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Nanofibers of Hydrogen-Bonded Two-Component Gel with Closely Connected p- and n-Channels and Photoinduced Electron Transfer

机译:氢键键合的双组分凝胶的纳米纤维,具有紧密连接的p通道和n通道以及光诱导的电子转移

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An D-A-D gelator (DTCQ) was designed and synthesized using 2,3-dimethyl-5,8-di(thiophen-2-yl)quinoxaline and N-alkyl 3-aminocarbazole units as acceptor and donor, respectively, which were linked by a single bond. The compound could gelate several solvents, such as benzyl alcohol, aniline, acetophenone, and o-dichlorobenzene, as well as self-assemble into one-dimensional (1D) nanofibers in gel phase. The absorption and infrared spectra of the gels indicated that pi-pi interactions between aromatic moieties, intermolecular hydrogen bonds between amide units, and van der Waals forces were the driving forces for the formation of 1D self-assemblies and gel. DTCQ gel was red and emits red fluorescence because it has a strong absorption band at 487 nm and an emissive band at 620 nm. Moreover, DTCQ and a fullerene carboxylic acid formed two-component gel, in which the two compounds developed a hydrogen bond complex and self-assembled into 1D nanofibers with closely connected p- and n-channels. The nanofibrous xerogel film can rapidly generate a photocurrent under visible-light radiation through electron transfer from the gelator to fullerene, and then, the excellent exciton separation and charge transfer to two electrodes.
机译:设计并合成了DAD胶凝剂(DTCQ),分别使用2,3-二甲基-5,8-二(噻吩-2-基)喹喔啉和N-烷基3-氨基咔唑单元作为受主和供体,单键。该化合物可以使几种溶剂凝胶化,例如苯甲醇,苯胺,苯乙酮和邻二氯苯,以及在凝胶相中自组装成一维(1D)纳米纤维。凝胶的吸收和红外光谱表明,芳族部分之间的pi-pi相互作用,酰胺单元之间的分子间氢键以及范德华力是形成一维自组装体和凝胶的驱动力。 DTCQ凝胶为红色并发出红色荧光,因为它在487 nm处具有很强的吸收带,在620 nm处具有发射带。此外,DTCQ和富勒烯羧酸形成了一种双组分凝胶,其中两种化合物形成了氢键络合物,并自组装成具有紧密连接的p通道和n通道的一维纳米纤维。纳米纤维干凝胶膜可以通过将电子从胶凝剂转移到富勒烯,从而在可见光辐射下快速产生光电流,然后将优异的激子分离和电荷转移到两个电极。

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