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Download Field Responsive Polymers. Electroresponsive, by Ishrat M. Khan, Joycelyn S. Harrison PDF

By Ishrat M. Khan, Joycelyn S. Harrison

content material: Microwave and optical homes of accomplishing polymers : from uncomplicated examine to purposes / P. Hourquebie, P. Buvat, and D. Marsacq --
Separation and focus of anionic natural electrolytes through electrotransport via polyethylene motion pictures grafted with cationic polymers / Kazunori Yamada, Koki Sasaki, and Mitsuo Hirata --
Ionic polymer-metal composites as biomimetic sensors and actuators-artificial muscle mass / M. Shahinpoor, Y. Bar-Cohen, T. Xue, Joycelyn S. Harrison, and J. Smith --
Nonaqueous polymer electrolytes for electrochromic units / J.R. Stevens, W. Wieczorek, D. Raducha, and K.R. Jeffrey --
Morphology and luminescence homes of poly(phenylenevinylene) and poly(N-vinylpyrrolidone) polyblends / King-Fu Lin, Lu-Kuen Chang, and Horng-Long Cheng --
an outline of the piezoelectric phenomenon in amorphous polymers / Zoubeida Ounaies, Jennifer A. younger, and Joycelyn S. Harrison --
The electrorheological homes of chitosan sulfate suspensions / Shuizhu Wu and Jiarui Shen --
Field-responsive conjugated polymers / Karim Faïd and Mario Leclerc --
Dielectric and electro-optical homes of a ferroelectric side-chain liquid crystalline polysiloxane containing azobenzene dyes as visitor molecules / Rong-Ho Lee, Ging-Ho Hsiue, and Ru-Jong Jeng --
excessive dielectric consistent (microwave frequencies) polymer composites / Shailendra Negi, Keith Gordon, Saeed M. Khan, and Ishrat M. Khan --
id of severe structure-function relationships within the instruction of polymer skinny motion pictures for electro-optic modulator purposes / A.W. Harper, F. Wang, J. Chen, M. Lee, and L.R. Dalton --
Novel facet chain liquid crystalline polymers for quadratic nonlinear optics / F. Kajzar, Gangadhara, S. Ponrathnam, C. Noël, and D. Reyx --
Dielectric rest and second-order nonlinearity of copolymethacrylates containing tolane-based mesogenic teams / Ging-Ho Hsiue, Ru-Jong Jeng, and Rong-Ho Lee --
Photorefractive polymers and polymer-dispersed liquid crystals / B. Kippelen, A. Golemme, E. Hendrickx, J.F. Wang, S.R. Marder, and N. Peyghambarian --
Novel photorefractive fabrics according to multifunctional natural glasses / Qing Wang, Nikko Quevada, Ali Gharavi, and Luping Yu --
An oligo(3-alkylthiophene) containing fabric displaying excessive photorefractivity / Wenjie Li, Alireza Gharavi, Qing Wang, and Luping Yu --
technique for the synthesis of latest multifunctional polymers for photorefractive purposes / K.D. Belfield, C. Chinna, O. Najjar, S. Sriram, and K.J. Schafer --
Stimuli-responsive habit of N, N-dimethylaminoethyl methacrylate polymers and their hydrogels / Fu-Mian Li, Shuang-Ji Chen, Fu-Sheng Du, Zhi-Qiang Wu, and Zi-Chen Li --
Thermoreversible gelation of syndiotactic poly(methyl methacrylate) dependent block copolymers in o-xylene / J.M. Yu and R. Jerome --
artificial layout of "responsive" surfaces / David E. Bergbreiter --
Thermosensitive homes of flat poly(tetrafluoroethylene) plates surface-grafted with N-isopropylacrylamide and 2-(dimethylamino)ethyl methacrylate / Kiyomi Matsuda, Naoki Shibata, Kazunori Yamada, and Mitsuo Hirata --
Temperature- and pH-responsive polymers for managed polypeptide drug supply / C. Ramkissoon-Ganorkar, F. Liu, M. Baudyš, and S.W. Kim.

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Extra resources for Field Responsive Polymers. Electroresponsive, Photoresponsive, and Responsive Polymers in Chemistry and Biology

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3. ; Hirata, M. J. Appl. Polym. Sci. 1992, 46, 1065. 4. ; Hirata, M. J. Colloid Interface Sci. 1994, 162, 144. 5. ; Hirata, M. Polym. Gels Networks 1994, 2, 323. 6. ; Ray, A. ; Singh, H. J. Macromol. Sci. Chem. 1990, A27, 831. 7. Dogué, I. L. ; Gandini, A. J. Appl. Polym. Sci. 1995, 56, 33. 8. Epailland, F. ; Brosse, J. C. J. Appl. Polym. Sci. 1994, 53, 1291. 9. ; Hanmin, Z. J. Appl. Polym. Sci. 1994, 53, 405. 10. Hegazy, E. ; El-Assy, N. ; Taher, N. ; Desouki, A. M. Radiat. Phys. Chem. 1989, 33, 539.

Bar-Cohen , T. Xue , Joycelyn S. Harrison , and J. ch003 3 ABSTRACT This chapter presents an introduction to ionic-polymer-metal composites and some mathematical modeling pertaining to them. It further discusses a number of recent findings in connection with ion-exchange polymer metal composites (IPMC) as biomimetic sensors and actuators. Strips of these composites can undergo large bending and flapping displacement if an electric field is imposed across their thickness. Thus, in this sense they are large motion actuators.

1, pp 172-179, 1992. 59. Tzou, H. , "Precision Sensors, Actuators and Systems", Kluwer Academic Publishers 1992 60. Rieder, W. , Busby, H. , "Introductory Engineering Modeling Emphasizing Differential Models and Computer Simulations", Robert E. Krieger Publishing Company, Malabar, Florida, 1990. 61. Ugural, A. , Fenster, S. , "Advanced Strength and Applied Elasticity", Elsevier, New York, 1987. 62. Bar-Cohen, Y . , T. Xue, B. -S. „ J. Simpson, J. Smith, and P. Willis, " Electroactive polymers (IPMC) low mass muscle actuators, " Proceedings of 1997 SPIE Conference on Smart Materials and Structures, March5, San Diego, California, (1997) 63.

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