M. Schwartz, Smart Materials (Taylor & Francis, London, 2008)
M. Addington, D. Schodek, Smart Materials and Technologies in Architecture (Taylor & Francis, London, 2012)
J.-S. Leng, X. Lan, H.-B. Lu, Y.-J. Liu, Int. J. Mod. Phys. B 24(15n16), 2351–2356 (2010)
[+]
M. Schwartz, Smart Materials (Taylor & Francis, London, 2008)
M. Addington, D. Schodek, Smart Materials and Technologies in Architecture (Taylor & Francis, London, 2012)
J.-S. Leng, X. Lan, H.-B. Lu, Y.-J. Liu, Int. J. Mod. Phys. B 24(15n16), 2351–2356 (2010)
A.A. Vives, A. Arnau, Piezoelectric Transducers and Applications (Springer, Berlin, 2008)
W. Heywang, K. Lubitz, W. Wersing, Piezoelectricity: Evolution and Future of a Technology (Springer, Berlin, 2008)
T. Ikeda, Fundamentals of Piezoelectricity (Oxford University Press, Oxford, 1996)
G.S. Neugschwandtner, R. Schwödiauer, S. Bauer-Gogonea, S. Bauer, Appl. Phys. A 70, 1 (2000)
J.F. Nye, Physical Properties of Crystals: Their Representation by Tensors and Matrices (Clarendon Press, Oxford, 1985)
P. Martins, A.C. Lopes, S. Lanceros-Mendez, Prog. Polym. Sci. 39(4), 683 (2014)
M.P. Silva, C.M. Costa, V. Sencadas, A.J. Paleo, S. Lanceros-Méndez, J. Polym. Res. 18(6), 1451–1457 (2011)
J. Gomes, J.S. Nunes, V. Sencadas, S. Lanceros-Mendez, Smart Mater. Struct. 19(6), 065010 (2010)
T. Furukawa, IEEE Trans. Electr. Insul. 24(3), 375–394 (1989)
G.M. Sessler, J. Acoust. Soc. Am. 70(6), 1596–1608 (1981)
G.H. Sessler, G.M. Sessler, M.G. Broadhurst, R. Gerhard-Multhaupt, Electrets (Laplacian Press, Morgan Hill, 2000)
Z. Ounaies, A. Young Jennifer, S. Harrison Joycelyn, An Overview of the Piezoelectric Phenomenon in Amorphous Polymers. Field Responsive Polymers, vol. 726 (American Chemical Society, 1999), pp. 88–103
R. Chûjô, in Frontiers of Polymer Research, ed. by P. Prasad, J. Nigam. Molecular Design of Amorphous Piezoelectric Polymers with the Aid of NMR (Springer, New York, 1991), pp. 371–376
H. Von Berlepsch, W. Kunstler, A. Wedel, R. Danz, D. Geiss, IEEE Trans. Electr. Insul. 24(2), 357–362 (1989)
I. Seo, Ferroelectrics 171(1), 45–55 (1995)
P.A. Mirau, S.A. Heffner, Polymer 33(6), 1156–1161 (1992)
T. Takahashi, H. Kato, S.P. Ma, T. Sasaki, K. Sakurai, Polymer 36(20), 3803–3808 (1995)
H.K. Hall Jr, R.H. Chan, J. Oku, O.R. Hughes, J. Scheinbeim, B. Newman, Polym. Bull. 17(2), 135–136 (1987)
C. Park, Z. Ounaies, K.E. Wise, J.S. Harrison, Polymer 45(16), 5417–5425 (2004)
Y. Furuya, J. Su, I. Takeuchi, V.K. Varadan, J. Ulicny, Materials and Devices for Smart Systems II (Cambridge University Press, Cambridge, 2006)
D.W. van Krevelen, Properties of Polymers (Elsevier, Amsterdam, 2012)
