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用于构建具有预先设计形态的复杂金纳米结构的组装、生长和剥离(AGLO)策略。

The assemble, grow and lift-off (AGLO) strategy to construct complex gold nanostructures with pre-designed morphologies.

作者信息

Luo Xin, Lachance-Brais Christophe, Bantle Amy, Sleiman Hanadi F

机构信息

Department of Chemistry, McGill University 801 Sherbrooke Street West Montreal Quebec H3A 0B8 Canada

出版信息

Chem Sci. 2020 Apr 23;11(19):4911-4921. doi: 10.1039/d0sc00553c.

Abstract

The construction of metallic nanostructures with customizable morphologies and complex shapes has been an essential pursuit in nanoscience. DNA nanotechnology has enabled the fabrication of increasingly complex DNA nanostructures with unprecedented specificity, programmability and sub-nanometer precision, which makes it an ideal approach to rationally organize metallic nanostructures. Here we report an Assemble, Grow and Lift-Off (AGLO) strategy to construct robust standalone gold nanostructures with pre-designed customizable shapes in solution, using only a simple 2D DNA origami sheet as a versatile transient template. Gold nanoparticle (AuNP) seeds were firstly assembled onto the pre-designed binding sites of the DNA origami template and then additional gold was slowly deposited onto the AuNP seeds. The growing seed surfaces eventually merge with adjacent seeds to generate one continuous gold nanostructure in a pre-designed shape, which can then be lifted off the origami template. Diverse customized patterns of templated AuNP seeds were successfully transformed into corresponding gold nanostructures with the target structure transformation percentage over 80%. Moreover, the AGLO strategy can be incorporated with a magnetic bead separation platform to enable the easy recycling of the excess AuNP seeds and DNA components.

摘要

构建具有可定制形态和复杂形状的金属纳米结构一直是纳米科学领域的重要追求。DNA纳米技术能够制造出越来越复杂的DNA纳米结构,具有前所未有的特异性、可编程性和亚纳米精度,这使其成为合理组织金属纳米结构的理想方法。在此,我们报告一种组装、生长和剥离(AGLO)策略,仅使用简单的二维DNA折纸薄片作为通用的瞬态模板,在溶液中构建具有预先设计的可定制形状的坚固独立金纳米结构。首先将金纳米颗粒(AuNP)种子组装到DNA折纸模板的预先设计的结合位点上,然后将额外的金缓慢沉积到AuNP种子上。生长的种子表面最终与相邻种子融合,形成一个预先设计形状的连续金纳米结构,然后可以从折纸模板上剥离下来。多种定制图案的模板化AuNP种子成功转化为相应的金纳米结构,目标结构转化百分比超过80%。此外,AGLO策略可与磁珠分离平台相结合,实现过量AuNP种子和DNA成分的轻松回收。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4f6/8159246/320fb7e6209d/d0sc00553c-f1.jpg

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