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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Light-Activated Metal-Coordinated Supramolecular Complexes with Charge-Directed Self-Assembly
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Light-Activated Metal-Coordinated Supramolecular Complexes with Charge-Directed Self-Assembly

机译:具有电荷定向自组装的光活化金属配位超分子配合物

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Metal-coordinated materials are attractive for many applications including catalysis, sensing, and controlled release. Adenine and its derivatives have been widely used to generate many coordination complexes, polymers, and nanoparticles. However, few of these materials display fluorescence. Herein, we report fluorescent gold complexes and nanoclusters formed with adenosine, deoxyadenosine, AMP, and ATP, where the former two produced micrometer-sized particles and the latter two produced molecular clusters. Only weak fluorescence was produced with adenine, while no emission was observed with uridine, cytidine, or guanosine. We found that adding citrate and light exposure are two key factors to generate fluorescence, and their mechanistic roles have been explored. In all the products, the ratio between gold and adenine was determined to be 1:1 using UV-vis spectroscopy. Mass spectrometry showed clusters containing 2, 4, and 6 gold atoms in the gas phase. The fluorescence peak is around 470 nm for the AMP and ATP complex and 480 nra for the (deoxy) adenosine complexes. This work has provided a systematic approach to obtain fluorescent metal coordinated polymers and materials with tunable sizes, which will find applications in analytical chemistry, drug delivery, and imaging. The fundamental physical chemistry of these materials has been systematically explored.
机译:金属配位材料对于包括催化,感测和控制释放在内的许多应用具有吸引力。腺嘌呤及其衍生物已被广泛用于产生许多配位络合物,聚合物和纳米颗粒。但是,这些材料很少显示荧光。在本文中,我们报道了由腺苷,脱氧腺苷,AMP和ATP形成的荧光金络合物和纳米簇,其中前两个产生微米级的颗粒,而后两个产生分子簇。腺嘌呤仅产生微弱的荧光,而尿苷,胞苷或鸟苷则无发射。我们发现添加柠檬酸盐和曝光是产生荧光的两个关键因素,并且已经探讨了它们的机械作用。在所有产品中,使用紫外可见光谱法测定金与腺嘌呤之间的比例为1:1。质谱显示在气相中含有2、4和6个金原子的簇。 AMP和ATP络合物的荧光峰约为470 nm,(脱氧)腺苷络合物的荧光峰为480 nm。这项工作提供了一种系统的方法来获得具有可调大小的荧光金属配位聚合物和材料,将在分析化学,药物递送和成像中找到应用。这些材料的基本物理化学已得到系统地研究。

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