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Five novel near-infrared electrochromic aromatic polyimides(PIs) with pendent benzimidazole group were synthesized from 4,4'-diamino-4'-(1-benzylbenzimidazol-2-yl)triphenylamine(named as DBBT) with five different dianhydrides via two-step polymerization process, respectively. The maximum UV-Vis absorption bands of these PIs locate at about 335 nm for solid films due to the π-π* transitions. A reversible pair of distinct redox peaks, that were associated with a noticeable color change from original yellow to blue, was observed in the cyclic voltammetry(CV) test. A new absorption peak emerged at 847 nm in near-infrared(NIR) region with increasing voltage in UV-Vis-NIR spectrum, which indicates that PI can be used as NIR electrochromic material. These novel PIs have good electrochemical stability, appropriate energy levels for the highest occupied molecular orbital(HOMO) and the lowest unoccupied molecular orbital(LUMO), in the range of-5.17 e V to-5.20 e V and-2.14 e V to-2.26 e V(versus the vacuum level) determined by cyclic voltammetry method. These values basically consisted with the results of quantum chemical calculation. These polyimides can be used as novel electrochromic and hole transportation materials. 相似文献
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以(S)-(-)-1-苯乙胺为拆分剂对外消旋的α-羟基酸进行拆分, 得到手性α-羟基酯4, 再与尿素合环、脱甲基保护, 得到关键的手性中间体(R)-(+)-5-甲基-5-(4-羟基苄基)-2,4-噁唑烷二酮(6). 将化合物6与甲磺酸酯(8)缩合即得具有全新化学结构的标题化合物9 (ee值100%), 其结构经1 H NMR和HRMS确证. 根据拆分盐3的单晶X射线衍射分析结果及由α-羟基酯4与尿素合环生成噁唑烷二酮的反应机理, 确定标题化合物9的绝对构型为R. 相似文献
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石墨烯/碳纳米管复合材料的制备及应用进展 总被引:4,自引:0,他引:4
石墨烯和碳纳米管都是纳米尺寸的碳材料,具有极大的比表面积、良好的导电性以及优秀的机械性能等特性.选择合适的方法制备出石墨烯/碳纳米管复合材料,它们之间可以产生一种协同效应,使其各种物理化学性能得到增强,因而这种复合材料在很多领域有着极大的应用前景.以石墨烯/碳纳米管复合材料为综述对象,详细地介绍了它的制备、掺杂和应用等方面的进展,同时也对其发展前景进行了展望.这种复合材料不仅被成功地应用在电容器、光电器件、储能电池、电化学传感器和其它领域,而且也会在这些领域内深化并向其它领域延伸. 相似文献