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控制三螺旋螺旋配合物中的镧系元素交换:优化分子上转换发光的一种途径。

Controlling Lanthanide Exchange in Triple-Stranded Helicates: A Way to Optimize Molecular Light-Upconversion.

机构信息

Department of Inorganic, Analytical and Applied Chemistry, University of Geneva, 30 quai E. Ansermet, 1211, Geneva 4, Switzerland.

Department of Physical Chemistry, University of Geneva, 30 quai E. Ansermet, 1211, Geneva 4, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2017 Nov 13;56(46):14612-14617. doi: 10.1002/anie.201709156. Epub 2017 Oct 16.

Abstract

The kinetic lability of hexadentate gallium-based tripods is sufficient to ensure thermodynamic self-assembly of luminescent heterodimetallic [GaLn(L3) ] helicates on the hour time scale, where Ln is a trivalent 4f-block cation. The inertness is, however, large enough for preserving the triple-helical structure when [GaLn(L3) ] is exposed to lanthanide exchange. The connection of a second gallium-based tripod further slows down the exchange processes to such an extent that spectroscopically active [CrErCr(L4) ] can be diluted into closed-shell [GaYGa(L4) ] matrices without metal scrambling. This feature is exploited for pushing molecular-based energy-transfer upconversion (ETU) at room temperature.

摘要

六配位镓基三脚架的动力学不稳定性足以确保发光杂二价[GaLn(L3)]螺旋体在小时时间尺度上的热力学自组装,其中 Ln 是三价 4f 区阳离子。然而,当[GaLn(L3)]暴露于镧系元素交换时,其惰性足够大,以保持三螺旋结构。连接第二个镓基三脚架进一步减缓了交换过程,以至于光谱活性[CrErCr(L4)]可以稀释到无金属混合的闭壳[GaYGa(L4)]基质中。这一特性被用于在室温下推动基于分子的能量转移上转换(ETU)。

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