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1

Efremovich, Zaikov Gennadiĭ, Bouchachenko A. L, and Ivanov V. B, eds. Aging of polymers, polymer blends and polymer composites. New York: Nova Science Publishers, 2002.

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2

Efremovich, Zaikov Gennadiĭ, Bouchachenko A. L, and Ivanov V. B, eds. Aging of polymers, polymer blends, and polymer composites. New York: Nova Science Publishers, 2002.

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3

Godovsky, Yu K., K. Horie, A. Kaneda, N. Kinjo, L. F. Kosyanchuk, Yu S. Lipatov, T. E. Lipatova, et al. Speciality Polymers/Polymer Physics. Berlin, Heidelberg: Springer Berlin Heidelberg, 1989. http://dx.doi.org/10.1007/bfb0017962.

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4

Rubinson, Judith F., and Harry B. Mark, eds. Conducting Polymers and Polymer Electrolytes. Washington, DC: American Chemical Society, 2002. http://dx.doi.org/10.1021/bk-2003-0832.

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5

Chiellini, Emo, Junzo Sunamoto, Claudio Migliaresi, Raphael M. Ottenbrite, and Daniel Cohn, eds. Biomedical Polymers and Polymer Therapeutics. Boston, MA: Springer US, 2002. http://dx.doi.org/10.1007/b112950.

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6

I, Kroschwitz Jacqueline, ed. Polymers: Polymer characterization and analysis. New York: Wiley, 1990.

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7

Emo, Chiellini, and International Symposium on Frontiers in Biomedical Polymers including Polymer Therapeutics: From Laboratory to Clinical Practice (3rd : 1999 : Shiga, Japan), eds. Biomedical polymers and polymer therapeutics. New York: Kluwer Academic/Plenum Publishers, 2001.

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8

Inoue, S., S. Jacob, M. Jiang, J. P. Kennedy, M. Li, H. Sugimoto, M. Xiang, and H. Zhou, eds. Polymer Synthesis/Polymer-Polymer Complexation. Berlin, Heidelberg: Springer Berlin Heidelberg, 1999. http://dx.doi.org/10.1007/3-540-49424-3.

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9

1957-, Webster Dean C., and SpringerLink (Online service), eds. Polymer Libraries. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2010.

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10

Meeting, American Chemical Society. Interpenetrating polymer networks. Edited by Klempner Daniel, Sperling L. H. 1932-, Utracki L. A. 1931-, American Chemical Society. Division of Polymeric Materials: Science and Engineering., and Chemical Congress of North America (4th : 1991 : New York, N.Y.). Washington, DC: American Chemical Society, 1994.

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11

Arndt, K. F., and M. D. Lechner, eds. Polymer Solids and Polymer Melts–Mechanical and Thermomechanical Properties of Polymers. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-55166-6.

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12

Alger, Mark S. M. Polymer science dictionary. 2nd ed. London: Chapman, 1997.

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13

Polymer science dictionary. London: Elsevier Applied Science, 1989.

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14

Morton-Jones, David H. Polymer processing. London: Chapman and Hall, 1989.

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15

Engineers, Society of Automotive, and SAE International Congress & Exposition (1998 : Detroit, Mich.), eds. Polymer composites and polymeric materials. Warrendale, PA: Society of Automotive Engineers, 1998.

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16

Long, Timothy E., Brigitte Voit, and Oguz Okay, eds. Porous Carbons – Hyperbranched Polymers – Polymer Solvation. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-13617-2.

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17

Eklund, Peter C., and Apparao M. Rao, eds. Fullerene Polymers and Fullerene Polymer Composites. Berlin, Heidelberg: Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/978-3-662-04269-4.

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18

Zhang, Ming Qiu, and Min Zhi Rong. Self-Healing Polymers and Polymer Composites. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2011. http://dx.doi.org/10.1002/9781118082720.

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19

Zhi, Rong Min, ed. Self-healing polymers and polymer composites. Hoboken, N.J: Wiley, 2011.

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20

C, Eklund P., and Rao Apparao M. 1961-, eds. Fullerene polymers and fullerene polymer composites. Berlin: Springer, 2000.

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21

Brinson, L. C. (L. Catherine), ed. Polymer engineering science and viscoelasticity: An introduction. New York: Springer, 2008.

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22

Functional polymer blends: Synthesis, properties, and performances. Boca Raton: CRC Press, 2012.

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23

Bhattacharyya, Debes, and Stoyko Fakirov, eds. Synthetic Polymer-Polymer Composites. München: Carl Hanser Verlag GmbH & Co. KG, 2012. http://dx.doi.org/10.3139/9781569905258.

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24

Anantawaraskul, S. Polymer analysis/polymer theory. Berlin: Springer, 2011.

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25

L, Andrady A., ed. Polymer analysis, polymer physics. Berlin: Springer, 1997.

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26

Bhattacharyya, Debes, and Stoyko Fakirov, eds. Synthetic Polymer-Polymer Composites. München, Germany: Carl Hanser Verlag GmbH & Co. KG, 2012. http://dx.doi.org/10.1007/978-1-56990-525-8.

