1.
Suman
Neupane, Gary Kaganas,
Ramona Valenzuela, Latha Kumari,
Xuewen Wang, W.Z.
Li
“Synthesis and Characterization of
Ruthenium Dioxide Nanostructures”
Journal of Materials Sciences 46, 4803 (2011), DOI
10.1007/s10853-011-5390-2, 2011
2.
Yuehai Yang, W.Z.
Li
“Effective Radial Modulus of Single-walled
Carbon Nanotube Measured by Atomic Force Microscopy”
Applied Physics Letters 98, 041901 (2011). Also published on Virtual
Journal of Nanoscale Science & Technology 23(5),
(2011)
3.
Garima Thakur, Miodrag Micic, Yuehai Yang, Wenzhi Li, Dania Movia,
Silvia Giordani, Hongzhou
Zhang, and Roger M. Leblanc
“Conjugated Quantum Dots Inhibit The Amyloid ß (1-42) Fibrillation Process”
International Journal of Alzheimer's Disease,
2011, doi:10.4061/2011/502386.
4.
K. Kadel, Latha Kumari, W.Z. Li, Jian
Yu Huang and Paula P. Provencio
“Synthesis and Thermoelectric Properties of
Bi2Se3 Nanostructures”
Nanoscale Research Letters 6:57, 2011. DOI: 10.1007/s11671-010-9795-7
5.
Latha Kumari, Wenzhi Li, Jian Yu
Huang, Paula P Provencio
“Solvothermal
synthesis, structure and optical property of nanosized
CoSb3 skutterudite”
Nanoscale Research Letters 5,
1698 (2010).
6.
Latha Kumari, Wenzhi Li, Jianyu
Huang, Paula Provencio
"Nanosize
Transition Metal Antimonides, NiSb
and FeSb2: Solvothermal synthesis and
Characterization"
The Journal of Physical Chemistry 114, 9573 (2010)
7.
Wei Chen, Majid Beidaghi, Varun Penmatsa, Latha Kumari, Wenzhi Li, Chunlei Wang
“Integration of Carbon Nanotubes to C-MEMS
for On-chip Supercapacitors”
IEEE Transaction on Nanotechnology 9, 734 (2010)
8.
L. Kumari, W.Z. Li
“Synthesis and Optical Properties of Zinc
Oxide Hexagonal Microprisms”
Crystal Research and Technology 45, 311 (2010), Published online, DOI
10.1002/crat.200900600.
9.
Latha Kumari, W.Z. Li, Shrinivas
Kulkarni, K.H. Wu, Wei Cheng, Chunlei Wang, Charles H. Vannoy,
Roger M. Leblanc
“Effect of
surfactants on the structure and morphology of magnesium borate hydroxide nanowhiskers synthesized by hydrothermal route”
Nanoscale Research Letters 5,
149 (2010).
10.
Latha
Kumari, W.Z. Li, Charles H. Vannoy, Roger M. Leblanc, D.Z. Wang
“Zinc oxide micro- and nanoparticles:
Synthesis, structure and optical properties”
Materials Research Bulletin 45, 190 (2010).
11.
Yanli Zhao, Wenzhi Li
“Effect
of annealing and HNO3-treatment on the electrical properties of transparent
conducting carbon nanotube films”
Microelectronic
Engineering 87, 576 (2010), doi:10.1016/j.mee.2009.08.014
12.
Latha Kumari, Wenzhi Li, Jianmin Xu, Roger Leblanc, Dezhi Wang, Yi
Li, Haizhong Guo, Jiandi Zhang
"Controlled
Hydrothermal Synthesis of Zirconium Oxide Nanostructures and Their Optical
Properties"
Crystal Growth & Design 9, 3874 (2009).
13.
Latha Kumari, W.Z. Li, Charles H. Vannoy, Roger M. Leblanc, D.Z. Wang
“Synthesis,
characterization and optical properties of Mg(OH)2
micro-/nanostructure and its conversion to MgO”
Ceramics International
35, 3355 (2009).
