223
Views
8
CrossRef citations to date
0
Altmetric
Original Articles

Luminescent lanthanide-containing chiral liquid crystalline polymers in the side chain

, , &
Pages 1762-1772 | Received 13 Jun 2014, Accepted 28 Jul 2014, Published online: 02 Sep 2014

References

  • Lenaerts P, Driesen K, Van Deun R, Binnemans K. Covalent coupling of luminescent tris (2-thenoyltrifluoroacetonato) lanthanide (III) complexes on a Merrifield resin. Chem Mater. 2005;17:2148–2154.
  • Yan B, Lu H-F. Lanthanide-centered covalently bonded hybrids through sulfide linkage: molecular assembly, physical characterization, and photoluminescence. Inorg Chem. 2008;47:5601–5611. doi:10.1021/ic7021825.
  • Parker D. Luminescent lanthanide sensors for pH, pO2 and selected anions. Coord Chem Rev. 2000;205:109–130. doi:10.1016/S0010-8545(00)00241-1.
  • Capecchi S, Renault O, Moon DG, Halim M, Etchells M, Dobson PJ, Salata OV, Christou V. High-efficiency organic electroluminescent devices using an organoterbium emitter. Adv Mater. 2000;12:1591–1594. doi:10.1002/1521-4095(200011)12:21<1591::AID-ADMA1591>3.0.CO;2-P.
  • Caravan P, Ellison JJ, McMurry TJ, Lauffer RB. Gadolinium (III) chelates as MRI contrast agents: structure, dynamics, and applications. Chem Rev. 1999;99:2293–2352. doi:10.1021/cr980440x.
  • Viana B, Koslova N, Aschehoug P, Sanchez C. Optical properties of neodymium and dysprosium doped hybrid siloxane–oxide coatings. J Mater Chem. 1995;5:719–724. doi:10.1039/jm9950500719.
  • Matthews L, Knobbe ET. Luminescence behavior of europium complexes in sol–gel derived host materials. Chem Mater. 1993;5:1697–1700. doi:10.1021/cm00036a005.
  • Kuriki K, Koike Y, Okamoto Y. Plastic optical fiber lasers and amplifiers containing lanthanide complexes. Chem Rev. 2002;102:2347–2356. doi:10.1021/cr010309g.
  • Lira CA, Flores M, Arroyo R, Caldiño U. Optical spectroscopy of er3+ ions in poly (acrylic acid). Opt Mater. 2006;28:1171–1177. doi:10.1016/j.optmat.2005.08.001.
  • Bekiari V, Pistolis G, Lianos P. Intensely luminescent materials obtained by combining lanthanide ions, 2, 2ʹ-bipyridine, and poly (ethylene glycol) in various fluid or solid environments. Chem Mater. 1999;11:3189–3195. doi:10.1021/cm991059b.
  • Wang L-H, Wang W, Zhang W-G, Kang E-T, Huang W. Synthesis and luminescence properties of novel Eu-containing copolymers consisting of Eu (III)-acrylate-β-diketonate complex monomers and methyl methacrylate. Chem Mater. 2000;12:2212–2218. doi:10.1021/cm000158i.
  • Yang CY, Srdanov V, Robinson MR, Bazan GC, Heeger AJ. Orienting Eu(dnm)3phen by tensile drawing in polyethylene: polarized eu3+ emission. Adv Mater. 2002;14:980–983. doi:10.1002/1521-4095(20020704)14:13/14<980::AID-ADMA980>3.0.CO;2-W.
  • Yan B, You J-Y. In situ sol–gel composition of luminescent hybrid material incorporated with terbium coordination polymers. J Mater Process Technol. 2005;170:363–366. doi:10.1016/j.jmatprotec.2005.06.001.
  • Kłonkowski AM, Lis S, Pietraszkiewicz M, Hnatejko Z, Czarnobaj K, Elbanowski M. Luminescence properties of materials with Eu (III) complexes: role of ligand, coligand, anion, and matrix. Chem Mater. 2003;15:656–663. doi:10.1021/cm0202557.
  • Xin H, Ebina Y, Ma R, Takada K, Sasaki T. Thermally stable luminescent composites fabricated by confining rare earth complexes in the two-dimensional gallery of titania nanosheets and their photophysical properties. J Phys Chem B. 2006;110:9863–9868. doi:10.1021/jp061427g.
  • Van Deun R, Moors D, De Fré B, Binnemans K. Near-infrared photoluminescence of lanthanide-doped liquid crystals. J Mater Chem. 2003;13:1520–1522. doi:10.1039/b305158g.
  • Voigt M, Chambers M, Grell M. Circularly polarized emission from a narrow bandwidth dye doped into a chiral nematic liquid crystal. Liq Cryst. 2002;29:653–656. doi:10.1080/02678290210126077.
  • Driesen K, Binnemans K. Temperature-driven luminescence switching of europium(III) in a glass dispersed liquid crystal film. Liq Cryst. 2004;31:601–605. doi:10.1080/02678290410001667399.
  • Rao NVS, Paul MK, Rao TR, Prasad A. The synthesis of liquid crystalline lanthanide complexes of Schiff’s base ligands: N -(4- N -alkoxysalicylidene)-4′- N -alkylanilines. Liq Cryst. 2002;29:1243–1246. doi:10.1080/02678290210155615.
  • Binnemans K, Görller-Walrand C. Lanthanide-containing liquid crystals and surfactants. Chem Rev. 2002;102:2303–2346. doi:10.1021/cr010287y.
  • Galyametdinov YG, Malykhina LV, Haase W, Driesen K, Binnemans K. Luminescent lanthanide complexes with liquid crystalline properties. Liq Cryst. 2002;29:1581–1584. doi:10.1080/0267829021000034826.
