首页> 外文期刊>Russian Journal of General Chemistry >Effect of Structure and Medium on Photostability of Halogenated Boron(III), Zinc(II), and Cadmium(II) Dipyrromethenates
【24h】

Effect of Structure and Medium on Photostability of Halogenated Boron(III), Zinc(II), and Cadmium(II) Dipyrromethenates

机译:结构与培养基对卤代硼(III),锌(II)和镉(II)丙二甲酸酯的稳定性的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Photostability of B(III), Zn(II), Cd(II) complexes with monoiodo- and dibromosubstituted dipyrromethenes [BF2L] and [ML2] in benzene and cyclohexane solutions is studied. It is found that the mechanism of destruction of the dyes under UV radiation is based on participation of singlet oxygen generated by the excited triplet state of the dye. Singlet oxygen enters the oxidation reactions of the pigment molecules leading to accumulation of colorless products based on di-, monopyrrol, and smaller fragments. Initial stages of the process include the reactions of dehalogenation of the dye molecules and are accompanied by enhancement of the fluorescence of the formed alkyl-substituted dipyrromethenates. The photostability of boron complexes [BF2L] is up to 32 times higher as compared to that of [ZnL2] and [CdL2]. The replacement of 4-iododipyrromethene ligands in [BF2L] and [ML2] by 5,5'-or 4,4'-dibromo-substituted ligands increases photostability of the dyes. The stability of the dyes against UV irradiation substantially decreases in benzene with respect to cyclohexane due to enhancement of polarization of the chromophore systems of dipyrromethene ligands because of their solvation with benzene (pi-pi-stacking).
机译:研究了B(III),Zn(II),CD(II)络合物的光稳定性与单碘和二溴磺脲类化二甲磺酰胺[BF2L]和[ML 2]的苯并和环己烷溶液中的络合物。发现紫外线辐射下染料破坏的机理基于由染料的激发三重态状态产生的单线氧的参与。单次氧气进入颜料分子的氧化反应,导致基于二 - ,单醇和较小的碎片积聚无色产物。该方法的初始阶段包括染料分子的脱卤的反应,并伴随着形成的烷基取代的二甲基酯的荧光的增强。与[ZnL2]和[CDL2]相比,硼配合物的光稳定性高达32倍。在[BF2L]和[ML2]中替换4-碘哌啶配体5,5'-或4,4'-二溴取代配体增加了染料的光稳定性。由于其与苯(PI-PI堆叠)的溶剂化(PI-PI堆叠)的溶解,乙烯对苯己烷的染料对紫外线辐射的稳定性显着降低了环己烷。

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