14.
Latha Kumari, W.Z. Li
“Self-assembly
of beta-Ni(OH)2 nanoflakelets
to form hollow submicrospheres by hydrothermal route”
Published online, doi:10.1016/j.physe.2009.02.018,
Physica E 41, 1289 (2009).
15.
Latha Kumari, W.Z. Li, Charles H. Vannoy, Roger M.
Leblanc, D.Z.
Wang
“Vertically Aligned
and Interconnected Nickel Oxide Nanowalls Fabricated
by Hydrothermal Route”
Published online, doi:
10.1002/crat.200800583 (2009).
Crystal Research and Technology 44, 495 (2009).
16. Latha Kumari, G.
H. Du, W.Z. Li, Selva Vennila R, S.
K. Saxena, D.Z. Wang
“Synthesis,
Microstructure and Optical Characterization of Zirconium Oxide
Nanostructures”
Ceramics
International 35, 2401 (2009), doi:10.1016/j.ceramint.2009.02.007.
17. T. Zhang, Latha Kumari, G.H Du, W.Z. Li, Q.W. Wang, K. Balani, A.
AgarwaL
“Mechanical
Properties of Carbon Nanotube-Alumina Nanocomposites Synthesized by Chemical
Vapor Deposition and Spark Plasma Sintering”,
doi:10.1016/j.compositesa.2008.10.003,
Composites: Part A 40, 86 (2009).
18. L. Kumari, T. Zhang, G.H. Du, W.Z. Li, Q.W. Wang, A. Datye, K.H. Wu
“Synthesis, Microstructure
and Electrical Conductivity of Carbon Nanotube-Alumina Nanocomposites”
doi:10.1016/j.ceramint.2008.10.005,
Ceramics International 35,
1775 (2009).
19. Tae-Hwan Kim, John F. Wendelken, An-Ping
Li, Gaohui Du, W.Z. Li
“Probing
electrical transport in individual carbon nanotubes and junctions”
Nanotechnology 19, 485201 (2008).
20. L. Kumari, T. Zhang, G.H. Du, W.Z. Li, Q.W. Wang, A. Datye, K.H. Wu
“Thermal Properties of CNT-Alumina Nanocomposites”
Composites Science and Technology 68, 2178 (2008).
21. Latha Kumari, Wenzhi Li, Dezhi Wang
“Monoclinic Zirconium Oxide Nanostructures Synthesized By
Hydrothermal Route”
Nanotechnology 19, 19602 (2008)
(http://stacks.iop.org/Nano/19/195602).
22.
Gaohui Du, Wenzhi Li, and Yanqing Liu
“Filling Carbon Nanotubes with Co9S8
Nanowires through In-situ Catalyst Transition and Extrusion”
J. Phys. Chem. C 112, 1890 (2008)
23. K. Balani, T. Zhang, A. Karakoti, W.Z. Li, S. Seal, A. Agarwal
“In situ Carbon Nanotube Reinforcements in Plasma Sprayed
Aluminum Oxide Nanocomposite Coating”
Acta Materialia
56,
571 (2008)
24. B. Pandey, G.H. Du, W.Z. Li
“Matchstick-Like Carbon Nanotube Synthesis and
Structure”
Applied Physics A 90, 411 (2008)
25. W.Z. Li, X. Yan, K. kempa, Z. F Ren, M. Giersig
“Structure of flattened carbon nanotubes”
Carbon 45, 2938 (2007)
26. Tae-Hwan Kim, Zhouhang Wang, John F.
Wendelken, Hanno H. Weitering, Wenzhi Li,
An-Ping Li
“A cryogenic quardraprobe scanning
tunneling microscope system with fabrication capacity for nanotransport
research”
Review of Scientific Instruments
78,
123701 (2007)
27. G.H. Du, W.Z.
Li, Y.Q. Liu, Y. Ding, Z.L. Wang
“Growth of Carbon Nanotubes by
Pyrolysis of Thiophene”
J. Phys. Chem. C 111, 14293 (2007)
28.
