首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Effect of protonation and Zn(II) coordination on the fluorescence emission of a phenanthroline-containing macrocycle. An unusual case of 'nonemissive'' Zn(II) complex
【24h】

Effect of protonation and Zn(II) coordination on the fluorescence emission of a phenanthroline-containing macrocycle. An unusual case of 'nonemissive'' Zn(II) complex

机译:质子化和Zn(II)配位对含菲罗啉大环荧光发射的影响。“非发射”Zn(II)配合物的不寻常情况

获取原文
获取原文并翻译 | 示例

摘要

Ligand 2,5,8-triaza9-10,23-phenanthrolinophane (L) contains a triamine chain connecting the 2,9 positions of a phenanthroline unit. Protonation of L has been studied by means of potentiometric and H-1 and C-13 NMR techniques, allowing the determination of the basicity constants and of the stepwise protonation sites. Protonation strongly affects the fluorescence emission properties of the chemosensor L. The two benzylic amine groups, namely, the two aliphatic amine groups adjacent to phenanthroline, are the most efficient nitrogens in fluorescence emission quenching. In the diprotonated receptor H2L(2+) both of these nitrogens are protonated, and therefore this species is the most emissive. In the H3L(3+) species the three acidic protons, are located on the amine groups of the polyamine chain. This species is still emissive, but less so than H2L(2+), due to formation of a. hydrogen bond network involving the phenanthroline nitrogens, as shown by the crystal structure of the H3LBr-3. H2O salt. A potentiometric investigation of Zn(II) binding in aqueous solution suggests that some nitrogen donors are not involved, or weakly involved in metal coordination. Actually, the crystal structure of the ZnL(H2O)(ClO4)(2) complex shows that both of the benzylic amine groups are weakly bound to the metal. This Zn(II) complex does not show any fluorescence emission. This rather unusual feature can be explained considering an electron transfer process involving the benzylic nitrogens. References: 57
机译:配体 2,5,8-三氮杂[9]-10,23-菲基基芬 (L) 含有连接菲咯啉单元的 2,9 个位置的三胺链。已经通过电位法和 H-1 和 C-13 NMR 技术研究了 L 的质子化作用,从而可以确定碱度常数和逐步质子化位点。质子化强烈影响化学传感器L的荧光发射特性。两个苄胺基团,即与菲咯啉相邻的两个脂肪族胺基团,是荧光发射猝灭中最有效的氮。在双质子化受体 [H2L](2+) 中,这两种氮都被质子化,因此该物种的发射性最强。在 [H3L](3+) 物种中,三个酸性质子位于多胺链的胺基上。该物种仍然具有发射性,但比 [H2L](2+) 低,这是由于形成涉及菲咯啉氮的氢键网络,如 [H3L]Br-3. H的晶体结构所示。 H2O盐。对水溶液中Zn(II)结合的电位研究表明,一些氮供体不参与或弱参与金属配位。实际上,[ZnL(H2O)](ClO4)(2)配合物的晶体结构表明,两个苄胺基团都与金属弱结合。这种 Zn(II) 配合物不显示任何荧光发射。考虑到涉及苄基氮的电子转移过程,可以解释这种相当不寻常的特征。[参考文献: 57]

著录项

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