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27

Polymer process engineering. New York: Chapman & Hall, 1995.

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28

Grulke, Eric A. Polymer process engineering. Englewood Cliffs, NJ: PTR Prentice Hall, 1994.

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29

Polymer process engineering. Lexington, Ky: TPS Pub. Co., 1994.

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30

Engineering polymer sourcebook. New York: McGraw-Hill, 1990.

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31

R, Buscall, Corner T, and Stageman J. F, eds. Polymer colloids. London: Elsevier Applied Science Publishers, 1985.

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32

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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33

Aharoni, S. M., and Sam F. Edwards. Rigid Polymer Networks (Advances in Polymer Science S.). Springer, 1994.

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34

Edwards, Sam F., and S. M. Aharoni. Rigid Polymer Networks. Springer, 2013.

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35

Aggarwal, Sundar L. Comprehensive Polymer Science : Specialty Polymers & Polymer Processing. Pergamon, 1990.

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36

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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37

Thomas, Sabu, Soney C. George, Jozef Haponiuk, Rakesh Reghunath, and Sarath P. S. Tribology of Polymers, Polymer Composites, and Polymer Nanocomposites. Elsevier, 2022.

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38

Thomas, Sabu, Soney C. George, Jozef Haponiuk, Rakesh Reghunath, and Sarath P. S. Tribology of Polymers, Polymer Composites, and Polymer Nanocomposites. Elsevier, 2022.

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39

KINJO, N. Speciality Polymers/polymer Physics (Advances in Polymer Science). Springer, 1989.

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40

Godovsky, Yu K., L. F. Kosyanchuk, K. Horie, A. Kaneda, and N. Kinjo. Speciality Polymers/Polymer Physics. Springer, 2006.

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41

Speciality Polymers / Polymer Physics. De Gruyter, 1989. http://dx.doi.org/10.1515/9783112484647.

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42

Godovsky, Yu K. Speciality Polymers / Polymer Physics. de Gruyter GmbH, Walter, 2022.

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43

Speciality Polymers / Polymer Physics. de Gruyter GmbH, Walter, 1990.

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44

Godovsky, Yu K., K. Horie, A. Kaneda, N. Kinjo, L. F. Kosyanchuk, Yu S. Lipatov, T. E. Lipatova, I. Mita, and K. Nishi. Speciality Polymers/Polymer Physics. Springer, 2014.

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45

Ogata, M., Yu K. Godovsky, K. Horie, A. Kaneda, N. Kinjo, L. F. Kosyanchuk, Yu S. Lipatov, et al. Speciality Polymers/Polymer Physics. Springer, 1989.

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46

Polymer Yearbook: Chemistry And Physics Of Polymers, Polymer Blends & Composites (Polymer Yearbook). V.S.P. Intl Science, 2005.

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47

Mohamed, Rabiatul Manisah, Mohamad Syahmie Mohamad Rasidi, Norazlina Hashim, Teh Pei Leng, and Yusrina Mat Daud. POLYMER BLENDS. 2024th ed. PENERBIT UNIVERSITI MALAYSIA PERLIS, 2024. http://dx.doi.org/10.58915/bk2023.013.

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Polymer Blends is an essential book that discuss on polymer blends, its additives and real-world applications. This book covers a number of topics, including the basics of polymer blends, testing and characterization techniques, the role of additives in enhancing blend properties, specialty polymer blends, and their diverse applications across industries. With a clear and concise approach, this book caters to students, researchers and professionals seeking an understanding of polymer blends. It begins by laying an introducing and concepts of polymer blends, testing and characterization methods and explanation on additives in improving blend performance and stability. Furthermore, it highlights the specialty polymer blends, which offer tailored properties for specific applications, from packaging to medical devices and electronics. This book is an essential resource on the importance of polymer blends in materials science and engineering. By combining the strengths of multiple polymers, blends offer limitless opportunities for developing materials with superior properties and sustainability. It serves as a guiding compass for unlocking the potential of polymer blends and inspiring new horizons in materials design and commercialization.
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48

Hummel, Dieter O. Atlas of Polymer and Plastics Analysis/Atlas Der Polymer- Und Kunststoffanalyse Industrial Polymers, Technische Polymere. 3rd ed. Wiley-VCH Verlag GmbH, 2004.

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49

(Editor), Abdulakh K. Mikitaev, Mukhamed Kh Ligidov (Editor), and Gennady E. Zaikov (Editor), eds. Polymers, Polymer Blends, Polymer Composites And Filled Polymers: Synthesis, Properties, and Applications. Nova Science Publishers, 2006.

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50

(Contributor), B. Donnio, D. Guillon (Contributor), A. Harada (Contributor), A. Hashidzume (Contributor), W. Jaeger (Contributor), B. Janowski (Contributor), S. Kudaibergenov (Contributor), et al., eds. Supramolecular Polymers/Polymeric Betains/Oligomers (Advances in Polymer Science). Springer, 2006.

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