Fabrication of ZnO Nanopillars by Atomic Layer Deposition
スポンサーリンク
概要
- 論文の詳細を見る
- 2010-02-01
著者
-
SHIOJIRI Makoto
Kyoto Institute of Technology
-
Wu Mong-kai
Institute Of Materials Science And Engineering National Taiwan University
-
Yang Jer-ren
Institute Of Materials Science And Engineering National Taiwan University
-
Ceh Miran
Nanostructured Materials Jozef Stefan Institute
-
CHEN Miin-Jang
Institute of Materials Science and Engineering, National Taiwan University
-
TSAI Feng-Yu
Institute of Materials Science and Engineering, National Taiwan University
-
Tsai Feng-yu
Institute Of Materials Science And Engineering National Taiwan University
-
Yang Jer-ren
Dep. Of Materials Sci. And Engineering Coll. Of Engineering National Taiwan Univ.
-
Shiojiri Makoto
Professor Emeritus Of Kyoto Institute Of Technology
関連論文
- Photonic Crystal Structure of Wing Scales in Sasakia Charonda Butterflies
- Fabrication of ZnO Nanopillars by Atomic Layer Deposition
- Observation of V Defects in Multiple InGaN/GaN Quantum Well Layers
- High-Resolution Scanning Electron Microscopy Observation of GaN/AlGaN Strained-Layer Superstructures in GaN-Based Violet Laser Diodes
- High-resolution transmission electron microscopy of Fe-Al powder particles
- A new specimen preparation method for cross-section TEM using diamond powders
- EELS elemental mapping of a DRAM with FE-TEM
- EDS elemental mapping of a DRAM with an FE-TEM
- Observation of ZnO Particles Grown by Electrochemical Reaction of Zn
- Oxides: neutron and synchrotron X-ray diffraction studies
- Structure and Electro-Optical Properties of Thin Films Grown by Alternate Atomic Layer Deposition of ZnO and Al_2O_3 on the Sapphire Substrate
- Fine Structure of Wing Scales in Chrysozephyrus Ataxus Butterflies
- High-Resolution Scanning Electron Microscopy Observation of GaN/AlGaN Strained-Layer Superstructures in GaN-Based Violet Laser Diodes
- PREFACE
- Ultra-Fast Spectrometric Cathodoluminescence Scanning Microscopy for Materials Analysis
- A Transmission Electron Microscopy Observation of Dislocations in GaN Grown on (0001) Sapphire by Metal Organic Chemical Vapor Deposition
- Study of InGaN Multiple Quantum Dots by Metal Organic Chemical Vapor Deposition