Synthesis, characterization and optical properties of fluorinated poly(aryl ether)s containing phthalazinone moieties
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Yuan Song | Xigao Jian | X. Jian | Jie Teng | J. Teng | Hongbo Zhang | Jinyan Wang | Jinyan Wang | Guanghui Li | Qingmin Sun | Hongbo Zhang | Guanghui Li | Yuan Song | Qingmin Sun
[1] Hwan-Kyu Kim,et al. Novel photocurable multifunctional acrylate monomers containing perfluorinated aromatic units and their copolymers for photonic applications , 2004 .
[2] Jae‐Suk Lee,et al. Synthesis of Highly Fluorinated Poly(arylene ether sulfide) for Polymeric Optical Waveguides , 2006 .
[3] John Ballato,et al. Perfluorocyclobutyl Copolymers for Microphotonics , 2002 .
[4] Larry R. Dalton,et al. Polymer-based optical waveguides: Materials, processing, and devices , 2002 .
[5] Jia Jiang,et al. Cross-linkable highly fluorinated poly(arylene ether ketones/sulfones) for optical waveguiding applications , 2005 .
[6] A. Jen,et al. Highly Fluorinated and Crosslinkable Dendritic Polymer for Photonic Applications , 2004 .
[7] C. Teng,et al. Precision measurements of the optical attenuation profile along the propagation path in thin-film waveguides. , 1993, Applied optics.
[8] X. Jian,et al. Synthesis, characterization and optical properties of cross-linkable poly(phthalazinone ether ketone sulfone) , 2008 .
[9] Chengde Liu,et al. Lyotropic liquid crystalline poly(aryl ether ketone) copolymer containing phthalazinone moiety and biphenyl mesogen , 2007 .
[10] Jae-Wook Kang,et al. Structure-property relationship of fluorinated co-poly(arylene ether sulfide)s and co-poly(arylene ether sulfone)s for low-loss and low-birefringence waveguide devices , 2005 .
[11] Larry R. Dalton,et al. A Hyperbranched Aromatic Fluoropolyester for Photonic Applications , 2003 .
[12] Haksoo Han,et al. Nanoindentation and optical properties of poly(4,4′‐oxydiphenylene p‐phenylene pyromellitimide) copolyimide thin films according to the p‐phenylene diamine content , 2004 .
[13] Min-Cheol Oh,et al. Crosslinkable polymers for optical waveguide devices. II. Fluorinated ether ketone oligomers bearing ethynyl group at the chain end , 1999 .
[14] C. Callender,et al. Cross-linkable highly halogenated poly(arylene ether ketone/sulfone)s with tunable refractive index: Synthesis, characterization and optical properties , 2006 .
[15] Chengde Liu,et al. Synthesis and properties of lyotropic liquid crystalline copolyamides containing phthalazinone moiety and ether linkages , 2005 .
[16] H. Allcock,et al. Controlled refractive index polymers: Polyphosphazenes with chlorinated- and fluorinated-, aryloxy- and alkoxy- side-groups , 2003 .
[17] Eunkyoung Kim,et al. Low Optical Loss Perfluorinated Methacrylates for a Single-Mode Polymer Waveguide , 2005 .
[18] Jang‐Joo Kim,et al. Low-loss and thermally stable TE-mode selective polymer waveguide using photosensitive fluorinated polyimide , 2002 .
[19] X. Jian,et al. Soluble aromatic poly(ether amide)s containing aryl‐, alkyl‐, and chloro‐substituted phthalazinone segments , 2004 .
[20] Jang‐Joo Kim,et al. Optical Properties of Perfluorocyclobutane Aryl Ether Polymers for Polymer Photonic Devices , 2004 .
[21] Richard R. Barto,et al. Highly fluorinated trifluorovinyl aryl ether monomers and perfluorocyclobutane aromatic ether polymers for optical waveguide applications , 2003 .
[22] C. Callender,et al. A Low Temperature Polycondensation for the Preparation of Highly Fluorinated Poly(arylene ether sulfone)s Containing Crosslinkable Pentafluorostyrene Moieties , 2005 .
[23] Jia Jiang,et al. Optimizing fluorinated poly(arylene ether)s for optical waveguide applications , 2006 .
[24] M. Oubaha,et al. Sol–Gel Derived Organic and Inorganic Hybrid Materials for Photonic Applications: Contribution to the Correlation Between the Material Structure and the Transmission in the Near Infrared Region , 2005 .
[25] S. Ando,et al. Polyimides Derived from 2,2'-Bis(trifluoromethyl)-4,4'-diaminobiphenyl. 4. Optical Properties of Fluorinated Polyimides for Optoelectronic Components , 1994 .
[26] Xigao Jian,et al. Poly(phthalazinone ether sulfone ketone) (PPESK) hollow fiber asymmetric nanofiltration membranes: Preparation, morphologies and properties , 2006 .
[27] Kun Jin,et al. Synthesis and characterization of a fluorinated phthalazinone monomer 4-(2-fluoro-4-hydroxyphenyl)-phthalazin-1(2H)-one and its polymers from polycondensation reactions , 2003 .
[28] Masahiro Yoshida,et al. Optical material of high refractive index resin composed of sulfur-containing aromatic methacrylates , 2000 .
[29] M. Soucek,et al. Dual‐curable unsaturated polyester inorganic/organic hybrid films , 2006 .
[30] C. Blanchetiere,et al. Arrayed waveguide gratings based on perfluorocyclobutane polymers for CWDM applications , 2006, IEEE Photonics Technology Letters.
[31] L. Eldada,et al. Advances in polymer integrated optics , 2000, IEEE Journal of Selected Topics in Quantum Electronics.
[32] Haksoo Han,et al. Synthesis and characterization of soluble polyimides containing trifluoromethyl groups in their backbone , 2004 .
[33] C. Callender,et al. Highly Fluorinated Poly(arylene alkylene ether sulfone)s: Synthesis and Thermal Properties† , 2007 .
[34] Alex K.-Y. Jen,et al. A Novel Class of High-Performance Perfluorocyclobutane-Containing Polymers for Second-Order Nonlinear Optics , 2000 .
[35] Woon-Seop Choi,et al. Synthesis and polymerization of trifluorovinylether-terminated imide oligomers. I , 2000 .
[36] Anders Hult,et al. Low-Loss Passive Optical Waveguides Based on Photosensitive Poly(pentafluorostyrene-co-glycidyl methacrylate) , 1999 .