T. Laha, S. Kuchibhatla, S. Seal, W.Z.
Li, A. Agarwal
“Interfacial Phenomena in Thermally Sprayed Multiwalled Carbon Nanotube Reinforced Aluminum Nanocoposite”
Acta Materialia 55,
1059 (2007)
29.
W.Z.
Li,
B. Pandey, Y.Q. Liu,
“Growth and Structure of Carbon Nanotube Y-Junctions”
J. Phys. Chem. B 110 (47), 23694 (2006)
30.
J.Y. Huang, L.C. Zhang, S. Chen, D.Z. Wang,
S.H. Jo, W.Z. Li, Z.F. Ren
“Interface Reaction in a Chromium Buffer Layer Deposited
Between Stainless Steel and a Silicon Substrate”
Philosophical
Magazine
85, 1459 (2005)
31.
T. A El-Aguizy,
J.H. Jeong, Y. B. Jeon,
W.Z. Li, Z.F. Ren, S.G. Kim,
“Transplanting
Carbon Nanotubes”,
Applied Physics
letters 85, 5995 (2004)
32.
Y.Wang,
J. Rybczynski, D.Z. Wang, K. Kempa,
Z.F. Ren, W.Z.
Li, B. Kimball
“Periodicity
and Alignment of Large Scale Carbon Nanotube Arrays”
Appl. Phys. Lett. 85, 4741(2004)
33.
Y.Wang,
K. Kempa, B. Kimball, J.B. Carlson, G. Benham, W.Z. Li,
T. Kempa, J. Rybczynski, A.
Herczynski, Z.F. Ren
“Receiving
and Transmitting Light-Like Radio Waves: Antenna Effect In
Arrays Of Aligned Carbon Nanotubes”
Appl. Phys. Lett. 85 2607 (2004)
34.
S.H.
Jo, D.Z. Wang, J.Y. Huang, W.Z. Li,
K. Kempa, Z.F. Ren
“Field emission
of carbon nanotubes grown on carbon cloth”
Appl. Phys. Lett. 85, 810 (2004)
35.
W.Z. Li, J.G. Wen, M. Sennett, Z.F. Ren
“Clean
Double-walled Carbon Nanotubes Synthesized by CVD”
Chem. Phys. Lett.
368, 299 (2003)
36.
M. Sennett, E. Welsh, J.B. Wright, W.Z. Li, J.G. Wen, Z.F. Ren
“Dispersion
and alignment of carbon nanotubes in polycarbonate”
Appl. Phys. A
76, 111 (2003)
37.
J. Moser, R. Panepucci,
Z.P. Huang, W.Z. Li, Z.F. Ren, A. Usheva, M.J. Naughton
“Individual
free-standing carbon nanofibers addressable on the 50
nm scale”
J.
Vac. Sci. Technol. B 21(3), 1004(2003)
38.
K. Kempa, B. Kimball, J. Rybczynski,
Z.P. Huang, P.F. Wu, D. Steeves, M.
Sennett, M. Giersig, D.V. G.L.N. Rao,
D.L. Carnahan, D.Z. Wang,
J.Y. Lao, W.Z. Li, Z.F. Ren
“Photonic
Nano
Lett. 3, 13
(2003)
39.
J.H. Chen, W.Z. Li, D.Z. Wang, S.X. Yang, J.G. Wen, Z.F. Ren
“Electrochemical
characterization of carbon nanotubes as electrode in electrochemical
double-layer capacitors”
Carbon 40, 1193 (2002)
40.
W.Z. Li, J.G. Wen, Z.F. Ren
“Effect of
temperature on growth and structure of carbon nanotubes by chemical vapor
deposition”
Appl. Phys. A 74, 397 (2002)
41.
