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Crystal structure of a NIR-Emitting DNA-Stabilized Ag-16 Nanocluster

机译:NIR发射DNA稳定的AG-16纳米光泽晶体结构

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摘要

DNA has been used as a scaffold to stabilize small, atomically monodisperse silver nanoclusters, which have attracted attention due to their intriguing photophysical properties. Herein, we describe the X-ray crystal structure of a DNA-encapsulated, near-infrared emitting Ag-16 nanocluster (DNA-Ag16NC). The asymmetric unit of the crystal contains two DNA-Ag16NCs and the crystal packing between the DNA-Ag16NCs is promoted by several interactions, such as two silver-mediated base pairs between 3 '-terminal adenines, two phosphate-Ca2+-phosphate interactions, and pi-stacking between two neighboring thymines. Each Ag16NC is confined by two DNA decamers that take on a horse-shoe-like conformation and is almost fully shielded from the solvent environment. This structural insight will aid in the determination of the structure/photophysical property relationship for this class of emitters and opens up new research opportunities in fluorescence imaging and sensing using noble-metal clusters.
机译:DNA已被用作支架,以稳定小的原子单分散的银纳米团簇,这引起了引起的注意力感吸附的光性学性质。 在此,我们描述了DNA包装,近红外发射Ag-16纳米簇(DNA-Ag16NC)的X射线晶体结构。 晶体的不对称单元含有两个DNA-ag16NC,并且DNA-ag16NCs之间的晶体填料通过几种相互作用促进,例如两个银介导的碱基对,两个磷酸盐-CO + - 磷酸酯相互作用,和 两个邻近胸腺之间的PI堆叠。 每个AG16NC都被两种DNA焊接器局限于,其呈现像马蹄形构象,并且几乎完全从溶剂环境中屏蔽。 这种结构洞察力将有助于确定这类发射器的结构/光物理关系,并在荧光成像和使用贵金属簇的感测到新的研究机会。

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