Gwinn Elisabeth, Schultz Danielle, Copp Stacy M, Swasey Steven
Department of Physics, The University of California, Santa Barbara, Santa Barbara, CA 93106, USA.
Department of Chemistry and Biochemistry, The University of California, Santa Barbara, Santa Barbara, CA 93106, USA.
Nanomaterials (Basel). 2015 Feb 12;5(1):180-207. doi: 10.3390/nano5010180.
DNA-protected silver clusters (Ag-DNA) possess unique fluorescence properties that depend on the specific DNA template that stabilizes the cluster. They exhibit peak emission wavelengths that range across the visible and near-IR spectrum. This wide color palette, combined with low toxicity, high fluorescence quantum yields of some clusters, low synthesis costs, small cluster sizes and compatibility with DNA are enabling many applications that employ Ag-DNA. Here we review what is known about the underlying composition and structure of Ag-DNA, and how these relate to the optical properties of these fascinating, hybrid biomolecule-metal cluster nanomaterials. We place Ag-DNA in the general context of ligand-stabilized metal clusters and compare their properties to those of other noble metal clusters stabilized by small molecule ligands. The methods used to isolate pure Ag-DNA for analysis of composition and for studies of solution and single-emitter optical properties are discussed. We give a brief overview of structurally sensitive chiroptical studies, both theoretical and experimental, and review experiments on bringing silver clusters of distinct size and color into nanoscale DNA assemblies. Progress towards using DNA scaffolds to assemble multi-cluster arrays is also reviewed.
DNA保护的银簇(Ag-DNA)具有独特的荧光特性,其取决于稳定该簇的特定DNA模板。它们的发射峰波长范围跨越可见光和近红外光谱。这种广泛的调色板,再加上低毒性、一些簇的高荧光量子产率、低合成成本、小簇尺寸以及与DNA的兼容性,使得许多应用都采用了Ag-DNA。在这里,我们回顾了关于Ag-DNA的潜在组成和结构的已知信息,以及这些与这些迷人的杂化生物分子-金属簇纳米材料的光学性质之间的关系。我们将Ag-DNA置于配体稳定的金属簇的一般背景下,并将它们的性质与由小分子配体稳定的其他贵金属簇的性质进行比较。讨论了用于分离纯Ag-DNA以进行组成分析以及溶液和单发射体光学性质研究的方法。我们简要概述了结构敏感的手性光学研究,包括理论和实验方面,并回顾了将不同尺寸和颜色的银簇引入纳米级DNA组装体的实验。还回顾了使用DNA支架组装多簇阵列的进展。