E.T. Thostenson, W.Z. Li, D.Z. Wang, Z.F. Ren, T. W. Chou
“carbon nanotube / carbon fiber hybrid multi-scale
composites”
J. Appl. Phys.
91, 6034 (2002)
42.
J.Y. Lao, W.Z. Li, J.G. Wen, Z.F. Ren
“Boron
carbide nanolumps on carbon nanotubes”
Appl. Phys. Lett. 80, 500 (2002)
43.
J.H. Chen, Z.P. Huang, D.Z. Wang, S.X.
Yang, W.Z. Li, J.G. Wen, Z.F. Ren
“Electrochemical
Synthesis of Polypyrrole Films over Each of
Well-Aligned Carbon Nanotubes”
Synthetic Metals
125, 289 (2002)
44.
W.Z. Li, J.G. Wen, Z.F. Ren
“Straight carbon nanotube Y-junctions”
Appl. Phys. Lett. 79, 1879 (2001)
45.
W.Z. Li, J.G. Wen, Y. Tu, Z.F. Ren
“Effect of
gas pressure on the growth and structure of carbon nanotubes by chemical vapor
deposition”
Appl. Phys. A 73, 259 (2001)
46.
Z.F. Ren, Z.P.
Huang, D.Z. Wang, W.Z .Li, J.G. Wen,
S.X. Yang, Y. Tu, J.H. Chen
“An insight
into carbon nanotube production”
SAMPE Journal 37
(5), 64 (2001)
47.
W.Z.
Li, D.Z. Wang, S.X. Yang, J.G. Wen, Z.F. Ren
“Controlled growth of carbon nanotubes on
graphite foil by chemical vapor deposition”
Chem. Phys. Lett.
335, 141 (2001)
48.
S.S. Xie, W.Z. Li, Z.W. Pan, B.H. Chang, L.F. Sun
“Carbon
nanotubes arrays”
Materials Science
and Engineering A 286, 11(2000)
49.
S. Margadonna, E.
Aslanis, W.Z.
Li, K. Prassides, A.N. Fitch, T.C. Hansen
“Crystal
Structure of superconducting K3Ba3C60: a
Combined Synchrotron X-ray and Neutron Diffraction Study”
Chem. Mater. 12(9), 2736 (2000)
50.
S.S. Xie, W.Z. Li, Z.W. Pan, B.H. Chang, L.F. Sun
“Mechanical
and physical properties on carbon nanotube”
J. Phys. Chem.
Solids 61, 1153 (2000)
51.
S. Margadonna, W.Z. Li, K. Prassides,
D.A. Neumann
“Rotational
dynamics of C60 in superconducting K3Ba3C60”
Chem. Phys. Lett.
322 (6), 472 (2000)
52.
W.K. Hsu, W.Z. Li, Y. Q. Zhu, N. Grobert, M. Terrones, H. Terrones, N. Yao,
J.P. Zhang, S. Firth, R.J. H. Clark, A.K. Cheetham,
J.P. Hare, H.W. Kroto, D.M.R. Walton
“KCl crystallization within the space between carbon
nanotube walls”
Chem. Phys. Lett. 317,
77 (2000).
53.
W.K. Hsu, S. Trasobares,
H. Terrones, M. Terrones,
N. Grobert, Y.Q. Zhu, W.Z. Li, R. Escudero, J.P. Hare, H.W. Kroto,
D.R.M. Walton
“Electrolytic formation of carbon-sheathed
mixed Sn-Pb nanowires”
Chemistry of Materials
11 (7), 1747 (1999)
54.
S.S. Xie, W.Z. Li, Z.W. Pan, B.H. Chang, L.F. Sun
“Carbon
nanotube arrays”
European Physical
Journal D 9 (1-4), 85 (1999)
55.
W.Z.
Li, S.S. Xie, W. Liu, R. Zhao, Y.
Zhang, W. Zhou, G. Wang, L. Qian
“A structure model and growth mechanism for
novel carbon nanotubes”
J. Mater. Sci.
34 (11), 2745 (1999)
56.
