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Keyword [TiO2]
Result: 121 - 140 | Page: 7 of 10
121.
Preparation And Gas Sensing Properties Of Hierarchical Nanostructures Of Oxide Semiconductor/TiO
2
122.
Study On The Preparation Technology, Structure And Properties Of Doping TiO
2
Film Deposited By Direct Current Cathode Arc Evaporation
123.
Study On The Preparation Of Nano TiO
2
Gas Sensors By Flame Synthesis With A Rotating Surface
124.
Study On Magnetic And Dielectric Properties Of Doped Rutile Wide Bandgap Semiconductor
125.
Resistive Switching And Brain Function Emulation With Memristors Based On Transition Metal Oxides
126.
Preparation And Properties Of Single Crystal Titanium Dioxide Films With Different Crystalline Forms
127.
Fabrication Of TiO
2
Nanotube-based Chemical Oxygen Demand(COD) Sensor And Its Sensing Performance
128.
Performance Study Of Nb Doped TiO
2
Transparent Conductive Film Deposited By RF Magnetron Sputtering
129.
The Synthesis And Photoelectric Characteristics Of The Oxide Coated Porous Semiconductor Structures
130.
Study On The Formaldehyde Gas Sensor Based-On TiO
2
Hollow Sphere
131.
Preparation And Research Of Nano Composite Materials With Silicone Resin Of LEDs
132.
Study On Performance Of Alcohol Gas Sensor Based On Semiconductor Nano Thin Films
133.
Research Of Surface Acoustic Wave Sensor Based On Mesoporous Structural TiO
2
For Detecting Heavy Metal Ion
134.
The Improvement And Application For Microwave Dielectric Material Of MgO-TiO
2
135.
Study Of Heterojunction Ultraviolet Detector Based On In-situ-growth Wide-bandgap Materials
136.
Deep Ultraviolet Photochemical Fabrication Of TiO
2
And ZrO
2
Flexible Resistive Switching Devices And Its Properties
137.
Preparation Of Oxide Semiconductor Heterostructure Material And Their Photoelectrochemistry Water Splitting
138.
The Dilute Magnetic Properties Of Transition Metal And Non-metal Co-doped Titanium Dioxide
139.
Construction And Properties Of New-type UV Photodetectors Based On Graphene/TiO
2
Schottky Juntion
140.
Study On The Numerical Simulation For Near Field Enhancement On Substrate Surface Assisted By Nano-structure
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