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1

Sedláček, Vladimír. Metallic surfaces, films, and coatings. Amsterdam: Elsevier, 1992.

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2

Klaus, Wetzig, and Schneider Claus M, eds. Metal based thin films for electronics. 2nd ed. Weinheim: Wiley-VCH, 2006.

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3

Symposium on Surface Oxide Films (1996 San Antonio, Tex.). Proceedings of the Symposium on Surface Oxide Films. Edited by Bardwell Jennifer A, Electrochemical Society Corrosion Division, and Electrochemical Society Meeting. Pennington, NJ: Electrochemical Society, 1996.

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4

1936-, Wissmann P., ed. Thin metal films and gas chemisorption. Amsterdam: Elsevier, 1987.

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5

Aleshin, Anatoliĭ. Diffuzionnye prot͡sessy v tonkoplenochnykh metallicheskikh sistemakh. Chernogolovka: IKhFCh RAN, 1992.

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6

Symposium on Oxide Films on Metals and Alloys (1992 Toronto, Ont.). Proceedings of the Symposium on Oxide Films on Metals and Alloys. Pennington, NJ: Electrochemical Society, 1992.

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7

Ilʹinskiĭ, A. I. Struktura i prochnostʹ sloistykh i dispersnouprochnennykh plenok. Moskva: "Metallurgii͡a︡", 1986.

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8

Colloque de métallurgie (40th 1997 Saclay, France). Comportement méchanique et effets d'échelle: 40e Colloque de métallurgie de l'INSTN : CE Saclay/INSTN, 24-26 juin 1998. Les Ulis: Les Éditions de physique, 1998.

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9

International Symposium on Oxide Films on Metals and Alloys (7th 1994 Miami Beach, Fla.). Proceedings of the Seventh International Symposium on Oxide Films on Metals and Alloys. Pennington, NJ: Electrochemical Society, 1994.

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10

Orlov, V. M. (Veniamin Moiseevich) and Konorov P. P, eds. Anodnye oksidnye plenki. Leningrad: "Nauka," Leningradskoe otd-nie, 1990.

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11

Choi, Min Hwan. Pulsed-Laser-Induced Melting and Solidification of Thin Metallic Films. [New York, N.Y.?]: [publisher not identified], 2012.

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12

Kromann, Rasmus. Deposition, characterization, and electronic applications of YBa2Cu3O7 thin films. Roskilde: Risø National Laboratory, 1992.

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13

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

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14

T, Wille Luc, ed. Mechanisms and principles of epitaxial growth in metallic systems: Symposium held April 13-14, 1998, San Francisco, California, U.S.A. Warrendale, Pa: Materials Research Society, 1998.

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15

Hansen, Uwe. Theorie der Reaktionskinetik an Festkörperoberflächen. München: Förderung des Walter Schottky Instituts der Technischen Universität, 2000.

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16

1930-, Bennett L. H., and Watson R. E, eds. Magnetic multilayers. Singapore: World Scientific, 1994.

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17

K, Jones B., ed. Physical properties of thin metal films. London: Taylor & Francis, 2003.

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18

P, Murarka S., ed. Advanced metallization for devices and circuits--science, technology, and manufacturability: Symposium held April 4-8, 1994, San Francisco, California, U.S.A. Pittsburgh, Pa: Materials Research Society, 1994.

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19

Kinnunen, Petri. Electrochemical characterisation and modelling of passive films on Ni- and Fe-based alloys. Espoo [Finland]: Technical Research Centre of Finland, 2002.

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20

Symposium on Reliability of Metals in Electronics (1995 Reno, Nev.). Proceedings of the Symposium on Reliability of Metals in Electronics. Pennington, NJ: Electrochemical Society, 1995.

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21

de, Jongh L. J., ed. Magnetic properties of layered transition metal compounds. Dordrecht: Kluwer Academic, 1990.

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22

M, Hong, Gubser D. U. 1940-, Wolf Stuart A, TMS Electronic Device Materials Committee., American Society for Metals. Electrical, Magnetic, and Optical Phenomena Committee., and Metallurgical Society (U.S.). Meeting, eds. Metallic multi-layers and epitaxy: Proceedings of a symposium co-sponsored by the TMS Electronic Device Materials Committee (EDMC), and the ASM-MSD Electrical, Magnetic, and Optical Phenomena Activity (EMOP), held at the Annual Meeting of the Metallurgical Society in Denver, Colorado, February 24-25, 1987. Warrendale, Pa: The Society, 1988.

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23

J, Halas Naomi, Huser Thomas R, and Society of Photo-optical Instrumentation Engineers., eds. Plasmonics: Metallic nanostructures and their optical properties II : 2-3 August, 2004, Denver, Colorado, USA. Bellingham, Wash: SPIE, 2004.

