Xu Wenying, Wittich Fran, Banks Neal, Zink James, Demas J N, DeGraff B A
Chemistry Department, University of Virginia, Charlottesville, VA 22904, USA.
Appl Spectrosc. 2007 Nov;61(11):1238-45. doi: 10.1366/000370207782597030.
Water quenching of luminescent [Ru(phen)(2)dppz]Cl(2), [Ru(phen)(2)dppn]Cl(2), and [Ru(4,7-Ph(2)phen)(2) dppz]Cl(2) (phen = 1,10-phenanthroline; 4,7-Ph(2)phen = 4; 4,7-diphenyl-1,10-phenanthroline; dppz = dipyrido[3,2-a:2'3'-c]phenazine; dppn = benzodipyrido(a:3,2-h:2',3'-j)phenazine) complexes was studied in acetonitrile and in polymers. The polymers contained hydrophobic and hydrophilic components to control mechanical properties and were designed to absorb water with changing humidity and, thus, affect the emission intensity and lifetime. Quenching by water in mixed solvents and in polymers was shown to arise from a combination of diffusional and static ground-state associational quenching. The factors controlling polymer properties are discussed. The systems can be tailored to give a wide range of responses or function as a binary sensor at a fixed humidity level.
研究了发光配合物[Ru(phen)₂dppz]Cl₂、[Ru(phen)₂dppn]Cl₂和[Ru(4,7-Ph₂phen)₂dppz]Cl₂(phen = 1,10-菲咯啉;4,7-Ph₂phen = 4,7-二苯基-1,10-菲咯啉;dppz = 二吡啶并[3,2-a:2',3'-c]吩嗪;dppn = 苯并二吡啶并(a:3,2-h:2',3'-j)吩嗪)在乙腈和聚合物中的水猝灭情况。这些聚合物含有疏水和亲水成分以控制机械性能,并且设计成可随湿度变化吸收水分,从而影响发射强度和寿命。结果表明,在混合溶剂和聚合物中,水猝灭是由扩散和静态基态缔合猝灭共同作用引起的。讨论了控制聚合物性能的因素。这些体系可以进行定制,以产生广泛的响应,或在固定湿度水平下用作二元传感器。