205
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Dielectric Relaxation in Confined Ferroelectric Polymer

, , , &
Pages 124-135 | Received 13 Sep 2010, Published online: 07 Oct 2011

References

  • Setter , N. and Waser , R. 2000 . Electroceramic materials . Acta Mater. , 48 : 151 – 178 .
  • Ahn , C. H. , Rabe , K. M. and Triscone , J.-M. 2004 . Ferroelectricity at the nanoscale; Local polarization in oxide thin films and heterostructures . Science , 303 : 488 – 491 .
  • Alexe , M. , Harnagea , C. and Hesse , D. 2004 . Non-conventional micro- and nanopatterning techniques for electroceramics . J. Electroceram. , 12 : 69 – 88 .
  • Dawber , M. , Rabe , K. M. and Scott , J. F. 2005 . Physics of thin-film ferroelectric oxides . Rev. Mod. Phys. , 77 : 1083 – 1130 .
  • Setter , N. , Damjanovic , D. , Eng , L. , Fox , G. , Gevorgian , S. , Hong , S. , Kingon , A. , Kohlstedt , H. , Park , N. Y. , Stephenson , G. B. , Stolichnov , I. , Kagantsev , A. K. , Taylor , D. V. , Yamada , T. and Streiffer , S. 2006 . Ferroelectric thin films: Review of materials, properties, and applications . J. Appl. Phys. , 100 : 051606-1 – 051606-46 .
  • Scott , J. F. 2006 . Nanoferroelectrics: Statics and dynamics . J. Phys. Condens Matter. , 18 : R361 – R386 .
  • Scott , J. F. 2007 . Application of modern ferroelectrics . Science , 315 : 954 – 959 .
  • Gregg , J. M. 2009 . Ferroelectrics at the nanoscale . Phys. Status Solidi A , 206 : 577 – 587 .
  • Naber , R. C. G. , Tanase , C. , Blom , P. W. M. , Gelinck , G. H. , Marsman , A. W. , Touwslager , F. J. , Setayesh , S. and De Leeuw , D. M. 2005 . High-performance solution-processed polymer ferroelectric field-effect transistors . Nature Mater. , 4 : 243 – 248 .
  • Ducharme , S. and Gruverman , A. 2009 . A simple nanoimprinting method creates arrays of ferroelectric polymer structures for low-cost non-volatile memories . Nature Mater. , 8 : 9 – 10 .
  • Hu , Z. , Tian , M. , Nysten , B. and Jonas , A. M. 2009 . Regular arrays of highly ordered ferroelectric polymer nanostructure for non-volatile low-voltage memories . Nature Mater. , 8 : 62 – 67 .
  • Schönhals , A. , Goering , H. and Schick , Ch. 2002 . Segmental and chain dynamics of polymers: From the bulk to the confined state . J. Non-Cryst. Solids , 305 : 140 – 149 .
  • Steinhart , M. , Wendorff , H. J. , Greiner , A. , Wehrspohn , R. B. , Nielsch , K. , Schilling , J. , Choi , J. and Gösele , U. 2002 . Polymer nanotubes by wetting of ordered porous templates . Science , 296 : 1997
  • Vorrey , S. and Teeters , D. 2003 . Study of the ion conduction of polymer electrolytes confined in micro and nanopores . Electrochim. Acta , 48 : 2137 – 2141 .
  • Steinhart , M. , Senz , S. , Wehrspohn , R. B. , Gösele , U. and Wendorff , J. H. 2003 . Curvature-directed crystallization of poly(vinylidene difluoride) in nanotube walls . Macromolecules , 36 : 3646 – 3651 .
  • Wu , Y. , Cheng , G. , Katsov , K. , Sides , S. W. , Wang , J. , Tang , J. , Fredrickson , G. H. , Moskovits , M. and Stucky , G. M. 2004 . Composite mesostructures by nano-confinement . Nature Mater. , 3 : 816 – 822 .
  • Schönhals , A. , Goering , H. , Schick , C. , Frick , B. and Zorn , R. 2004 . Glass transition of polymers confined to nanoporous glasses . Colloid Polym. Sci. , 282 : 882 – 891 .
  • Mattea , C. , Fatkullin , N. , Fischer , E. , Beginn , U. , Anoardo , E. , Kroutieva , M. and Kimmich , R. 2004 . The “corset effect” of spin-lattice relaxation of polymer melts confined in nanoporous media . Appl. Magn. Res. , 27 : 371 – 381 .
