首页> 外文期刊>Journal of Applied Polymer Science >alpha-Thiophene end-capped styrene copolymer containing fullerene pendant moieties: Synthesis, characterization, and gas sensing properties
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alpha-Thiophene end-capped styrene copolymer containing fullerene pendant moieties: Synthesis, characterization, and gas sensing properties

机译:含富勒烯侧基的α-噻吩封端的苯乙烯共聚物:合成,表征和气敏特性

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摘要

We report the synthesis, characterization, and gas sensing properties of a styrene copolymer bearing -thiophene end group and fullerene (C-60) pendant moieties P(S-co-CMS-C-60). First, the copolymer of styrene (S) and chloromethylstyrene (CMS) monomers was prepared in bulk via a bimolecular nitroxide-mediated radical polymerization (NMP) technique using benzoyl peroxide (BPO) as the radical initiator and nitroxy-functional thiophene compound (Thi-TEMPO) as the co-radical and this gave -thiophene end-capped copolymer P(S-co-CMS). The chloromethylstyrene units of P(S-co-CMS) allowed further side-chain functionalization onto P(S-co-CMS). The obtained P(S-co-CMS) was then reacted with sodium azide (NaN3) and this led to the copolymer with pendant azide groups, P(S-co-CMS-N-3), and then grafted with electron-acceptor C-60 via the reaction between N-3 and C-60. The final product was characterized by using NMR, FTIR, and UV-vis methods. Electrical characterization of P(S-co-CMS-C-60) thin film was also investigated at between 30 and 100 degrees C as the ramps of 10 degrees C. Temperature dependent electrical characterization results showed that P(S-co-CMS-C-60) thin film behaves like a semiconductor. Furthermore, P(S-co-CMS-C-60) was employed as the sensing layer to investigate triethylamine (TEA), hydrogen (H-2), acetone, and ethanol sensing properties at 100 degrees C. The results revealed that P(S-co-CMS-C-60) thin film has a sensing ability to H-2. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43641.
机译:我们报告的合成,表征,和气敏性能的苯乙烯共聚物轴承-噻吩端基和富勒烯(C-60)侧基P(S-co-CMS-C-60)。首先,采用双分子氮氧化物介导的自由基聚合(NMP)技术,使用过氧化苯甲酰(BPO)作为自由基引发剂和硝基氧基官能的噻吩化合物(Thi-),批量制备苯乙烯(S)和氯甲基苯乙烯(CMS)单体的共聚物TEMPO)作为共自由基,得到-噻吩封端的共聚物P(S-co-CMS)。 P(S-co-CMS)的氯甲基苯乙烯单元可进一步将侧链官能化到P(S-co-CMS)上。然后将获得的P(S-co-CMS-N)与叠氮化钠(NaN3)反应,生成具有叠氮化物侧基的共聚物P(S-co-CMS-N-3),然后将其与电子受体接枝C-60通过N-3与C-60之间的反应生成。通过使用NMR,FTIR和UV-vis方法表征最终产物。还研究了P(S-co-CMS-C-60)薄膜的电特性,该温度在30到100摄氏度之间以10摄氏度的斜率变化。与温度相关的电特性结果表明,P(S-co-CMS-C-60)薄膜C-60)薄膜的行为类似于半导体。此外,以P(S-co-CMS-C-60)作为传感层,研究了在100摄氏度下三乙胺(TEA),氢(H-2),丙酮和乙醇的传感性能。结果表明,P (S-co-CMS-C-60)薄膜具有对H-2的感测能力。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43641。

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