S.S. Xie, B.H.
Chang, W.Z. Li, Z.W. Pan, L.F. Sun,
J.M. Mao, X.H. Chen, L.X. Qian, W.Y. Zhou
“Synthesis and
characterization of aligned carbon nanotube arrays”
Adv. Mater.
11(13), 1135 (1999)
57.
Z.W. Pan, S.S. Xie,
B.H. Chang, C.Y. Wang, L. Lu, W. Liu, W.Y. Zhou, W.Z. Li
“Very long
carbon nanotubes”
Nature 394, 631 (1998)
58.
W.Z.
Li, S.S. Xie, L.X.Qian,
Y. Zhang, W. Liu, B.H. Chang, W.Y. Zhou, R.A. Zhao, C.S. Fu, G. Wang
“Preparation
of carbon nanotubes by catalytic decomposition and their structures” (in
Chinese)
J. Chin. Electr. Microsc. Soc.
17(3), 243 (1998)
59.
B.H. Chang, H. Zhang, W.Y. Zhou, L.X. Qian, Z.W. Pan, J.M. Mao and W.Z. Li
“Study on
high-temperature oxidization of loosely-entangled carbon nanotubes prepared by
arc-discharge” (in Chinese)
Acta
Phsica Sinica
47 (2), 340 (1998)
60.
B.H. Chang, S.S. Xie,
W.Y. Zhou L.X. Qian, Z.W. Pan, J.M. Mao, W.Z. Li
“Loosely-entangled
carbon nanotubes prepared in modified arc-discharge”
J. Mater. Sci.
Letter. 17,
1015 (1998)
61.
W.Z.
Li, H. Zhang, C.Y. Wang, Y. Zhang, L.W. Xu, K. Zhu, S.S. Xie
“Raman
characterization of aligned carbon nanotubes produced by thermal decomposition
of hydrocarbon vapor”
Appl. Phys. Lett.
70(20), 2684 (1997)
62.
W.Z.
Li, S.S. Xie, L.X. Qian, B.H. Chang, B.S. Zou, W.Y.
Zhou, R.A. Zhao, G. Wang
“Large-scale
synthesis of aligned carbon nanotubes”
Science
274, 1701 (1996)
63.
W.Z.
Li, Luxi Qian,
S.F. Qian, W.Y. Zhou, G. Wang, C.S. Fu, R.A. Zhao,
S.S. Xie
“Structure
and growth thermodynamics of carbon tubes”
Science in
64.
B.H. Chang, S.S. Xie,
W.Z. Li, C.Y. Wang, W.Y. Zhou, L.X. Qian, L. Gan
“Large-scale
preparation of dispersive carbon nanotubes by arc-discharge method”
Science in
65.
S.S. Xie, W.Z. Li, L.X. Qian,
B.H. Chang, C.S. Fu, R.A. Zhao, W.Y. Zhou, G. Wang
“Equilibrium
shape equation and possible shapes of carbon nanotubes”
Phys. Rev. B
54(23), 16436 (1996)
66.
W.Z.
Li, S.S. Xie, L.X. Qian, C.S. Fu, R.A. Zhao, B.H. Chang, W.Y. Zhou, G. Wang
“Preparation
of regular coiled carbon tubes and their structures” (in Chinese)
High Technology
Letters (
67.
S.S Xie, W.Z. Li, C.Y. Wang, L.W. Xu, H. Zhang,
Y. Zhang, L.X. Qian
“Morphology,
structure and Raman scattering of carbon nanotubes produced by using mesoporous materials”
Science in
68.
C.S. Fu, H.S. Zhu, G.S. Tang, Q.H. Zhao,
S.S. Xie, G. Wang, W.Z. Li, W.Y. Zhou, R.A. Zhao
“Preparation
of carbon fibers by a dc-arc plasma jet method and observation on their
structures” (in Chinese)
High Technology
Letters
(
69.