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24

Mi͡alikgulyev, G. Magnitnye i ėlektricheskie svoĭstva plenok upori͡adochivai͡ushchikhsi͡a splavov. Ashkhabad: Ylym, 1985.

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25

Misra, Prasanta, and Gayanath Fernando. Metallic Multilayers and Their Applications: Theory, Experiments, and Applications Related to Thin Metallic Multilayers. Elsevier Science & Technology Books, 2011.

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26

Barker, Charles Pease. Cathodic Deposition of Thin Metallic Films. Creative Media Partners, LLC, 2015.

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27

Jones, Brian K., and G. P. Zhigal'skii. Physical Properties of Thin Metal Films. Taylor & Francis Group, 2003.

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28

Jones, Brian K., and G. P. Zhigal'skii. Physical Properties of Thin Metal Films. Taylor & Francis Group, 2019.

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29

Coffey, Kevin, and Katayun Barmak. Metallic Films for Electronic, Optical and Magnetic Applications: Structure, Processing and Properties. Elsevier Science & Technology, 2014.

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30

Coffey, Kevin, and Katayun Barmak. Metallic Films for Electronic, Optical and Magnetic Applications: Structure, Processing and Properties. Elsevier Science & Technology, 2018.

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31

Wetzig, Klaus, and Claus M. Schneider. Metal Based Thin Films for Electronics. Wiley & Sons, Limited, John, 2005.

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32

Wetzig, Klaus, and Claus M. Schneider. Metal Based Thin Films for Electronics. Wiley & Sons, Incorporated, John, 2006.

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33

(Editor), Klaus Wetzig, and Claus M. Schneider (Editor), eds. Metal Based Thin Films for Electronics. 2nd ed. Wiley-VCH, 2006.

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34

J, Anderson. Chemisorption and Reactions on Metallic Films V1. Elsevier Science & Technology Books, 2012.

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35

J, Anderson. Chemisorption and Reactions on Metallic Films V2. Elsevier Science & Technology Books, 2012.

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36

Thin metal films and gas chemisorption. Amsterdam: Elsevier, 1987.

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37

Zehner, D. M., and D. W. Goodman. Physical and Chemical Properties of Thin Metal Overlayers and Alloy Surfaces: Volume 83. University of Cambridge ESOL Examinations, 2014.

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38

Siddall, G., C. R. Tellier, and A. J. Tosser. Size Effects in Thin Films. Elsevier Science & Technology Books, 2016.

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39

Lincot, D., and G. Hodes. Chemical Solution Deposition of Semiconducting and Non-Metallic Films. The Electrochemical Society, 2006.

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40

Metallic Films for Electronic, Optical and Magnetic Applications. Elsevier, 2014. http://dx.doi.org/10.1016/c2013-0-16124-7.

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41

Hebert, Kurt R., and G. E. Thompson. Oxide Films on Metals & Alloys VII (Proceedings / Electrochemical Society). Electrochemical Society, 1995.

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42

Marthandam, Pramodha. Plasmonic Control of Optical Properties of Metal Films. Simon & Schuster, 2008.

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43

Hebert, Kurt R., Ont.) Symposium on Oxide Films (2000 Toronto, Robert Scott Lillard, and B. R. Macdougall. Oxide Films: Proceedings of the International Symposium (Proceedings (Electrochemical Society), V. 2000-4.). Electrochemical Society, 2000.

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44

Kiefer, Daniel. Relativistic Electron Mirrors: From High Intensity Laser–Nanofoil Interactions. Springer, 2014.

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45

Korotcenkov, Ghenadii, and Ashrit Pandurang. Transition Metal Oxide Thin Film-Based Chromogenics and Devices. Elsevier, 2017.

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46

Rodrigo, Sergio G. Optical Properties of Nanostructured Metallic Systems: Studied with the Finite-Difference Time-Domain Method. Springer, 2011.

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47

Korotcenkov, Ghenadii, Nini Pryds, and Vicenzo Esposito. Metal Oxide-Based Thin Film Structures: Formation, Characterization and Application of Interface-Based Phenomena. Elsevier Science & Technology Books, 2017.

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48

Kiefer, Daniel. Relativistic Electron Mirrors: From High Intensity Laser–Nanofoil Interactions. Springer, 2016.

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49

Rodrigo, Sergio G. Optical Properties of Nanostructured Metallic Systems: Studied with the Finite-Difference Time-Domain Method. Springer, 2013.

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50

Kiefer, Daniel. Relativistic Electron Mirrors: From High Intensity Laser-Nanofoil Interactions. Springer, 2014.

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