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Aggregation induced non-emissive-to-emissive switching of molecular platinum clusters

机译:聚合诱导non-emissive-to-emissive转换的分子白金集群

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We show here for the first time the Aggregation Induced Emission (AIE) mechanism and solvatochromic impact on Pt-SG (SG-deprotonated glutathione) nanoclusters. In this work, the AIE properties of Pt-SG clusters were investigated through computational and spectroscopic investigations. Computational data established that aggregation triggers a distinct change in the frontier molecular orbitals (FMOs) from metal d-orbital centered FMOs in the monomer to metal-thiolate and thiolate centered FMOs in the dimer improving the radiative decay process. Solvent dependent photoluminescence studies proved that a Lewis-acidic environment can significantly perturb the metal-thiolate and thiolate centered FMOs that are involved in the electronic transitions as predicted by our computational work. These semiconducting clusters exhibit a large Stokes shift and zero spectral overlap between absorption and emission which makes this Pt-SG cluster an excellent material for solar concentrators and solid-state light emitters. This AIE-OFF-ON emission was utilized to delineate a proof-of-concept sensor device that is sensitive to temperature and an acid/base.
机译:我们这里显示第一次聚合诱导发射(AIE)机制对Pt-SG (SG-deprotonated电荷的影响谷胱甘肽)发光机制。Pt-SG集群研究的性质通过计算和光谱调查。聚合触发一个截然不同的变化前线分子轨道(fmo)金属d轨道中心fmo的单体metal-thiolate和硫醇盐集中fmo的二聚体提高辐射衰变过程。溶剂的依赖光致发光研究证明Lewis-acidic环境极大地扰乱metal-thiolate和硫醇盐集中fmo参与电子转换为我们预测的计算工作。表现出较大的斯托克斯位移和零谱重叠的吸收和发射使这Pt-SG集群成为一个优秀的材料太阳能集中器和固态灯发射器。描述一个概念验证传感器设备这是对温度敏感,酸/碱。

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