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Thiadiazolo[3,4-c]pyridine as an Acceptor toward Fast-Switching Green Donor-Acceptor-Type Electrochromic Polymer with Low Bandgap

机译:噻二唑[3,4-c]吡啶作为低带隙快速转换绿色供体-受体型电致变色聚合物的受体

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Thiadiazolo[3,4-c]pyridine (PT), an important analog of benzothiadiazole (BT), has most recently been explored as a novel electron acceptor. It exhibits more electron-accepting ability and other unique properties and potential advantages over BT, thus inspiring us to investigate PT-based donoracceptor-type (DA) conjugated polymer in electrochromics. Herein, PT was employed for the rational design of novel donoracceptor-type systems to yield a neutral green electrochromic polymer poly(4,7-di(2,3-dihydrothieno[3,4-b][1,4]dioxin-5-yl)-[1,2,5] thiadiazolo[3,4-c]pyridine) (PEPTE). PEPTE revealed a lower bandgap (E-g,E-ele = 0.85 eV, E-g,E-opt = 1.12 eV) than its BT analog and also favorable redox activity and stability. Furthermore, electrochromic kinetic studies demonstrated that PEPTE displayed higher coloration efficiency than BT analog, good optical memory, and very fast switching time (0.3 s at all three wavelengths), indicating that PT would probably be a promising choice for developing novel neutral green electrochromic polymers by matching with various donor units.
机译:噻二唑并[3,4-c]吡啶(PT)是苯并噻二唑(BT)的重要类似物,最近已被研究用作新型电子受体。它具有比BT更高的电子接受能力和其他独特的性能以及潜在的优势,因此启发了我们研究电致变色材料中基于PT的供体受体型(DA)共轭聚合物。在这里,PT被用于新型供体受体类型系统的合理设计,以产生中性绿色电致变色聚合物聚(4,7-di(2,3-dihydrothienono [3,4-b] [1,4] dioxin-5 -基)-[1,2,5]噻二唑并[3,4-c]吡啶)(PEPTE)。 PEPTE显示出比其BT类似物更低的带隙(E-g,E-ele = 0.85 eV,E-g,E-opt = 1.12 eV),并且还具有良好的氧化还原活性和稳定性。此外,电致变色动力学研究表明,PEPTE显示出比BT类似物更高的着色效率,良好的光学记忆性和非常快的切换时间(在所有三个波长下均为0.3 s),表明PT可能是开发新型中性绿色电致变色聚合物的有前途的选择通过与各种捐助单位匹配。

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