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空心/实心 Ag2S/Ag 杂化二聚体的合成、形态控制和抗菌性能。

Synthesis, morphological control, and antibacterial properties of hollow/solid Ag2S/Ag heterodimers.

机构信息

Department of Chemical and Biomolecular Engineering, KAUST-NUS GCR Program, National University of Singapore, 10 Kent Ridge Crescent, Singapore 119260.

出版信息

J Am Chem Soc. 2010 Aug 11;132(31):10771-85. doi: 10.1021/ja102105q.

Abstract

Ag(2)S and Ag are important functional materials that have received considerable research interest in recent years. In this work, we develop a solution-based synthetic method to combine these two materials into hollow/solid Ag(2)S/Ag heterodimers at room temperature. Starting from monodisperse Cu(2)O solid spheres, CuS hollow spheres can be converted from Cu(2)O through a modified Kirkendall process, and the obtained CuS can then be used as a solid precursor for preparation of the Ag(2)S/Ag heterodimers through ion exchange and photo-assisted reduction. We have found that formation of the Ag(2)S/Ag heterodimers is instantaneous, and the size of Ag nanocrystals on the hollow spheres of Ag(2)S can be controlled by changing the concentration and power of reducing agents in the synthesis. The growth of Ag nanoparticles on hollow spheres of Ag(2)S in the dimers is along the [111] direction of the silver crystal; the light absorption properties have also been investigated. Furthermore, coupling or tripling of Ag(2)S/Ag heterodimers into dumbbell-like trimers ((Ag(2)S)(2)/Ag, linear) and triangular tetramers ((Ag(2)S)(3)/Ag, coplanar) can also be attained at 60 degrees C by adding the bidentate ligand ethylenediamine as a cross-linking agent. To test the applicability of this highly asymmetric dipolar composite, photocatalytic inactivation of Escherichia coli K-12 in the presence of the as-prepared Ag(2)S/Ag heterodimers has been carried out under UV irradiation. The added Ag(2)S/Ag heterodimers show good chemical stability under prolonged UV irradiation, and no appreciable solid dissolution is found. Possible mechanisms regarding the enhanced antibacterial activity have also been addressed.

摘要

Ag(2)S 和 Ag 是近年来受到广泛关注的重要功能材料。在这项工作中,我们开发了一种基于溶液的合成方法,可在室温下将这两种材料结合成空心/实心 Ag(2)S/Ag 异质二聚体。从单分散的 Cu(2)O 固体球出发,通过改进的 Kirkendall 过程可以将 Cu(2)O 转化为 CuS 空心球,然后可以将得到的 CuS 用作通过离子交换和光辅助还原制备 Ag(2)S/Ag 异质二聚体的固体前体。我们发现 Ag(2)S/Ag 异质二聚体的形成是瞬时的,并且可以通过改变合成中还原剂的浓度和功率来控制 Ag 纳米晶在 Ag(2)S 空心球上的尺寸。Ag 纳米颗粒在二聚体中 Ag(2)S 空心球上的生长方向是沿着银晶体的[111]方向;还研究了光吸收特性。此外,通过在 60°C 下添加双齿配体乙二胺作为交联剂,还可以将 Ag(2)S/Ag 异质二聚体耦合或三聚形成哑铃状三聚体((Ag(2)S)(2)/Ag,线性)和三角四聚体((Ag(2)S)(3)/Ag,共面)。为了测试这种高度不对称偶极复合材料的适用性,在存在制备的 Ag(2)S/Ag 异质二聚体的情况下,在 UV 照射下进行了大肠杆菌 K-12 的光催化失活实验。所制备的 Ag(2)S/Ag 异质二聚体在长时间的 UV 照射下表现出良好的化学稳定性,没有发现明显的固体溶解。还讨论了增强抗菌活性的可能机制。

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