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1

C, Jagadish, and Pearton S. J, eds. Zinc oxide bulk, thin films and nanostructures: Processing, properties and applications. Elsevier, 2006.

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2

M, Durbin Steven, Wenckstern Holger von, Allen Martin W, and Materials Research Society, eds. Zinc oxide and related materials--2009: Symposium held November 30-December 3, 2009, Boston, Massachusetts, USA. Materials Research Society, 2010.

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3

Ziaja, Jan. Cienkowarstwowe struktury metaliczne i tlenkowe: Właściwości, technologia, zastosowanie w elektrotechnice = Thin layer metallic and oxide structures : properties, technology, electrotechnics applications. Oficyna Wydawnicza Politechniki Wrocławskiej, 2012.

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4

National Renewable Energy Laboratory (U.S.), ed. Amorphous indium-zinc-oxide transparent conductors for thin film PV: Preprint. National Renewable Energy Laboratory, 2011.

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5

M, Martino, ed. ZnO nanostructures deposited by laser ablation. Nova Science Publishers, 2009.

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6

Klaus, Ellmer, Klein Andreas Dr, and Rech Bernd, eds. Transparent conductive zinc oxide: Basics and applications in thin film solar cells. Springer, 2008.

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7

Martino, M. ZnO nanostructures deposited by laser ablation. Nova Science Publishers, 2010.

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8

Martino, M. ZnO nanostructures deposited by laser ablation. Nova Science Publishers, 2010.

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9

Hüpkes, Jürgen. Untersuchung des reaktiven Sputterprozesses zur Herstellung von aluminiumdotierten Zinkoxide-Schichten für Silizium-Dünnschicht-solarzellen. Forschungszentrum Jülich, Zentralbibliothek, 2006.

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10

Fanciulli, Marco, and Giovanna Scarel, eds. Rare Earth Oxide Thin Films. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/b137342.

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11

Mele, Paolo, Tamio Endo, Shunichi Arisawa, Chaoyang Li, and Tetsuo Tsuchiya, eds. Oxide Thin Films, Multilayers, and Nanocomposites. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-14478-8.

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12

Ezema, Fabian I., Chandrakant D. Lokhande, and Rajan Jose, eds. Chemically Deposited Nanocrystalline Metal Oxide Thin Films. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-68462-4.

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13

Schneller, Theodor, Rainer Waser, Marija Kosec, and David Payne, eds. Chemical Solution Deposition of Functional Oxide Thin Films. Springer Vienna, 2013. http://dx.doi.org/10.1007/978-3-211-99311-8.

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14

Murphy, Thomas Patrick. Electrochromic properties of tin-nickel oxide thin films. Oxford Brookes University, 1997.

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15

Elfallal, Ibrahim Abdel-Wahab. A study of indium tin oxide thin films. University of Salford, 1992.

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16

Scragg, Jonathan J. Copper Zinc Tin Sulfide Thin Films for Photovoltaics. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-22919-0.

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17

United States. National Aeronautics and Space Administration., ed. Ion beam sputter deposited zinc telluride films. National Aeronautics and Space Administration, 1985.

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18

M, Fanciulli, and Scarel Giovanna, eds. Rare earth oxide thin films: Growth, characterization, and applications. Springer, 2007.

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19

Yagoubi, Benabdellah. A study of some thin transition metal oxide films. Brunel University, 1989.

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20

Barquinha, Pedro. Transparent oxide electronics: From materials to devices. Wiley, 2012.

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21

Nihon Gakujutsu Shinkōkai. Tōmei Sankabutsu Hikari Denshi Zairyō Dai 166 Iinkai ., ed. Tōmei dōdenmaku no gijutsu: Technology of transparent conductive oxide thin-films. 2nd ed. Ōmusha, 2006.

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22

Al-Dhhan, Ziad Tarik. Dielectric properties of thin films based on cerium oxide (CeO2). Brunel University, 1988.

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23

Sprengel, Horst. Dynamics of thin liquid oxide films covering a solid fuel. Fakultät für Physik, Universität Bielefeld, 1993.

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24

Symposium on Surface Oxide Films (2003 Orlando, Fla.). Surface oxide films: Proceedings of the international symposium. Edited by Birss Viola, Electrochemical Society. Physical Electrochemistry Division, Electrochemical Society Corrosion Division, and Electrochemical Society Meeting. Electrochemical Society, 2004.

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25

Magnetic properties of antiferromagnetic oxide materials: Surfaces, interfaces, and thin films. Wiley-VCH, 2010.

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26

Wolf, Andrew Robert. The electrochemistry of amorphous iron bismuth oxide thin films prepared by sputtering. National Library of Canada, 1992.