  • Hu , Z. , Baralia , G. , Bayot , V. , Gohy , J. F. and Jonas , A. M. 2005 . Nanoscale control of polymer crystallization by nanoimprint lithography . Nano Lett. , 5 : 1738 – 1743 .
  • Zheng , R. K. , Chan , H. L. W. and Choy , C. L. 2005 . A simple template-based hot-press method for the fabrication of metal and polymer nanowires and nanotubes . Nanotechnology , 16 : 1928 – 1934 .
  • Steinhart , M. , Göring , P. , Dernaika , H. , Prabhukaran , M. and Gösele , U. 2006 . Coherent kinetic control over crystal orientation in macroscopic ensembles of polymer nanorods and nanotubes . Phys. Rev. Lett. , 97 : 027801-1 – 027801-4 .
  • Shin , K. , Obukhov , S. , Chen , J.-T. , Huh , J. , Hwang , Y. , Mok , S. , Dobriyal , P. , Thiyagarajan , P. and Russell , T. P. 2007 . Enhanced mobility of confined polymers . Nature Mater. , 6 : 961 – 965 .
  • Sun , C.-L. , Lam , K. H. , Chao , C. , Lau , S. T. , Chan , H. L. W. , Guo , S. and Zhao , X. 2007 . Fabrication and characterization of Ni/P(VDF-TrFE) nanoscaled coaxial cables . Appl. Phys. Lett. , 90 : 253107 – 1253107 .
  • Kausik , R. , Fatkullin , N. , Hűsing , N. and Kimmich , R. 2007 . Investigations of polymer dynamics in nanoporous media by field cycling NMR relaxometry and the dipolar correlation effect . Magn. Res. Imag. , 25 : 489 – 492 .
  • Steinhart , M. 2008 . Supramolecular organization of polymeric materials in nanoporous hard templates . Adv. Polym. Sci. , 220 : 123 – 187 .
  • Duran , H. , Gitsas , A. , Floudas , G. , Mondeshki , M. , Steinhart , M. and Knoll , W. 2009 . Poly(γ-benzyl-L-glutamate) peptides confined to nanoporous alumina: Pore diameter dependence of self-assembly and segmental dynamics . Macromolecules , 42 : 2881 – 2885 .
  • Li , J. H. , Lu , S. G. , Lin , M. , Greuß , M. and Zhang , Q. M. 2009 . Evolution of relaxor ferroelectric behavior of poly(vinylidene fluoride trifluoroethylene chlorofluoroethylene) terpolymer nanorods . Appl. Phys. Lett. , 95 : 022911-1 – 022911-3 .
  • Killgore , J. , Kocherlakota , L. S. and Overney , R. M. 2010 . Enhanced mobility and increased gas sorption capacity in thin film and nanoconduit confined polymers . J. Polym. Sci. B , 48 : 434 – 441 .
  • Karagiovanaki , S. , Koutsioubas , A. , Spiliopoulos , N. , Anastassopoulos , D. L. , Vradis , A. A. , Toprakcioglu , C. and Siokou , A. E. 2010 . Adsorption of block copolymers in nanoporous alumina . J. Polym. Sci. B , 48 : 1676 – 1682 .
  • Li , W. , Meng , Q. , Zheng , Y. , Hang , Z. , Xia , W. and Xu , Z. 2010 . Electric energy storage properties of poly(vinylidene fluoride) . Appl. Phys. Lett. , 96 : 192905-1 – 192905-3 .
  • Lovinger , A. J. 1980 . Crystallization and morphology of melt-solidifiedpoly (vinylidene fluoride) . J. Polym. Sci. B , 18 : 793 – 809 . and references therein
  • Weinhold , S. , Litt , H. M. and Lando , J. B. 1980 . The crystal structure of the γ phase of poly(vinylidene fluoride) . Macromolecules , 13 : 1178 – 1183 .
  • Esterly , D. M. and Love , B. J. 2004 . Phase transformation to β poly(vinylidene fluoride) by milling . J. Polym. Sci. B , 42 : 91 – 97 .
  • Tashiro , K. 1995 . “ Crystal structure and phase transition of PVDF and related copolymers ” . In Ferroelectric Polymers , Edited by: Nalwa , H. S. 65 – 69 . New York : Marcel Dekker .
  • Boccaccio , T. , Bottino , A. , Capannelli , G. and Piaggio , P. 2002 . Characterization of PVDF membranes by vibrational spectroscopy . J. Membrane Sci. , 210 : 315 – 329 .
  • Samara , G. A. and Bauer , F. 1995 . The role of high pressure in the study and applications of ferroelectric polymer polyvinylidene fluoride and its copolymers . Ferroelectrics , 171 : 299 – 311 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.