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Keyword [preferential orientation]
Result: 1 - 20 | Page: 1 of 2
1.
Preparation And Properties Optimization Of (Bi,Sb)
2
(Te,Se)
3
Based Thermoelectric Materials
2.
Research On Vapor Deposition And Control Of Preferential Orientation Of AlN Thin Films
3.
Characteristics Of ZnO Films Prepared By Ultrasonic Spray Pyrolysis Method
4.
Low-temperature Deposition Of Poly-silicon Thin Films By Hot-wire CVD And The Analysis On Characteristics
5.
Structure Analysis Of Polycrystalline Silicon Films Prepared By ECR-PECVD At Low Temperature
6.
Studies On Preparation And Doping Properties Of CdTe Nanocrystalline Thin Films Grown On Different Substrates By Low Temperature Sputtering
7.
Rearch On Growth Preferential Orientation And Mechanism Of Znic Oxide Thin Films Prepared By Chemical Bath Deposition
8.
Ion Beam Deposited Ysz Film Growth Mechanism Of Competition Studies,
9.
The Epitaxial Growth Of C-axis Oriented YBa
2
Cu
3
O
7
-δ Films By Pulsed Laser Deposition And The Elimination Of Laser-induced Particles
10.
Study On Preparation, Microstructure And Properties Of High CurieTemperature Perovskite Piezoelectric Thin Films
11.
Preparation And Properties Of PZT-based Double-layer Piezoelectric Films
12.
Research Of The (002) Oriented AIN Thin Films
13.
The Fabrication Of Nanostructure Arrays Of Hydrogelator And Light Emitting Polymers With Improved Performance
14.
Synthesis Of {111} Preferential Oriented NaY Zeolite Membraenes And Preliminary Study On Pervaporation Performance
15.
Rearch On Growth Preferential Orientation And Physical Properties Of Znic Oxide Thin Films Prepared By Chemical Bath Deposition
16.
Preparation And Research Of Structure And Function Integrated Layered Tungsten Matrix Composites
17.
Preparation And Application Of Preferential Orientation Of The Gallium Oxide Film
18.
Case Study Of Template-induced And Additive-induced Crystallization
19.
The Preparation And Properties Of Single Crystal Like TiO
2
Nanotube Arrays With Different Preferential Orientation
20.
The Effect Of Phase Transition And Preferential Orientation On The Supercapacitive Performances Of Hydrogenated TiO
2
Nanotube Arrays
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