New PDF release: Conjugated Polyelectrolytes: Fundamentals and Applications

By Bin Liu, Guillermo C. Bazan

ISBN-10: 3527331433

ISBN-13: 9783527331437

ISBN-10: 3527655700

ISBN-13: 9783527655700

Content material:
Chapter 1 layout and Synthesis of Conjugated Polyelectrolytes (pages 1–64): Kan?Yi Pu, Guan Wang and Prof. Bin Liu
Chapter 2 All?Conjugated Rod–Rod Diblock Copolymers Containing Conjugated Polyelectrolyte Blocks (pages 65–89): Ullrich Scherf, Rachel C. Evans, Andrea Gutacker and Prof. Guillermo C. Bazan
Chapter three Ionically Functionalized Polyacetylenes (pages 91–126): Stephen G. Robinson and Mark C. Lonergan
Chapter four Aggregation houses of Conjugated Polyelectrolytes (pages 127–167): Hugh D. Burrows, Matti Knaapila, Sofia M. Fonseca and Telma Costa
Chapter five Sensing through Quenching of Conjugated Polyelectrolyte Fluorescence (pages 169–200): Danlu Wu, Jie Yang, Fude Feng and Kirk S. Schanze
Chapter 6 Sensing purposes through power move from Conjugated Polyelectrolytes (pages 201–229): Fengting Lv, Shu Wang and Prof. Guillermo C. Bazan
Chapter 7 Sensing through Conformational alterations of Conjugated Polythiophenes (pages 231–261): Even J. Lemieux and Mario Leclerc
Chapter eight Conjugated Polyelectrolyte?Based Biocide functions (pages 263–294): Thomas S. Corbitt, Eunkyung Ji, Ying Wang, Anand Parthasarathy, Kristin N. Wilde, Eric H. Hill, Dimitri Dascier, Heather E. Canavan, Eva Y. Chi, Kirk S. Schanze and David G. Whitten
Chapter nine Conjugated Polyelectrolyte?Based Imaging and tracking of Protein Aggregation (pages 295–314): okay. Peter R. Nilsson and in line with Hammarstrom
Chapter 10 cost Injection Mechanism in PLEDs and cost delivery in Conjugated Polyelectrolytes (pages 315–344): Peter Zalar and Thuc?Quyen Nguyen
Chapter eleven natural Optoelectronic units Containing Water/Alcohol?Soluble Conjugated Polymers and Conjugated Polyelectrolytes* (pages 345–388): Sujun Hu, Chengmei Zhong, Hongbin Wu and Yong Cao
Chapter 12 Optical procedures in Conjugated Polyelectrolytes Dependence on Chain Conformation and picture Morphology (pages 389–410): Giuseppina velocity and Richard good friend

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Extra resources for Conjugated Polyelectrolytes: Fundamentals and Applications

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Uorene-2,7-diyl)-bis-(4,4,5,5-tetramethyl-1,3,2-dioxaborolane) under modified Suzuki reaction conditions using cesium fluoride (CsF) and tetrabutylammonium fluoride (TBAF) as the base to yield a neutral polymer, which was followed by hydrolysis to afford P80. 31). 2 Poly(arylene)s Br Br t-butylacrylate Br 29 Br toluene/KOH 35 O O O O O B B O 62 O 62 n O (i) Pd(PPh)4/K2CO3, toluene/H2O (ii) CF3COOH/DCM O (iii) aq. Na2CO3 O ONa O O O B B O ONa O B O B O 62 [Pd(dppf)Cl2]/KOAc dioxane O O O O 63 O (i) Pd(PPh)4/K2CO3 62 n 63 + (ii) CF3COOH/DCM (iii) aq.

38) [52]. The ester-protected diiodo monomer (77) was synthesized in two steps from 32. Then, 77 was reacted with trimethylsilyl acetylene in the presence of (Ph3 P)2 PdCl2 /CuI, which was followed by trimethylsilyl deprotection in a basic solution to afford the diacetylene monomer 78. Copolymerization between 77 and 78 under the Sonagashira reaction conditions yielded the neutral precursor P93, which underwent hydrolysis to give P94. Copolymerization between 77 and other diacetylene monomers followed by base treatment yielded the alternating carboxylated poly(phenylene ethynylene)s P95–P97 [53, 117].

5 BrMe3N(H2C)6 O O BrMe3N n (CH2)6NMe3Br O N O NMe3Br P68 O BrMe3N Structures of cationic polyfluorenes (P66–P69). 25 y n Synthesis of cationic polyfluorenes (P70) and (P71). Another approach to yield sulfonated polyfluorenes was demonstrated by Cao’s group [43]. 29). Polymerization between 60 and 1,4-phenyldiboronic acid in the presence of Pd(OAc)2 and NaCO3 in DMF/water yielded P79 with good water solubility. 26 Br O (i) Pd(PPh3)4/K2CO3, THF/H2O n O (CH2)6NMe3Br (ii) NMe3/THF/H2O O Br(H2C)6 BrMe3N(H2C)6 (CH2)6NMe3Br 51 Synthesis of a cationic polyfluorene (P72).

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Conjugated Polyelectrolytes: Fundamentals and Applications by Bin Liu, Guillermo C. Bazan


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