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Electrochromism Properties of Polyimides Possessing Triphenylamine Moieties with Different Substituents

机译:具有取代基的三苯胺部分的聚酰亚胺的电致变色特性

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Two diamine monomers with methyl (CH3TPA) and methoxy (OCH3TPA) group substituents in the para position of the triphenylamine (TPA) moiety were synthesized by nucleophilic aromatic substitution using 4-fluoronitrobenzene with p-toluidine and p-anisidine, respectively. From these diamine monomers, electroactive polyimides (PI)s were prepared by the chemical imidization of poly(amic acid) solutions, which were prepared with 4,4 '-oxydiphthalic anhydride (ODPA). H-1 nuclear magnetic resonance and Fourier transform infrared spectroscopy confirmed that both PIs had been synthesized successfully. The measured inherent viscosity for ODPA-CH3TPA PI and ODPA-OCH3TPA PI was 0.42 and 0.49 dL/g, respectively. The glass transition temperatures for ODPA-CH3TPA PI and ODPA-OCH3PDA PI were 236 degrees C and 238 degrees C, respectively, and the thermal degradation temperature of both PIs was above 390 degrees C. The band gaps of ODPA-CH3PDA and ODPA-OCH3PDA were 3.00 and 2.72eV, respectively. The oxidation onset potential E-ox of ODPA-CH3PDA PI and ODPA-OCH3PDA PI from cyclic voltammetry was 0.73V and 0.65V, respectively. The highest occupied molecular orbital and lowest unoccupied molecular orbital values differed according to the groups substituted into the triphenylamine moiety. After applying a voltage, the absorption peak intensity at 723nm and 752nm for ODPA-CH3TPA and ODPA-OCH3TPA, respectively, increased. The electrical properties varied according to the chemical structure of synthesized diamines.
机译:通过分别使用4-氟硝基苯与对甲苯胺和对苯胺的亲核芳族取代反应,合成了在三苯胺(TPA)部分对位具有甲基(CH3TPA)和甲氧基(OCH3TPA)取代基的两个二胺单体。由这些二胺单体通过聚酰亚胺酸溶液的化学酰亚胺化制备电活性聚酰亚胺(PI),该溶液是用4,4'-氧二邻苯二甲酸酐(ODPA)制备的。 H-1核磁共振和傅立叶变换红外光谱证实两个PI均已成功合成。所测得的ODPA-CH3TPA PI和ODPA-OCH3TPA PI的固有粘度分别为0.42和0.49dL / g。 ODPA-CH3TPA PI和ODPA-OCH3PDA PI的玻璃化转变温度分别为236摄氏度和238摄氏度,两个PI的热降解温度均高于390摄氏度。ODPA-CH3PDA和ODPA-OCH3PDA的带隙分别为3.00和2.72eV。循环伏安法测得的ODPA-CH3PDA PI和ODPA-OCH3PDA PI的氧化起始电位E-ox分别为0.73V和0.65V。最高占据的分子轨道和最低未占据的分子轨道值根据取代到三苯胺部分中的基团而不同。施加电压后,ODPA-CH3TPA和ODPA-OCH3TPA的吸收峰强度分别在723nm和752nm处增加。电特性根据合成的二胺的化学结构而变化。

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