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Chelating Ligands for nanocrystals' surface functionalization

机译:螯合配体用于纳米晶体的表面功能化

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A new family of ligands for the surface functionalization of CdSe nanocrystals is proposed, namely alkyl or aryl derivatives of carbodithioic acids (R-C(S)SH). The main advantages of these new ligands are as follows: they nearly quantitatively exchange the initial surface ligands (TOPO) in very mild conditions; they significantly improve the resistance of nanocrystals against photooxidation because of their ability of strong chelate-type binding to metal atoms; their relatively simple preparation via Grignard intermediates facilitates the development of new bifunctional ligands containing, in addition to the anchoring carbodithioate group, a second function, which enables the grafting of molecules or macromolecules of interest on the nanocrystal surface. To give an example of this approach, we report, for the first time, the grafting of an electroactive oligomer from the polyaniline family-aniline tetramer-on CdSe nanocrystals after their functionalization with 4-formyldithiobenzoic acid. The grafting proceeds via a condensation reaction between the aldehyde group of the ligand and the terminal primary amine group of the tetramer. The resulting organic/ inorganic hybrid exhibits complete extinction of the fluorescence of its constituents, indicating efficient charge or energy transfer between the organic and the inorganic semiconductors.
机译:提出了用于CdSe纳米晶体表面功能化的新的配体族,即碳二硫代酸的烷基或芳基衍生物(R-C(S)SH)。这些新配体的主要优点如下:在非常温和的条件下,它们几乎可以定量交换初始表面配体(TOPO)。由于它们与金属原子的强螯合型结合能力,它们显着提高了纳米晶体的抗光氧化能力。它们通过格利雅(Grignard)中间体的相对简单的制备促进了新的双功能配体的开发,该配体除锚固碳二硫代酸酯基团外还包含第二种功能,该功能使得能够将所需分子或大分子接枝到纳米晶体表面上。为了给出这种方法的例子,我们首次报道了在用4-甲酰基二硫代苯甲酸官能化后,将聚苯胺家族-苯胺四聚体在CdSe纳米晶体上的电活性低聚物接枝。通过配体的醛基与四聚体的末端伯胺基之间的缩合反应进行接枝。所得的有机/无机杂化物表现出其成分的荧光完全消失,表明有机和无机半导体之间有效的电荷或能量转移。

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