摘要
选择具有(N^N)(N^N)位点的四齿配体2,2'-联嘧啶(bpm)作为桥联配体,利用铱配合物Ir(dfppy)2(bpm)Cl作为配体与稀土配合物Ln(TTA)3·2H2O配位,得到了IrIII-LnIII(Ln=Nd,Yb,Er)双金属配合物[Ir(dfppy)2(bpm)Ln(TTA)3]Cl.通过荧光滴定的方法,测定了该铱配合物与稀土离子之间的络合稳定常数.通过对铱配合物及IrIII-LnIII(Ln=Nd,Yb,Er)双金属配合物在可见区光谱的测定,可以观察到明显的铱配合物发光的猝灭,说明从铱中心到稀土中心发生了能量传递.同时,利用可见光选择性激发铱配合物可以获得在稀土NdIII,YbIII,ErIII离子红外区的发光.说明了铱配合物Ir(dfppy)2(bpm)Cl作为配体可以较好地敏化稀土离子的红外发光.
Bipyrimidine was chosen as (N^N)(N^N) bridging ligand for connecting metal centers. Ir^III-Ln^III (Ln = Nd, Yb, Er) bimetallic complexes [Ir(dfppy)2(μ-bpm)Ln(TTA)3]Cl were synthesized by using Ir(dfppy)2(bpm)Cl as ligand coordinating to lanthanide complexes Ln(TTA)3.2H2O. The stability constants between Ir(dfppy)2(bpm)Cl and lanthanide ions were measured by fluorescence titration. The obvious quenching of visible emission from Ir^III complex in the Ir^III-Ln^III (Ln = Nd, Yb, Er) bimetallic complexes indicated that energy transfer occurred from Ir^III center to lanthanides. NIR emissions from Nd^III, Yb^III, Er^III were obtained under the excitation of visible light by selective excitation of the Ir^III-based chromophore. It was proved that Ir(dfppy)2(bpm)Cl as ligand could efficiently sensitize NIR emission from Nd^III, Yb^III, Er^III.
出处
《中国科学(B辑)》
CSCD
北大核心
2009年第11期1356-1362,共7页
Science in China(Series B)
基金
国家重点基础研究发展计划“973”子项目(编号:2006CB601103)
国家自然科学基金(批准号:20671006,50772003,209710006,90922004)资助