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PMID: 24245306 已发表 · ppublish 英语

Copolymerization of electroactive poly(benzyl ether) dendrimer and terthiophene monomer.

Journal of nanoscience and nanotechnology ·第 13 卷 ·第 11 期 ·2013-12-12

Park Jin Young, Ponnapati Ramakrishna, Han Tae-Hee, Chang Sang-Mok, Advincula Rigoberto C

摘要

In this study, we report the copolymerization, film properties, and HOMO/LUMO levels of the first generation (G1) poly(benzyl ether) dendrimer functionalized on its periphery with terthiophene and terthiophene monomers. Pure G1 dendrimer (DN1), 1:1 and 1:18 molar ratios of the G1 dendrimer and the monomer (e.g., DNTT11 and DNTT118, respectively) are used to compare film formation and HOMO/LUMO levels. The conjugated polymer network (CPN) film obtained from the highest molar ratio of terthiophene monomers shows smooth film formation. Addition of the terthiophene monomer for electrochemical cross-linking controls the surface morphology and the tunability of energy levels of the CPN films. Furthermore, in situ electrochemical quartz crystal microbalance (EQCM) measurements are performed to characterize frequency change (corresponding to mass change) per sweep cycle and relative viscoelastic properties through resonant resistance-resonant frequency (R-F) diagram during the formation of each CPN film. The DN1 film has relatively higher eleastic film and mass loading on the QCM surface than the copolymeried DNTT11 and DNTT118 films. Furthermore, the addition of terthiophene monomers increases the viscosity of the film due to the effect of introducing linear species on the CNP film formation in solution. Thus, the copolymerization of eletroactive dendrimers with the same electroactive monomers enables control on surface morphological features and energy bandgap for future optoelectronic device applications and physical properties (i.e., viscoelasticity) of the films.

文献信息
期刊
Journal of nanoscience and nanotechnology
期刊简称
J Nanosci Nanotechnol
发表日期
2013-12-12
收录日期
2013-11-19
更新日期
2013-11-19
语言
英语
国家/地区
United States
NLM ID
101088195
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