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MgO 缺陷中心中贵金属团簇-二肽杂化物的结构和光学性质的理论研究。

Theoretical study of structural and optical properties of noble metal cluster-dipeptide hybrids at defect centers of MgO.

机构信息

Department of Physics, Free University Berlin, Arnimallee 14, 14195 Berlin, Germany.

出版信息

Phys Chem Chem Phys. 2012 Jul 14;14(26):9330-5. doi: 10.1039/c2cp23500e. Epub 2012 Jan 25.

Abstract

We present the theoretical investigation of structural and optical properties of silver and gold cluster-dipeptide hybrids bound to the F(S) defect of the MgO (100) surface. We use DFT and its TDDFT variant combined with the polarizable embedded cluster model for the description of the extended MgO environment. As model peptide we have chosen CysTrp since the cysteine residue interacts strongly with metal particles through the sulfur atom and tryptophan is the most important chromophoric amino acid. Our results show that in the case of CysTrp bound to the supported Ag(4) cluster an intense optical signal arises at 400 nm. In contrast, in the case of gold no strongly localized absorption is present since the optical response of supported gold-peptide hybrids is dominated by a large number of low intensity d-electron excitations spread over a broad energy range. Such a localized optical signal which is present in supported silver hybrids can be exploited for the optical detection of peptides and thus can serve as basis for the development of biosensing materials.

摘要

我们提出了银和金团簇-二肽杂化物与 MgO(100)表面 F(S)缺陷结合的结构和光学性质的理论研究。我们使用 DFT 及其 TDDFT 变体结合极化嵌入簇模型来描述扩展的 MgO 环境。作为模型肽,我们选择了 CysTrp,因为半胱氨酸残基通过硫原子与金属颗粒强烈相互作用,色氨酸是最重要的生色氨基酸。我们的结果表明,在与负载的 Ag(4)簇结合的 CysTrp 情况下,在 400nm 处会出现强烈的光学信号。相比之下,在金的情况下,由于负载金-肽杂化物的光学响应主要由大量分布在宽能范围内的低强度 d 电子激发所主导,因此不存在强烈的局域吸收。这种存在于负载银杂化物中的局域光学信号可用于肽的光学检测,因此可作为开发生物传感材料的基础。

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