J. Simpson, Z. Ounaies, C. Fay, MRS Online Proceedings Library 1996;459
B. Gonzalo, J.L. Vilas, T. Breczewski, M.A. Pérez-Jubindo, M.R. De La Fuente, M. Rodriguez, L.M. León, J. Polym. Sci. A. Polym. Chem. 47(3), 722–730 (2009)
M.S. Sebastián, B. Gonzalo, T. Breczewski, J.L. Vilas, M.A. Pérez-Jubindo, M.R. De La Fuente, L.M. León, Ferroelectrics 389(1), 114–121 (2009)
B. Gonzalo, T. Breczewski, J.L. Vilas, M.A. Perez-Jubindo, M.R. De La Fuente, J.R. Dios, L.M. León, Ferroelectrics 370(1), 3–10 (2008)
B. Gonzalo, J.L. Vilas, M. San Sebastián, T. Breczewski, M.Á. Pérez-Jubindo, M.R. de la Fuente, M. Rodríguez, L.M. León, J. Appl. Polym. Sci. 125(1), 67–76 (2012)
S. Sakthivel, B.C. Shekar, D. Mangalaraj, S.K. Narayandass, S. Venkatachalam, P.V. Prabhakaran, Eur. Polymer J. 33(10–12), 1747–1752 (1997)
S. Muruganand, S.K. Narayandass, D. Mangalaraj, T.M. Vijayan, Polym. Int. 50(10), 1089–1094 (2001)
F. Kremer, A. Schnhals, Broadband Dielectric Spectroscopy (Springer, Berlin, 2003)
G.W. Scherer, Relaxation in Glass and Composites (Krieger Publishing Company, Malabar, 1991)
R.H. Boyd, Polymer 26(3), 323–347 (1985)
S. Lanceros-Mendez, M.V. Moreira, J.F. Mano, V.H. Schmidt, G. Bohannan, Ferroelectrics 273(1), 15–20 (2002)
S. Firmino Mendes, C.M. Costa, V. Sencadas, J. Serrado Nunes, P. Costa, R. Gregorio Jr., S. Lanceros-Méndez, Appl. Phys. A 96(4), 899–908 (2009)
A.C. Lopes, C.M. Costa, RSi Serra, I.C. Neves, J.L.G. Ribelles, S. Lanceros-Méndez, Solid State Ion. 235, 42–50 (2013)
R.K. Chan, K. Pathmanathan, G.P. Johari, J. Phys. Chem. 90(23), 6358–6362 (1986)
H. Lu, X. Zhang, J. Macromol. Sci. B 45(5), 933–944 (2006)
P. Lunkenheimer, T. Götzfried, R. Fichtl, S. Weber, T. Rudolf, A. Loidl, A. Reller, S.G. Ebbinghaus, J. Solid State Chem. 179(12), 3965–3973 (2006)
A.K. Jonscher, Nature 267(5613), 673–679 (1977)
H. Deligöz, T. Yalcinyuva, S. Özgümüs, S. Yildirim, J. Appl. Polym. Sci. 100(1), 810–818 (2006)
A.M.A. Nada, M. Dawy, A.H. Salama, Mater. Chem. Phys. 84(2–3), 205–215 (2004)
J.C. Dyre, T.B. Schrøder, Rev. Mod. Phys. 72(3), 873–892 (2000)
J.C. Dyre, J. Appl. Phys. 64(5), 2456–2468 (1988)
G.M. Tsangaris, G.C. Psarras, N. Kouloumbi, J. Mater. Sci. 33(8), 2027–2037 (1998)
A. Molak, M. Paluch, S. Pawlus, J. Klimontko, Z. Ujma, I. Gruszka, J. Phys. D Appl. Phys. 38(9), 1450 (2005)
K.L. Ngai, S.W. Martin, Phys. Rev. B 40(15), 10550–10556 (1989)
H. Lu, X. Zhang, H. Zhang, J. Appl. Phys. 100(5), 054104 (2006)
P.K. Dixon, Phys. Rev. B 42(13), 8179–8186 (1990)
T. Prakash, K.P. Prasad, R. Kavitha, S. Ramasamy, B.S. Murty, J. Appl. Phys. 102(10), 104104 (2007)
[-]