Institute of Fundamental and Frontier Sciences (IFFS), University of Electronic Science and Technology of China (UESTC), 610054, Chengdu, China.
DWI-Leibniz Institute for Interactive Materials, Forckenbeckstr. 50, 52056, Aachen, Germany.
Angew Chem Int Ed Engl. 2020 Sep 21;59(39):17250-17255. doi: 10.1002/anie.202007616. Epub 2020 Jul 28.
Organization of gold nanoobjects by oligonucleotides has resulted in many three-dimensional colloidal assemblies with diverse size, shape, and complexity; nonetheless, autonomous and temporal control during formation remains challenging. In contrast, living systems temporally and spatially self-regulate formation of functional structures by internally orchestrating assembly and disassembly kinetics of dissipative biomacromolecular networks. We present a novel approach for fabricating four-dimensional gold nanostructures by adding an additional dimension: time. The dissipative character of our system is achieved using exonuclease III digestion of deoxyribonucleic acid (DNA) fuel as an energy-dissipating pathway. Temporal control over amorphous clusters composed of spherical gold nanoparticles (AuNPs) and well-defined core-satellite structures from gold nanorods (AuNRs) and AuNPs is demonstrated. Furthermore, the high specificity of DNA hybridization allowed us to demonstrate selective activation of the evolution of multiple architectures of higher complexity in a single mixture containing small and larger spherical AuNPs and AuNRs.
寡核苷酸对金纳米物体的组织导致了具有不同尺寸、形状和复杂性的许多三维胶体组装体;然而,在形成过程中的自主和时间控制仍然具有挑战性。相比之下,活系统通过内部协调耗散生物大分子网络的组装和拆卸动力学来时空自我调节功能结构的形成。我们提出了一种通过增加一个额外的维度来制造四维金纳米结构的新方法:时间。我们的系统的耗散特性是通过脱氧核糖核酸 (DNA) 燃料的外切酶 III 消化来实现的,脱氧核糖核酸 (DNA) 燃料是一种能量耗散途径。证明了由球形金纳米粒子 (AuNP) 组成的无定形团簇和金纳米棒 (AuNR) 和 AuNP 的明确定义的核-卫星结构的时间控制。此外,DNA 杂交的高特异性允许我们证明在含有小和大的球形 AuNP 和 AuNR 的单个混合物中,对多种更高复杂性的架构的选择性激活。