...
首页> 外文期刊>Solar Energy >Photoinduced electron transfer-catalyzed processes of sulfoamino perylene diimide under concentrated sun light
【24h】

Photoinduced electron transfer-catalyzed processes of sulfoamino perylene diimide under concentrated sun light

机译:浓阳光下磺胺基per二酰亚胺的光诱导电子转移催化过程

获取原文
获取原文并翻译 | 示例
           

摘要

A new water-soluble perylene diimide derivative, N,N′-bis(12-sulfoaminododecyl)-3,4,9,10-perylenetetracarboxdii-mide (SULFAPER), has been synthesized and characterized by visible, fluorescence, IR, ~1H and ~(13)C NMR, mass, CV and time resolved measurements. Its photophysical properties in aqueous and organic solutions have been described. The singlet energy levels of the synthesized compound have been found to be 57.8 kcal/mol and 59.2 kcal/ mol in aqueous and methanol solution, respectively. The LUMO energy level of SULFAPER has been determined by solid state cyclic voltammetry, and found to be -3.60 eV. SULFAPER undergoes two electron reduction process (-0.64 V and -0.42 V) versus ferrocene. SULFAPER has an energy band gap of 2.56 eV. The absorption maximum of the synthesized compound gives bathochromic shift of 12 nm in water with respect to its visible spectrum in methanol solution. The fluorescence quantum yields of the compound are low both in water and methanol solution because of the aggregation effect. Time-resolved fluorescence measurements have showed that the fluorescence decay times of the SULFAPER are τ_1 = 4.1 ns and τ_2 = 0.8 ns in water, and τ_1 = 4.0 ns and τ_2 = 2.5 ns in methanol solutions. The aqueous solution of SULFAPER is stable under UV-VIS irradiation, but a slight loss of fluorescence emission (25%) has been detected at a rate of k_p = 6.3 x 10~(-5) s~(-1) in methanol solution, which might be the result of either the quenching of fluorescence emission by reactive oxygen species, or by enhanced aggregation effect. SULFAPER-sensitized photooxida-tions of (E)-cinnamic acid and methyl acrylate have been found to give selective photoproduct formations under concentrated sun light in organic phase. (E)-cinnamic acid has been seen to favor photochemical E-Z isomerization and methyl acrylate has been seen to favor the formation of methyl 2-oxopropanoate. The quantum yield of (E)-cin-namic acid (Φ_(CA)) under concentrated solar irradiation process has been calculated to be about 0.015, by the employment of an actinometry method developed by Erten and Icli.
机译:合成了一种新的水溶性per二酰亚胺衍生物N,N'-双(12-磺氨基十二烷基)-3,4,9,10-per四碳二酰亚胺(SULFAPER),并具有可见光,荧光,IR,〜1H的特征和〜(13)C NMR,质量,CV和时间分辨测量。已经描述了其在水溶液和有机溶液中的光物理性质。已经发现,在水溶液和甲醇溶液中,合成化合物的单线态能级分别为57.8kcal / mol和59.2kcal / mol。 SULFAPER的LUMO能级已通过固态循环伏安法测定,发现为-3.60 eV。与二茂铁相比,SULFAPER经历了两个电子还原过程(-0.64 V和-0.42 V)。 SULFAPER的能带隙为2.56 eV。相对于在甲醇溶液中的可见光谱,合成化合物的最大吸收值使其在水中的红移达到12 nm。由于聚集效应,该化合物在水和甲醇溶液中的荧光量子产率均较低。时间分辨荧光测量表明,SULFAPER在水中的荧光衰减时间为τ_1= 4.1 ns和τ_2= 0.8 ns,在甲醇溶液中为τ_1= 4.0 ns和τ_2= 2.5 ns。 SULFAPER的水溶液在UV-VIS照射下是稳定的,但在甲醇溶液中以k_p = 6.3 x 10〜(-5)s〜(-1)的速率检测到荧光发射的轻微损失(25%)。 ,这可能是由于活性氧对荧光发射的淬灭或聚集效应增强的结果。已发现(E)-肉桂酸和丙烯酸甲酯在SULFAPER敏化的光氧化作用下在有机相中的浓阳光下产生选择性的光产物形成。 (E)-肉桂酸被认为有利于光化学E-Z异构化,并且丙烯酸甲酯被认为有利于2-氧代丙酸甲酯的形成。通过使用由Erten和Icli开发的光度法,计算出(E)-肉桂酸(Φ_(CA))在集中太阳辐射过程下的量子产率约为0.015。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号