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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >DNA-Programmed Bimodal 2D Assembly of Differently Sized Nanoparticles via Folding of Precursory Circular Chains
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DNA-Programmed Bimodal 2D Assembly of Differently Sized Nanoparticles via Folding of Precursory Circular Chains

机译:通过折叠前兆圆链的DNA编程的双模2D组装不同尺寸的纳米颗粒

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摘要

Gold nanoparticle (AuNP) assemblies in two-dimensions (2D) exhibit collective physical/chemical properties that are useful for various devices. However, technical issues still impede the efficient ordering of differently sized AuNPs on solid supports while avoiding phase separation. This paper describes a method to construct binary 2D assemblies by folding precursory circular chains composed of small and large AuNPs. The structural change is caused by a spontaneous, noncross-linking assembly of fully matched double-stranded DNA-modified AuNPs (dsDNA-AuNPs) at a high ionic strength. Since larger dsDNA-AuNPs have a lower critical coagulation concentration of the supporting electrolyte, the spontaneous assembly of large AuNPs precedes that of small AuNPs in the precursory chain during evaporation. Transmission electron microscopy reveals that alternate-type AuNP chains are folded into a binary 2D structure in a mixed mode, whereas block-type chains are transformed into a binary 2D structure in a core-shell mode. The methodology could potentially be harnessed for the fabrication of binary AuNP arrays for various devices.
机译:金纳米粒子(AUNP)两维(2D)组件表现出可用于各种器件的集体物理/化学性质。然而,技术问题仍然妨碍在避免相位分离的同时妨碍在固体支撑上的不同大小的AUNP的有效顺序。本文介绍了一种通过折叠由小型和大的AUNP组成的前兆圆形链来构造二进制2D组件的方法。结构变化是由高离子强度的完全匹配的双链DNA改性AUNPS(DSDNA-AUNP)的自发性非克罗斯连接组件引起的。由于较大的DSDNA-AUNP具有较低的支撑电解质的临界凝固浓度,因此大剖腹产的自发组装在蒸发过程中在前体链中的小剖腹产。透射电子显微镜显示,在混合模式下,将交替型AUNP链折叠成二进制2D结构,而块型链在核心壳模式下被转换成二进制2D结构。可以利用该方法来利用用于各种设备的二元AUNP阵列的制造。

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