ZnO Nanostructures Deposited by Laser Ablation.

By: Martino, MContributor(s): Valerini, D | Caricato, A.PSeries: Nanotechnology Science and TechnologyPublisher: Hauppauge : Nova Science Publishers, Incorporated, 2010Copyright date: ©2010Description: 1 online resource (80 pages)Content type: text Media type: computer Carrier type: online resourceISBN: 9781617617706Subject(s): Nanostructured materials -- Design and construction.;Pulsed laser deposition.;Zinc oxide thin filmsGenre/Form: Electronic books. Additional physical formats: Print version:: ZnO Nanostructures Deposited by Laser AblationDDC classification: 620/.5 LOC classification: TA418.9.N35 -- V35 2010ebOnline resources: Click to View
Contents:
Intro -- ZNO NANOSTRUCTURES DEPOSITED BY LASER ABLATION -- ZNO NANOSTRUCTURES DEPOSITED BY LASER ABLATION -- LIBRARY OF CONGRESS CATALOGING-IN-PUBLICATION DATA -- CONTENTS -- PREFACE -- Chapter 1 INTRODUCTION -- 1.1. PROPERTIES AND APPLICATIONS OF ZINC OXIDE AND ITS NANOSTRUCTURES -- 1.2. GROWTH TECHNIQUES FOR ZINC OXIDE NANOSTRUCTURES -- Chapter 2 ZINC OXIDE NANOSTRUCTURES BY LASER ABLATION: AN OVERVIEW -- 2.1. THE PULSED LASER DEPOSITION TECHNIQUE -- 2.2. NANOSTRUCTURED ZINC OXIDE BY PLD IN THE WORLD -- A) Kyushu University (Fukuoka, Japan), Fudan University (Shanghai, China), University of Miyazaki (Miyazaki, Japan) -- A1) Refs. [100,101,102,103] -- A2) Refs. [104,105,106,107,108,109] -- A3) Ref. [110] -- B) University of Bristol (Bristol, UK), Refs. 111,112,113,114,115] -- C) University of Delhi (Delhi, India), University of Puerto Rico (San Juan, Puerto Rico), Harbin Institute of Technology (Harbin, China) -- C1) Refs. [116,117] -- C2) Refs. [118] -- D) Osaka University (Osaka, Japan), Chiang Mai University (Muang Chiang Mai, Thailand), ref. [119] -- E) Korea Institute of Science and Technology (Seoul, Republic of Korea), ref. [120] -- F) Universität Leipzig (Leipzig, Germany), Martin-Luther-Universität (Halle (Saale), Germany), refs. [121,122,123] -- G) National University of Singapore (Singapore), Nanyang Technological University (Singapore), refs. [124,125] -- H) National Dong Hwa University (Shoufeng, Taiwan), University of Florida (Gainesville, Florida, USA), ref. [126] -- I) Keio University (Yokohama, Japan), Ref. [127] -- J) Jawaharlal Nehru Centre for Advanced Scientific Research (Bangalore, India), Ref. [128] -- K) University of Canterbury (Christchurch, New Zealand), The Macdiarmid Institute of Advanced Materials and Nanotechnology (New Zealand), Ref. [129] -- L) University of Technology (Dalian, China), ref. [130].
M) University of Salento (Lecce, Italy), refs. [131,132] -- Chapter 3 RESULTS -- 3.1. EXPERIMENTAL PLD SET-UP AND DEPOSITION PARAMETERS -- 3.2. MORPHOLOGY -- 3.2.a. KrF-Deposited Samples (λ = 248 nm, E = 5 eV) -- 3.2.b. ArF-deposited Samples (λ = 193 nm, E = 6.42 eV) -- 3.2.c. Comparison between KrF and ArF -Deposited Samples -- 3.3. SUMMARY OF OTHER CHARACTERIZATIONS -- 3.4. GAS SENSING TESTS -- CONCLUSION -- ACKNOWLEDGMENTS -- REFERENCES -- INDEX.
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Intro -- ZNO NANOSTRUCTURES DEPOSITED BY LASER ABLATION -- ZNO NANOSTRUCTURES DEPOSITED BY LASER ABLATION -- LIBRARY OF CONGRESS CATALOGING-IN-PUBLICATION DATA -- CONTENTS -- PREFACE -- Chapter 1 INTRODUCTION -- 1.1. PROPERTIES AND APPLICATIONS OF ZINC OXIDE AND ITS NANOSTRUCTURES -- 1.2. GROWTH TECHNIQUES FOR ZINC OXIDE NANOSTRUCTURES -- Chapter 2 ZINC OXIDE NANOSTRUCTURES BY LASER ABLATION: AN OVERVIEW -- 2.1. THE PULSED LASER DEPOSITION TECHNIQUE -- 2.2. NANOSTRUCTURED ZINC OXIDE BY PLD IN THE WORLD -- A) Kyushu University (Fukuoka, Japan), Fudan University (Shanghai, China), University of Miyazaki (Miyazaki, Japan) -- A1) Refs. [100,101,102,103] -- A2) Refs. [104,105,106,107,108,109] -- A3) Ref. [110] -- B) University of Bristol (Bristol, UK), Refs. 111,112,113,114,115] -- C) University of Delhi (Delhi, India), University of Puerto Rico (San Juan, Puerto Rico), Harbin Institute of Technology (Harbin, China) -- C1) Refs. [116,117] -- C2) Refs. [118] -- D) Osaka University (Osaka, Japan), Chiang Mai University (Muang Chiang Mai, Thailand), ref. [119] -- E) Korea Institute of Science and Technology (Seoul, Republic of Korea), ref. [120] -- F) Universität Leipzig (Leipzig, Germany), Martin-Luther-Universität (Halle (Saale), Germany), refs. [121,122,123] -- G) National University of Singapore (Singapore), Nanyang Technological University (Singapore), refs. [124,125] -- H) National Dong Hwa University (Shoufeng, Taiwan), University of Florida (Gainesville, Florida, USA), ref. [126] -- I) Keio University (Yokohama, Japan), Ref. [127] -- J) Jawaharlal Nehru Centre for Advanced Scientific Research (Bangalore, India), Ref. [128] -- K) University of Canterbury (Christchurch, New Zealand), The Macdiarmid Institute of Advanced Materials and Nanotechnology (New Zealand), Ref. [129] -- L) University of Technology (Dalian, China), ref. [130].

M) University of Salento (Lecce, Italy), refs. [131,132] -- Chapter 3 RESULTS -- 3.1. EXPERIMENTAL PLD SET-UP AND DEPOSITION PARAMETERS -- 3.2. MORPHOLOGY -- 3.2.a. KrF-Deposited Samples (λ = 248 nm, E = 5 eV) -- 3.2.b. ArF-deposited Samples (λ = 193 nm, E = 6.42 eV) -- 3.2.c. Comparison between KrF and ArF -Deposited Samples -- 3.3. SUMMARY OF OTHER CHARACTERIZATIONS -- 3.4. GAS SENSING TESTS -- CONCLUSION -- ACKNOWLEDGMENTS -- REFERENCES -- INDEX.

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Electronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2019. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries.

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