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Insights into mechanisms of diphosphine-mediated controlled surface construction on Au nanoclusters

机译:二膦介导的金纳米团簇受控表面构建机理研究

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摘要

Unraveling the rules governing the size regulation of nanoclusters is of great importance not only in fundamental research, but also in practical applications because of the high structure–property correlation in nanoclusters. Diphosphine-mediated size tailoring is recognized as a powerful method for modulating the size, configuration, and properties of nanoclusters, but the role of diphosphines in these size-controlled processes is still poorly understood due to a lack of systematic studies. Herein, using Au23(SR)16− as the template for modification, the factors influencing the size-modulation of nanoclusters by diphosphines were systematically investigated. It is revealed that by controlling the length of the diphosphines (from shorter to longer), Au21(SR)12L2+ (L = diphosphine) and Au22(SR)14L can be produced. Moreover, introducing a rigid group into the diphosphines can twist the structural framework or lead to the formation of a new surface motif configuration in the nanoclusters, forming twisted Au22(SR)14L and Au25(SR)16L2+. The size regulation of these nanoclusters enables fine-tuning of the optical properties, including the absorption wavelengths and photoluminescence emission intensity, affording an avenue for precise control of the physicochemical properties of nanoclusters for practical applications.
机译:解开规则大小调节发光机制不仅是非常重要的在基础研究,也在实际应用程序的高组织性能相关性在发光。Diphosphine-mediated大小裁剪是公认的作为一个强大的方法来调节大小,配置和性能的制备但在这些diphosphines所扮演的角色size-controlled过程仍然不佳理解由于缺乏系统的研究。这里,使用Au23 (SR) 16−模板修改,影响的因素size-modulation diphosphines的发光机制系统地调查。通过控制的长度diphosphines(从短到长),Au21 (SR) 12 l2 + (L = diphosphine)和Au22 (SR) 14 L可以生产。集团diphosphines可以扭转结构框架或导致的形成一个新的表面图案的配置制备形成扭曲Au22 (SR) 14 l和Au25 (SR) 16 l2 +。光的发光机制允许微调属性,包括吸收波长光致发光排放强度,提供一个精确控制的大道物理化学性质的纳米束实际的应用程序。

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