Fang
,
and L. Yuan
,
Field emission enhancement of ZnO nanorod arrays with hafnium nitride coating
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[23]
Q.Q. Wang
,
G.J. Fang
,
Y.B. Han
,
C. Li
,
X.R. Su
,
S. Xiao
,
and Chinese Physics
,
Linear and nonlinear optical properties of ZnO nanorod arrays
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[24]
X. Zhao
,
J. Li
,
Q. Zhang
,
C. Li
,
M. Wang
,
N. Liu
,
L. Yuan
,
G. Fang
,
and L. Ai
,
Influence of substrate temperature on electrical and optical properties of p-type semitransparent conductive nickel oxide thin films deposited by radio frequency sputtering
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[25]
X. Zhao
,
Y. Liu
,
N. Liu
,
X. Yang
,
G. Fang
,
and C. Li
,
Effect of adsorbates on field emission from flame-synthesized carbon nanotubes
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[26]
X. Zhao
,
X. Yang
,
N. Liu
,
G. Fang
,
and C. Li
,
Flame-synthesis of carbon nanotubes on silicon substrates and their field emission properties
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[27]
X. Zhao
,
H. Huang
,
Y. Ren
,
N. Liu
,
G. Fang
,
and C. Li
,
Snowflake-like ZnO structures: Self-assembled growth and characterization
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[28]
X. Zhao
,
B. Dong
,
L. Ai
,
J. Li
,
G. Fang
,
and C. Li
,
Effect of seed layer on structural properties of ZnO nanorod arrays grown by vapor-phase transport
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[29]
X. Zhao
,
J. Li
,
M. Wang
,
C. Li
,
W. Zeng
,
X. Yang
,
G. Fang
,
and N. Liu
,
Synthesis of patterned carbon nanotube arrays for field emission using a two layer Sn/Ni catalyst in an ethanol flame
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[30]
D. Golberg
,
Y. Huang
,
C. Zhi
,
Y. Bando
,
and .C. Li
,
Thickness-dependent bending modulus of hexagonal boron nitride nanosheets
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[31]
D. Golberg
,
M. Mitome
,
C. Tang
,
T. Terao
,
H. Zeng
,
X. Fang
,
C. Li
,
X. Jiang
,
Y. Bando
,
and B. Liu
,
Self-assembled ZnS nanowire arrays: synthesis, in situ Cu doping and field emission
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[32]
D. Golberg
,
C. Li
,
C. Tang
,
Y. Bando
,
Y. Huang
,
and J. Lin
,
Synthesis of In2O3 nanowire-decorated Ga2O3 nanobelt heterostructures and their electrical and field-emission properties
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[33]
D. Wang
,
Y. Bando
,
C. Li
,
N. Park
,
Y. Jing
,
and K. Sun
,
Solution synthesis of large-scale, high-sensitivity ZnO/Si hierarchical nanoheterostructure photodetectors
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[34]
Y. Koide
,
S. Hishita
,
C.Li
,
and M. Liao
,
Batch Production of single-crystal diamond brideges and cantilevers for microelectromechanical systems
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[35]
D. Golberg
,
J. Lin
,
Y. Huang
,
T. Sekiguchi
,
B. Dierre
,
Y. Bando
,
and .C. Li
,
Effect of size-dependent thermal instability on synthesis of Zn2SiO4-SiOx core-shell nanotube arrays and their cathodoluminescence properties
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[36]
D. Golberg
,
Y. Koide
,
M. Liao
,
Y. Bando
,
and .C. Li
,
Visible-blind deep-ultraviolet Schottky photodetector with a photocurrent gain based on individual Zn2GeO4 nanowire
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[37]
D. Golberg
,
Y. Bando
,
and C. Li
,
Current imaging and electromigration-induced splitting of GaN nanowires as revealed by conductive atomic force microscopy
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[38]
Y. Bando
,
D. Golberg
,
M. Mitome
,
C. Li
,
H. Zeng
,
L. Li
,
C. Zhi
,
and X. Wang
,
Chemical Blowing of thin-walled bubbles: high-throughput fabrication of large-area, few-layered BN and CxBN Nanosheets
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[39]
D. Wang
,
Z. Liu
,
Y. Bando
,
Y. Zhou
,
K. Banu
,
K. Madsen
,
A. Kargar
,
R. Aguinaldo
,
X. Zhang
,
C. Li
,
Y. Jing
,
and K. Sun
,
3D branched nanowire heterojunction photoelectrodes for high-efficiency solar water splitting and H2 generation
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[40]
L. Cao
,
Y. Yu
,
G. P. Snigdha
,
L. Huang
,
and C. Li
,
Role of boundary layer diffusion in vapor deposition growth of chalcogenide nanosheets: the case of GeS