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固定在二氧化硅多胺复合材料上的钌二亚胺配合物对吸附金属离子的发光猝灭和增强作用

Luminescence Quenching and Enhancement by Adsorbed Metal Ions with Ruthenium Diimine Complexes Immobilized on Silica Polyamine Composites.

作者信息

Rosenberg Edward, Abbott Geoffrey, Alexander Ross J B, McVay Riley, Terwilliger Michelle

机构信息

Department of Chemistry and Biochemistry, University of Montana, Missoula, MT 59802, USA.

出版信息

Macromol Symp. 2016 Jun;364(1):47-55. doi: 10.1002/masy.201500179. Epub 2016 Jun 9.

Abstract

Luminescent ruthenium diimine complexes have been covalently bound to the surface of a silica polyamine composite (SPC) using peptide coupling agents. The loading of the complexes using this route is quite low (~0.01-0.04 mmol/g) leaving sufficient surface amines to coordinate added metal ions. When the composite particles containing the Ru complexes are exposed to solutions of Cu, Ni or Zn, luminescence is quenched with efficiencies that follow concentration dependence and the relative binding affinities of the ions. When heavy metal ions such as mercury or lead are adsorbed onto the same surface, luminescence is enhanced by a factor of ~3.5. When the complexes are exposed to these metals in solution, no quenching or enhancement is observed. Both phenomena were shown to be the result of adsorption of the cations onto the polyamine surface by using the Stern-Volmer relationship. The mechanism of both quenching and enhancement is discussed and the options for further development of this novel metal sensing technique are presented.

摘要

使用肽偶联剂将发光钌二亚胺配合物共价结合到二氧化硅多胺复合材料(SPC)的表面。通过这种途径负载的配合物相当低(约0.01 - 0.04 mmol/g),留下足够的表面胺来配位添加的金属离子。当含有钌配合物的复合颗粒暴露于铜、镍或锌的溶液中时,发光会被猝灭,猝灭效率遵循浓度依赖性和离子的相对结合亲和力。当汞或铅等重金属离子吸附到同一表面时,发光增强约3.5倍。当配合物在溶液中暴露于这些金属时,未观察到猝灭或增强现象。通过使用斯特恩 - 沃尔默关系表明,这两种现象都是阳离子吸附到多胺表面的结果。讨论了猝灭和增强的机制,并提出了进一步开发这种新型金属传感技术的方案。

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