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Breaking the 12-HOPO barrier with a cyclen backbone for more efficient sensitization of Eu(iii) luminescence and unprecedented two-photon excitation properties

机译:用循环骨架来打破12-HOPO势垒以更有效地激发Eu(iii)发光和前所未有的双光子激发特性

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摘要

A cyclen backbone was utilized to study the effect of backbone rigidity on Eu(iii) luminescence sensitization using a 1,2-HOPO derivative and 2-thenoyltrifluoroacetonate (TTA) as chromophores. The restriction of molecular movement of >Eu-Cy-HOPO brought about by the increased rigidity provided a tightly packed coordination environment for the octadentate Eu(iii) center which resulted in the highest overall quantum yield (30.2%) and sensitization efficiency (64.6%) among 1,2-HOPO sensitized Eu(iii) complexes. >Eu-Cy-HOPO is also the first 1,2-HOPO-based lanthanide complex to emit Eu(iii) luminescence under two-photon excitation.
机译:利用Cyclenn主链来研究主链刚度对1,2-HOPO衍生物和2-thenoyltrifluoroacetonate(TTA)作为发色团的Eu(iii)发光敏化的影响。刚度增加导致> Eu-Cy-HOPO 分子运动的限制为八齿Eu(iii)中心提供了紧密堆积的配位环境,从而导致最高的整体量子产率(30.2%) 1,2-HOPO敏化的Eu(iii)配合物的敏化效率(64.6%)。 > Eu-Cy-HOPO 也是第一个基于1,2-HOPO的镧系元素络合物,在双光子激发下发出Eu(iii)发光。

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