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Preferred orientations of evaporated Ni films on Mo and SiO
2
substrates
Z. Shi,
M. A. Player
*
*
Corresponding author for this work
Centre for Applied Dynamics Research (CADR)
Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
28
Citations (Scopus)
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2
substrates'. Together they form a unique fingerprint.
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Engineering & Materials Science
Textures
82%
Substrates
72%
Molybdenum
51%
Silica
45%
Nickel
41%
Interfacial energy
36%
Fibers
30%
Temperature
23%
Synchrotron radiation
20%
Grain growth
18%
Electron beams
17%
Superconducting transition temperature
15%
Nucleation
15%
Anisotropy
15%
Evaporation
14%
X ray diffraction
14%
Physics & Astronomy
textures
85%
molybdenum
43%
nickel
35%
silicon dioxide
33%
tendencies
25%
fibers
24%
interfacial energy
17%
surface energy
14%
synchrotron radiation
13%
temperature
13%
transition temperature
11%
evaporation
11%
nucleation
10%
electron beams
10%
mirrors
10%
optimization
9%
anisotropy
9%
room temperature
8%
diffraction
7%
x rays
6%
energy
4%
Chemical Compounds
Crystalline Texture
100%
Liquid Film
49%
Interfacial Energy
28%
Fiber
28%
Electron Beam Evaporation
22%
Grain Growth
17%
Synchrotron Radiation
15%
Anisotropy
13%
Ambient Reaction Temperature
8%
X-Ray Diffraction
7%
Energy
6%