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27

Bird, Daniel P. C. The investigation of thin metal oxide films by STM and RAIRS studies. UMIST, 1997.

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28

Roca, Alejandro G., Paolo Mele, Hanae Kijima-Aoki, et al., eds. Surfaces and Interfaces of Metal Oxide Thin Films, Multilayers, Nanoparticles and Nano-composites. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-74073-3.

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29

Cevro, Mirza. A study of the deposition of oxide thin films by ion beam techniques. University of Salford, 1994.

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30

Khatamian, D. Crystal structure of thin oxide films grown on Zr-Nb alloys studied by RHEED. Chalk River Laboratories, 1996.

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31

Khatamian, Djamshid. Crystal structure of thin oxide films grown on Zr-Nb alloys studied by RHEED. Reactor Materials Research Branch, Chalk River Laboratories, 1996.

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32

Mian, Abdul Razzaq. Some electronic properties of thin dielectric oxide films containing cerium, niobium, vanadium and silicon. Brunel University, 1988.

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33

S, Speck James, ed. Epitaxial oxide thin films II: Symposium held November 26-30, 1995, Boston, Massachusetts, U.S.A. Materials Research Society, 1996.

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34

Scragg, Jonathan J. Copper Zinc Tin Sulfide Thin Films for Photovoltaics: Synthesis and Characterisation by Electrochemical Methods. Springer-Verlag Berlin Heidelberg, 2011.

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35

Musil, Jindřich. Tenké vrstvy nitridu titanu. Academia, 1989.

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36

France) International Conference on Thin Film Deposition of Oxide Multilayers Hybrid Structures (2nd 2001 Autrans. International Conference on Thin Film Deposition of Oxide Multilayers Hybrid Structures: TFDOM-2 : Autrans, France, October 18-19, 2001. EDP Sciences, 2001.

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37

Davor, Pavuna, Bozovic Ivan, and Society of Photo-optical Instrumentation Engineers., eds. Oxide superconductor physics and nano-engineering: 26-28 January 1994, Los Angeles, California. SPIE, 1994.

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38

Durbin, Steven M., Martin W. Allen, and Holger von Wenckstern. Zinc Oxide and Related Materials - 2009. University of Cambridge ESOL Examinations, 2014.

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39

Zinc Oxide Bulk, Thin Films and Nanostructures. Elsevier, 2006. http://dx.doi.org/10.1016/b978-0-08-044722-3.x5000-3.

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40

Zinc Oxide Bulk, Thin Films and Nanostructures: Processing, Properties, and Applications. Elsevier Science, 2006.

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41

(Editor), Chennupati Jagadish, and Stephen J. Pearton (Editor), eds. Zinc Oxide Bulk, Thin Films and Nanostructures: Processing, Properties, and Applications. Elsevier Science, 2006.

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42

Oxide Semiconductors: Volume 1633. Materials Research Society, 2014.

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43

Klein, Andreas, Klaus Ellmer, and Bernd Rech. Transparent Conductive Zinc Oxide: Basics and Applications in Thin Film Solar Cells. Springer, 2010.

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44

Pearton, Stephen J., and Chennupati Jagadish. Zinc Oxide Bulk, Thin Films and Nanostructures: Processing, Properties, and Applications. Elsevier Science, 2006.

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45

Pearton, Stephen J., and Chennupati Jagadish. Zinc Oxide Bulk, Thin Films and Nanostructures: Processing, Properties, and Applications. Elsevier Science & Technology Books, 2011.

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46

Zinc Oxide and Related Materials: Symposium Held November 27-30, 2006. Boston, Massachusetts, U.S.A. (Materials Research Society Symposium Proceedings). Materials Research Society, 2007.

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47

Transparent Conductive Zinc Oxide: Basics and Applications in Thin Film Solar Cells (Springer Series in Materials Science Book 104). Springer, 2007.

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48

Prellier, Wilfred. Oxide Thin Films. Taylor & Francis Group, 2010.

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49

Prellier, Wilfred. Oxide Thin Films. Taylor & Francis Group, 2014.

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50

Netzer, Falko P., and Claudine Noguera. Oxide Thin Films and Nanostructures. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198834618.001.0001.

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Abstract:
Nanostructured oxide materials ultra-thin films, nanoparticles and other nanometer-scale objects play prominent roles in many aspects of our every-day life, in nature and in technological applications, among which is the all-oxide electronics of tomorrow. Due to their reduced dimensions and dimensionality, they strongly interact with their environment gaseous atmosphere, water or support. Their novel physical and chemical properties are the subject of this book from both a fundamental and an applied perspective. It reviews and illustrates the various methodologies for their growth, fabrication
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