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Self-Assembled Fluorescent Pt(Ⅱ) Metalla cycles as Artificial Light- Harvesting Systems

机译:自组装荧光Pt(Ⅱ)金属循环作为人工光收集系统

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Light-harvesting is one of the key steps in photosynthesis, but developing artificial light-harvesting systems (LHSs) with high energy transfer efficiencies has been a challenging task. Here we report fluorescent hexagonal Pt(II) metallacycles as a new platform to fabricate artificial LHSs. The metallacycles (4 and 5) are easily accessible by coordination-driven self-assembly of a triphenylamine-based ditopic ligand 1 with di-platinum acceptors 2 and 3, respectively. They possess good fluorescence properties both in solution and in the solid state. Notably, the metallacycles show aggregation-induced emission enhancement (AIEE) characteristics in a DMSO-H2O solvent system. In the presence of the fluorescent dye Eosin Y (ESY), the emission intensities of the metallacycles decrease but the emission intensity of ESY increases. The absorption spectrum of ESY and the emission spectra of the metallacycles show a considerable overlap, suggesting the possibility of energy transfer from the metallacycles to ESY, with an energy transfer efficiency as high as 65% in the 4(a)+ESY system.
机译:采光是光合作用的关键步骤之一,但是开发具有高能量传递效率的人工采光系统(LHS)一直是一项艰巨的任务。在这里,我们报告荧光六角Pt(II)金属环作为制造人造LHSs的新平台。金属环(4和5)可通过三苯胺基二位配体1与二铂受体2和3的配位驱动自组装而容易地获得。它们在溶液和固态下均具有良好的荧光特性。值得注意的是,金属环在DMSO-H2O溶剂系统中表现出聚集诱导的发射增强(AIEE)特性。在荧光染料曙红Y(ESY)的存在下,金属环的发射强度降低,但ESY的发射强度增加。 ESY的吸收光谱和金属环的发射光谱显示出相当大的重叠,这表明能量可能从金属环转移到ESY,在4(a)+ ESY系统中能量转移效率高达65%。

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