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腺嘌呤-银纳米颗粒的选择性自组装形成了类似于细胞大小的环。

Selective self-assembly of adenine-silver nanoparticles forms rings resembling the size of cells.

作者信息

Choi Sungmoon, Park Soonyoung, Yang Seon-Ah, Jeong Yujin, Yu Junhua

机构信息

Department of Chemistry Education, Seoul National University, 1 Gwanak-Ro, Gwanak-Gu, Seoul 151-742, South Korea.

出版信息

Sci Rep. 2015 Dec 8;5:17805. doi: 10.1038/srep17805.

Abstract

Self-assembly has played critical roles in the construction of functional nanomaterials. However, the structure of the macroscale multicomponent materials built by the self-assembly of nanoscale building blocks is hard to predict due to multiple intermolecular interactions of great complexity. Evaporation of solvents is usually an important approach to induce kinetically stable assemblies of building blocks with a large-scale specific arrangement. During such a deweting process, we tried to monitor the possible interactions between silver nanoparticles and nucleobases at a larger scale by epifluorescence microscopy, thanks to the doping of silver nanoparticles with luminescent silver nanodots. ssDNA oligomer-stabilized silver nanoparticles and adenine self-assemble to form ring-like compartments similar to the size of modern cells. However, the silver ions only dismantle the self-assembly of adenine. The rings are thermodynamically stable as the drying process only enrich the nanoparticles-nucleobase mixture to a concentration that activates the self-assembly. The permeable membrane-like edge of the ring is composed of adenine filaments glued together by silver nanoparticles. Interestingly, chemicals are partially confined and accumulated inside the ring, suggesting that this might be used as a microreactor to speed up chemical reactions during a dewetting process.

摘要

自组装在功能性纳米材料的构建中发挥了关键作用。然而,由于纳米级构建单元之间存在极其复杂的多种分子间相互作用,通过纳米级构建单元自组装构建的宏观多组分材料的结构很难预测。溶剂蒸发通常是诱导具有大规模特定排列的构建单元形成动力学稳定组装体的重要方法。在这样的去湿过程中,由于用发光银纳米点对银纳米颗粒进行了掺杂,我们试图通过落射荧光显微镜在更大尺度上监测银纳米颗粒与核碱基之间可能的相互作用。单链DNA寡聚物稳定的银纳米颗粒和腺嘌呤自组装形成类似于现代细胞大小的环状隔室。然而,银离子只会破坏腺嘌呤的自组装。这些环在热力学上是稳定的,因为干燥过程只是将纳米颗粒 - 核碱基混合物富集到激活自组装的浓度。环的可渗透膜状边缘由银纳米颗粒粘合在一起的腺嘌呤细丝组成。有趣的是,化学物质在环内部分被限制和积累,这表明这可能用作微反应器来加速去湿过程中的化学反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6be1/4672301/5cb0cf9a01ad/srep17805-f1.jpg

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