  • Yan B, Wang Q-M. In situ composition and luminescence of terbium coordination polymers/PEMA hybrid thick films. Opt Mater. 2004;27:533–537. doi:10.1016/j.optmat.2004.06.002.
  • Ribera D, Mantecón A, Serra A. Synthesis and crosslinking of a series of dimeric liquid crystalline epoxy resins containing imine mesogens. Macromol Chem Phys. 2001;202:1658–1671. doi:10.1002/1521-3935(20010601)202:9<1658::AID-MACP1658>3.0.CO;2-0.
  • Hsu CS, Chen HL. Preparation of liquid-crystal thermosets: in situ photopolymerization of oriented liquid-crystal diacrylates. J Polym Sci, Part A: Polym Chem. 1999;37:3929–3935. doi:10.1002/(SICI)1099-0518(19991101)37:21<3929::AID-POLA8>3.0.CO;2-9.
  • Callau L, Reina JA, Mantecón A. Synthesis and crosslinking of vinyl-terminated biphenyl and naphthalene liquid-crystalline poly(epichlorohydrin) derivatives: effect of nonmesogenic nonvinylic units on the mesogenic properties. J Polym Sci, Part A: Polym Chem. 2002;40:3893–3908. doi:10.1002/pola.10445.
  • Hu J-S, Zhang B-Y, Jia Y, Chen S. Side-chain cholesteric liquid crystalline elastomers derived from a mesogenic cross-linking agent. Macromolecules. 2003;36:9060–9066. doi:10.1021/ma034915k.
  • Andreu R, Espinosa M, Galià M, Cádiz V, Ronda J, Reina J. Synthesis of novel benzoxazines containing glycidyl groups: a study of the crosslinking behavior. J Polymer Sci A: Polymer Chem. 2006;44:1529–1540. doi:10.1002/pola.21255.
  • Oriol L, Piñol M, Serrano J, Martı́nez C, Alcalá R, Cases R, Sánchez C. Synthesis and characterization of reactive liquid crystals and polymers based on terphenyl derivatives. Polymer. 2001;42:2737–2744. doi:10.1016/S0032-3861(00)00699-6.
  • Gopalan P, Andruzzi L, Li X, Ober CK. Fluorinated mesogen-jacketed liquid-crystalline polymers as surface-modifying agents: design, synthesis and characterization. Macromol Chem Phys. 2002;203:1573–1583. doi:10.1002/1521-3935(200207)203:10/11<1573::AID-MACP1573>3.0.CO;2-Z.
  • Adam D, Schuhmacher P, Simmerer J, Häussling L, Siemensmeyer K, Etzbachi K, Ringsdorf H, Haarer D. Fast photoconduction in the highly ordered columnar phase of a discotic liquid crystal. Nature. 1994;371:141–143. doi:10.1038/371141a0.
  • Grell M, Bradley DD. Polarized luminescence from oriented molecular materials. Adv Mater. 1999;11:895–905. doi:10.1002/(SICI)1521-4095(199908)11:11<895::AID-ADMA895>3.0.CO;2-Y.
  • O’Neill M, Kelly SM. Liquid crystals for charge transport, luminescence, and photonics. Adv Mater. 2003;15:1135–1146. doi:10.1002/adma.200300009.
  • Bacher A, Bleyl I, Erdelen CH, Haarer D, Paulus W, Schmidt HW. Low molecular weight and polymeric triphenylenes as hole transport materials in organic two-layer LEDs. Adv Mater. 1997;9:1031–1035. doi:10.1002/adma.19970091307.
  • Hu JS, Zhang BY, Zhou AJ, Dong YL, Zhao ZX. Preparation and phase behavior of side-chain cholesteric liquid-crystalline elastomers. J Polym Sci, Part A: Polym Chem. 2005;43:3315–3323. doi:10.1002/pola.20784.
  • Gebhard E, Zentel R. Ferroelectric liquid crystalline elastomers, 1. Variation of network topology and orientation. Macromol Chem Phys. 2000;201:902–910. doi:10.1002/(SICI)1521-3935(20000501)201:8<902::AID-MACP902>3.0.CO;2-9.
  • Hirschmann H, Roberts P, Davis F, Guo W, Hasson C, Mitchell G. Liquid crystalline elastomers: the relationship between macroscopic behaviour and the level of backbone anisotropy. Polymer. 2001;42:7063–7071. doi:10.1016/S0032-3861(01)00135-5.
  • Hiraoka K, Stein P, Finkelmann H. Electromechanics of a chiral smectic C elastomer: measurement of complex piezoelectric constant through successive phase transformations. Macromol Chem Phys. 2004;205:48–54. doi:10.1002/macp.200300007.
  • Sapich B, Stumpe J, Krawinkel T, Kricheldorf HR. New polymer syntheses 95. Photosetting cholesteric polyesters derived from 4-hydroxycinnamic acid and isosorbide. Macromolecules. 1998;31:1016–1023. doi:10.1021/ma971027e.
  • Zhang B-Y, Hu J-S, Wang B, Yao D, Li H. Synthesis and characterization of side-chain cholesteric elastomers derived from an isosorbide crosslinking agent. Colloid Polym Sci. 2007;285:1683–1690. doi:10.1007/s00396-007-1742-5.
  • Taylor M, Carter C. Preparation of anhydrous lanthanide halides, especially iodides. J Inorg Nucl Chem. 1962;24:387–391. doi:10.1016/0022-1902(62)80034-7.
  • Li B, Liu Y, Zhi Z, Shen D, Lu Y, Zhang J, Fan X. The photoluminescence of ZnO thin films grown on Si (100) substrate by plasma-enhanced chemical vapor deposition. J Cryst Growth. 2002;240:479–483. doi:10.1016/S0022-0248(02)00929-6.

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.