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1

Brazel, Christopher S., and Robin D. Rogers, eds. Ionic Liquids in Polymer Systems. Washington, DC: American Chemical Society, 2005. http://dx.doi.org/10.1021/bk-2005-0913.

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2

Polymeric liquids and networks: Structure and properties. New York: Garland Science, 2004.

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3

Mecerreyes, David, ed. Applications of Ionic Liquids in Polymer Science and Technology. Berlin, Heidelberg: Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-44903-5.

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4

Levit͡skiĭ, S. P. Bubbles in polymeric liquids: Dynamics and heat-mass transfer. Lancaster: Technomic Pub., 1995.

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5

Donald, A. M. Liquid crystalline polymers. Cambridge [England]: Cambridge University Press, 1992.

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6

National Research Council (U.S.). Committee on Liquid Crystalline Polymers. Liquid crystalline polymers: Report. Washington, D.C: National Academy Press, 1990.

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7

Karen, Mitchell, ed. Liquid polymer clay. Iola, Wis: Krause, 2003.

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8

Wolf, Bernhard A. Polymer Thermodynamics: Liquid Polymer-Containing Mixtures. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2011.

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9

Perspectives on the macromolecular condensed state. River Edge, N.J: World Scientific, 2002.

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10

Dierking, Ingo, ed. Polymer-modified Liquid Crystals. Cambridge: Royal Society of Chemistry, 2019. http://dx.doi.org/10.1039/9781788013321.

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11

Isayev, Avraam I., Thein Kyu, and Stephen Z. D. Cheng, eds. Liquid-Crystalline Polymer Systems. Washington, DC: American Chemical Society, 1996. http://dx.doi.org/10.1021/bk-1996-0632.

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12

Japan), OUMS'93 (1993 Osaka. Ordering in macromolecular systems: Proceedings of the OUMS'93, Toyonaka, Osaka, Japan, 3-6 June 1993. Berlin: Springer-Verlag, 1994.

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13

Jixiang, Liu, and Xie Yu-Zhang, eds. Geometric methods in the elastic theory of membranes in liquid crystal phases. Singapore: World Scientific, 1999.

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14

Cox, M. K. Liquid crystal polymers. Oxford: Pergamon Press, 1987.

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15

Platé, N. A., ed. Liquid-Crystal Polymers. Boston, MA: Springer US, 1993. http://dx.doi.org/10.1007/978-1-4899-1103-2.

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16

Thakur, Vijay Kumar, and Michael R. Kessler, eds. Liquid Crystalline Polymers. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-20270-9.

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17

Thakur, Vijay Kumar, and Michael R. Kessler, eds. Liquid Crystalline Polymers. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-22894-5.

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18

Weiss, R. A., and C. K. Ober, eds. Liquid-Crystalline Polymers. Washington, DC: American Chemical Society, 1990. http://dx.doi.org/10.1021/bk-1990-0435.

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19

National Research Council (U.S.). Committee on Liquid Crystalline Polymers. Liquid crystalline polymers: Report of the Committee on Liquid Crystalline Polymers, National Materials Advisory Board, Commission on Engineering and Technical Systems, National Research Council. Washington, D.C: National Academy Press, 1990.

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20

Glöckner, Gottfried. Polymer characterization by liquid chromatography. Amsterdam: Elsevier, 1987.

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21

Glöckner, Gottfried. Polymer characterization by liquid chromatography. Amsterdam: Elsevier, 1987.

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22

Liquid crystal dispersions. Singapore: World Scientific, 1995.

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23

Shibaev, Valery P. Liquid Crystalline and Mesomorphic Polymers. New York, NY: Springer New York, 1994.

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24

Alexandre, Blumstein, American Chemical Society. Division of Polymer Chemistry., and American Chemical Society Meeting, eds. Polymeric liquid crystals. New York: Plenum Press, 1985.

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25

Blumstein, Alexandre, ed. Polymeric Liquid Crystals. Boston, MA: Springer US, 1985. http://dx.doi.org/10.1007/978-1-4899-2299-1.

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26

Savolainen, Pekka. Modeling of non-isothermal vapor membrane separation with thermodynamic models and generalized mass transfer equations. Lappeenranta, Finland: Lappeenranta University of Technology, 2002.

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27

Shibaev, Valery P., and Lui Lam, eds. Liquid Crystalline and Mesomorphic Polymers. New York, NY: Springer New York, 1994. http://dx.doi.org/10.1007/978-1-4613-8333-8.

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28

Wohlfarth, C. CRC handbook of liquid-liquid equilibrium data of polymer solutions. Boca Raton: CRC Press, 2008.

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29

service), SpringerLink (Online, ed. Thin Liquid Films: Dewetting and Polymer Flow. Dordrecht: Springer Netherlands, 2012.

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30

Han, Chang Dae. Rheology and Processing of Polymeric Materials: Volume 1: Polymer Rheology. Oxford University Press, 2007. http://dx.doi.org/10.1093/oso/9780195187823.001.0001.

