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Low-Temperature Growth of ZnO Nanowire Array by a Simple Physical Vapor-Deposition Method
Chemistry of Materials
◽
10.1021/cm020465j
◽
2003
◽
Vol 15
(17)
◽
pp. 3294-3299
◽
Cited By ~ 243
Author(s):
Seung Chul Lyu
◽
Ye Zhang
◽
Cheol Jin Lee
◽
Hyun Ruh
◽
Hwack Joo Lee
Keyword(s):
Low Temperature
◽
Vapor Deposition
◽
Physical Vapor Deposition
◽
Nanowire Array
◽
Deposition Method
◽
Zno Nanowire
◽
Temperature Growth
◽
Low Temperature Growth
◽
Physical Vapor Deposition Method
Download Full-text
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Low Temperature Growth of Cu2ZnSnS4 Thin Films By Solution-Based Mist Chemical Vapor Deposition Method
ECS Meeting Abstracts
◽
10.1149/ma2016-02/15/1386
◽
2016
◽
Keyword(s):
Thin Films
◽
Chemical Vapor Deposition
◽
Low Temperature
◽
Vapor Deposition
◽
Chemical Vapor
◽
Chemical Vapor Deposition Method
◽
Deposition Method
◽
Temperature Growth
◽
Low Temperature Growth
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Low temperature fabrication of indium-tin oxide film by using ionized physical vapor deposition method
Surface and Coatings Technology
◽
10.1016/j.surfcoat.2015.02.003
◽
2015
◽
Vol 266
◽
pp. 10-13
◽
Cited By ~ 4
Author(s):
Woo-Seok Cheong
◽
Chan-Hwa Hong
◽
Jae-Heon Shin
◽
Kyung-Hyun Kim
◽
Nae-Man Park
◽
...
Keyword(s):
Low Temperature
◽
Oxide Film
◽
Tin Oxide
◽
Indium Tin Oxide
◽
Vapor Deposition
◽
Physical Vapor Deposition
◽
Deposition Method
◽
Physical Vapor Deposition Method
◽
Ionized Physical Vapor Deposition
Download Full-text
Practical Route for the Low-Temperature Growth of Large-Area Bilayer Graphene on Polycrystalline Nickel by Cold-Wall Chemical Vapor Deposition
ACS Omega
◽
10.1021/acsomega.1c00841
◽
2021
◽
Author(s):
Muhammad Aniq Shazni Mohammad Haniff
◽
Nur Hamizah Zainal Ariffin
◽
Poh Choon Ooi
◽
Mohd Farhanulhakim Mohd Razip Wee
◽
Mohd Ambri Mohamed
◽
...
Keyword(s):
Chemical Vapor Deposition
◽
Low Temperature
◽
Vapor Deposition
◽
Chemical Vapor
◽
Bilayer Graphene
◽
Cold Wall
◽
Polycrystalline Nickel
◽
Large Area
◽
Temperature Growth
◽
Low Temperature Growth
Download Full-text
2,4,5-Triphenylimidazole Nanowires with Fluorescence Narrowing Spectra Prepared through the Adsorbent-Assisted Physical Vapor Deposition Method
Chemistry of Materials
◽
10.1021/cm060102+
◽
2006
◽
Vol 18
(9)
◽
pp. 2302-2306
◽
Cited By ~ 60
Author(s):
Yong Sheng Zhao
◽
Debao Xiao
◽
Wensheng Yang
◽
Aidong Peng
◽
Jiannian Yao
Keyword(s):
Vapor Deposition
◽
Physical Vapor Deposition
◽
Deposition Method
◽
Physical Vapor Deposition Method
Download Full-text
Low-Temperature Growth of Carbon Nanofiber by Thermal Chemical Vapor Deposition Using CuNi Catalyst
Japanese Journal of Applied Physics
◽
10.1143/jjap.45.5329
◽
2006
◽
Vol 45
(6A)
◽
pp. 5329-5331
◽
Cited By ~ 7
Author(s):
Katsunori Aoki
◽
Tetsurou Yamamoto
◽
Hiroshi Furuta
◽
Takashi Ikuno
◽
Shinichi Honda
◽
...
Keyword(s):
Chemical Vapor Deposition
◽
Low Temperature
◽
Vapor Deposition
◽
Carbon Nanofiber
◽
Chemical Vapor
◽
Temperature Growth
◽
Low Temperature Growth
◽
Thermal Chemical Vapor Deposition
Download Full-text
A catalytic, catalyst-free, and roll-to-roll production of graphene via chemical vapor deposition: Low temperature growth
Carbon
◽
10.1016/j.carbon.2017.10.065
◽
2018
◽
Vol 127
◽
pp. 1-12
◽
Cited By ~ 31
Author(s):
Samira Naghdi
◽
Kyong Yop Rhee
◽
Soo Jin Park
Keyword(s):
Chemical Vapor Deposition
◽
Low Temperature
◽
Vapor Deposition
◽
Chemical Vapor
◽
Temperature Growth
◽
Low Temperature Growth
◽
Catalyst Free
◽
Roll To Roll
Download Full-text
Low-temperature Growth of Patterned ZnO Nanowire Arrays
Expert Reviews
◽
10.4053/er162-090128
◽
2011
◽
Keyword(s):
Low Temperature
◽
Nanowire Arrays
◽
Zno Nanowire
◽
Temperature Growth
◽
Low Temperature Growth
◽
Zno Nanowire Arrays
Download Full-text
Low Temperature Growth of YBCO Films by Plasma Assisted Vapor Deposition
Advances in Superconductivity III
◽
10.1007/978-4-431-68141-0_193
◽
1991
◽
pp. 869-872
Author(s):
Keiichi Kanehori
◽
Akira Tsukamoto
◽
Nobuyuki Sugii
Keyword(s):
Low Temperature
◽
Vapor Deposition
◽
Temperature Growth
◽
Ybco Films
◽
Low Temperature Growth
Download Full-text
Low-temperature growth of highly crystalline β-Ga2O3 nanowires by solid-source chemical vapor deposition
Nanoscale Research Letters
◽
10.1186/1556-276x-9-347
◽
2014
◽
Vol 9
(1)
◽
pp. 347
◽
Cited By ~ 8
Author(s):
Ning Han
◽
Fengyun Wang
◽
Zaixing Yang
◽
SenPo Yip
◽
Guofa Dong
◽
...
Keyword(s):
Chemical Vapor Deposition
◽
Low Temperature
◽
Vapor Deposition
◽
Chemical Vapor
◽
Temperature Growth
◽
Low Temperature Growth
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Fatigue strength of an (α + β)-type titanium alloy Ti-6Al-4V produced by the electron-beam physical vapor deposition method
Strength of Materials
◽
10.1007/s11223-006-0086-6
◽
2006
◽
Vol 38
(6)
◽
pp. 651-658
◽
Cited By ~ 5
Author(s):
O. N. Gerasimchuk
◽
G. A. Sergienko
◽
V. I. Bondarchuk
◽
A. V. Terukov
◽
Yu. S. Nalimov
◽
...
Keyword(s):
Titanium Alloy
◽
Electron Beam
◽
Fatigue Strength
◽
Vapor Deposition
◽
Physical Vapor Deposition
◽
Deposition Method
◽
Physical Vapor Deposition Method
Download Full-text
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