W. Liu, W.Z. Li, L.X. Qian, S.S. Xie
“A study of
nanometer carbon fibers formed from pyrolysis by transmission electron
microscope”
J. Chinese Electron
Microsc. Soc. 6, 445
(1995)
70.
W.Y. Zhou, S.F. Qian,
R.A. Zhao, G. Wang, L.X. Qian, W.Z. Li, S.S. Xie
“Photothermal deflection spectra studies on fullerene thin
films”
Progress in Natural Science.
6, S22 (1996)
71.
W.Y. Zhou, S.S. Xie,
S.F. Qian, T. Zhou, R.A. Zhao, G. Wang, L.X. Qian, W.Z. Li
“Optical
absorption spectra of C-70 thin films”
J. Appl. Phys.
80, 459 (1996)
72.
W.Y. Zhou, S.S. Xie,
S.F. Qian, T. Zhou, R.A. Zhao, G. Wang, L.X. Qian, W.Z. Li
“Absorption
spectra of C60 and C70 thin films”
Science in
73.
J.L. Wang, N. Tang, W.Z. Li, W.D.
Qin, H.Y. Pan, B. Nasunjilegal, F.M. Yang, F.R. de
Boer
“High-field magnetic properties of Ho2Fe15M2
compounds (M=
J. Mang. Magn. Mater. 159 (3), 357 (1996)
74.
W.Z.
Li, N. Tang, J.L. Wang Fuming Yang, Yiwei
Zeng, F.R. de Boer
“High-field
magnetization of Sm2(Fe1-xGax)17
compounds”
J. Magn. Magn. Mater.
140, 985 (1995)
75.
J.L. Wang, W.Z. Li, X.P. Zhong, Y.H. Gao, W.D. Qin, N. Tang, W.G. Lin, J.X. Zhang, R.W. Zhao,
Q.W. Yan, Fuming Yang
“Study on
high performance Sm2Fe17Nx magnets”
J. Alloys and
Compounds 222, 23 (1995)
76.
N. Tang, J.L. Wang, Y.H. Gao, W.Z. Li,
Fuming Yang, F.R. de Boer
“Magnetic
properties of R2(Fe1-xGax)17
compounds with R= Y, Sm, Dy,
Ho”
J. Magn. Magn. Mater.
140-144, 979 (1995)
77.
W.Z.
Li, N. Tang, J.L. Wang, Fuming Yang, Y.W. Zeng,
J.J. Zhu, F.R. de Boer
“Magnetic
properties of Sm2(Fe1-xGax)17
(x=0-0.5) compounds and their nitrides”
J. Appl. Phys.
76(10), 6743 (1994)
78.
W.Z.
Li, N. Tang, X.P. Zhong J.L. Wang,
Y.H. Gao, Funing Yang, Y.W.
Zeng
“Magnetic
properties of Sm2(Fe1-xGax)17
compounds (x=0-0.5)”
J. Alloys and Compounds
209, 245 (1994)
79.
J.L. Wang, W.G. Lin, N. Tang, W.Z. Li, Y.H. Gao,
F.M. Yang
“Magnetic
properties of (Er,R)2Fe17Ny
compounds (R=Y, Gd)”
J. Appl. Phys. 75 (10), 6238 (1994)
80.
Y.H. Gao, N.
Tang, X.P. Zhong, J.L. Wang, W.Z. Li, W.D. Qin, F.M. Yang, D.M. Zhang, F.R. de Boer
“Magnetic
interactions in R2(Fe1-xGax)17
(R=Dy, Y) compounds”
J. Magn. Magn. Mater.
137, 275 (1994)
81.
J.L. Wang, R.W. Zhao, N. Tang, W.Z. Li, Y.H. Gao,
F.M. Yang, F.R. de Boer
“Magnetic
properties of R2Fe17-xGax compounds (R=Y, Ho)”
J. Appl. Phys. 76 (10), 6740 (1994)