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Volume 1 presents first fundamental principles of the rheology of polymeric fluid including kinematics and stresses of a deformable body, the continuum theory for the viscoelasticity of flexible homogeneous polymeric liquids, the molecular theory for the viscoelasticity of flexible homogeneous polymeric liquids, and the experimental methods for the measurement of the rheological properties of poylmeric liquids. The materials presented are intended to set a stage for the subsequent chapters by introducing the basic concepts and principles of rheology, from both phenomenological and molecular perspectives, ofstructurally simple flexible and homogeneous polymeric liquids. Next, this volume presents the rheological behavior of structurally complex polymeric materials including miscible polymer blends, block copolymers, liquid-crystalline polymers, thermoplastic polyurethanes, immiscible polymer blends, perticulare-filled polymers, organoclay nanocomposites, molten polymers with dissolved gas, and thermosts.
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31

1924-, Bird R. Byron, ed. Dynamics of polymeric liquids. 2nd ed. New York: Wiley, 1987.

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32

Curtiss, Charles F., Robert C. Armstrong, Ole Hassager, and R. Byron Bird. Dynamics of Polymeric Liquids, Kinetic Theory (Dynamics of Polymer Liquids Vol. 2). Wiley-Interscience, 1987.

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33

Hassager, Ole, and R. Byron Bird. Dynamics of Polymeric Liquids, Fluid Mechanics (Dynamics of Polymer Liquids Vol. 1). Wiley-Interscience, 1987.

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34

Safinya, Cyrus R., Samuel A. Safran, and Philip A. Pincus. Macromolecular Liquids: Volume 177. University of Cambridge ESOL Examinations, 2014.

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35

Models for Polymeric and Anisotropic Liquids. Springer, 2005.

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36

Kröger, Martin. Models for Polymeric and Anisotropic Liquids. Springer, 2010.

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37

Graessley, William W. Polymeric Liquids & Networks: Structure and Properties. Garland Science, 2003.

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38

Polymeric Liquids & Networks: Dynamics and Rheology. Garland Science, 2008.

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39

Graessley, William W. Polymeric Liquids and Networks: Structure and Properties. CRC Press LLC, 2003.

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40

R, Safinya Cyrus, Safran Samuel A, Pincus P. A, and Materials Research Society, eds. Macromolecular liquids: Symposium held November 27-December 1, 1989, Boston, Massashusetts, U.S.A. Pittsburgh, Pa: Materials Research Society, 1990.

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41

Mecerreyes, David. Applications of Ionic Liquids in Polymer Science and Technology. Springer, 2015.

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42

(Editor), Christopher S. Brazel, and Robin D. Rogers (Editor), eds. Ionic Liquids in Polymer Systems: Solvents, Additives, and Novel Applications (Acs Symposium Series). An American Chemical Society Publication, 2005.

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43

Levitsky, Semyon P., and Zinoviy P. Shulman. Bubbles in Polymeric Liquids: Dynamics and Heat-Mass Transfer. Technomic Publishing Co., 1995.

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44

Davis, Fred J., ed. Polymer Chemistry. Oxford University Press, 2004. http://dx.doi.org/10.1093/oso/9780198503095.001.0001.

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Polymer Chemistry: A Practical Approach in Chemistry has been designed for both chemists working in and new to the area of polymer synthesis. It contains detailed instructions for preparation of a wide-range of polymers by a wide variety of different techniques, and describes how this synthetic methodology can be applied to the development of new materials. It includes details of well-established techniques, e.g. chain-growth or step-growth processes together with more up-to-date examples using methods such as atom-transfer radical polymerization. Less well-known procedures are also included, e.g. electrochemical synthesis of conducting polymers and the preparation of liquid crystalline elastomers with highly ordered structures. Other topics covered include general polymerization methodology, controlled/"living" polymerization methods, the formation of cyclic oligomers during step-growth polymerization, the synthesis of conducting polymers based on heterocyclic compounds, dendrimers, the preparation of imprinted polymers and liquid crystalline polymers. The main bulk of the text is preceded by an introductory chapter detailing some of the techniques available to the scientist for the characterization of polymers, both in terms of their chemical composition and in terms of their properties as materials. The book is intended not only for the specialist in polymer chemistry, but also for the organic chemist with little experience who requires a practical introduction to the field.
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45

Collyer, A. A. Liquid Crystal Polymers: From Structures to Applications (Polymer Liquid Crystal). Springer, 1992.

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46

Liquid Crystalline Polymers. National Academies Press, 1990.

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47

(Translator), S. P. Brown, ed. Condensed Matter Physics: Crystals, Liquids, Liquid Crystals, and Polymers. Springer, 2003.

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48

Liquid Crystalline Polymers. World Scientific Publishing Company, 2004.

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49

Separation Techniques/Thermodynamics/Liquid Crystal Polymers (Advances in Polymer Science). Springer-Verlag, 1991.

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50

Advances in Polymer Science: Separation Techniques/thermodynamics/liquid Crystal Polymers (Advances in Polymer Science). Springer-Verlag Berlin and Heidelberg GmbH & Co. KG, 1991.

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