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具有双功能DNA涂层的Janus胶体在一维和二维结构之间的可重构转变

Reconfigurable Transitions between One- and Two-Dimensional Structures with Bifunctional DNA-Coated Janus Colloids.

作者信息

Oh Joon Suk, Yi Gi-Ra, Pine David J

机构信息

Center for Soft Matter Research and Department of Physics, New York University, New York, New York 10003, United States.

Department of Chemical Engineering, Sungkyunkwan University, Suwon, 16419, Republic of Korea.

出版信息

ACS Nano. 2020 Nov 24;14(11):15786-15792. doi: 10.1021/acsnano.0c06846. Epub 2020 Oct 22.

Abstract

Coating colloidal particles with DNA provides one of the most versatile and powerful methods for controlling colloidal self-assembly. Previous studies have shown how combining DNA coatings with DNA strand displacement allows one to design phase transitions between different three-dimensional crystal structures. Here we show that by using DNA coatings with bifunctional colloidal Janus particles, we can realize reconfigurable thermally reversible transitions between one- and two-dimensional self-assembled colloidal structures. We introduce a colloidal system in which DNA-coated asymmetric Janus particles can reversibly switch their Janus balance in response to temperature, resulting in the reconfiguration of assembling structures between colloidal chains and bilayers. Each face of the Janus particles is coated with different self-complementary DNA strands. Toehold strand displacement is employed to selectively activate or deactivate the sticky ends on the smaller face, which enables Janus particles to selectively assemble through either the smaller or larger face. This strategy could be useful for constructing complex systems that could be reconfigured to assemble into different structures in different environments.

摘要

用DNA包覆胶体颗粒为控制胶体自组装提供了最通用且强大的方法之一。先前的研究表明,将DNA包覆与DNA链置换相结合,能够设计不同三维晶体结构之间的相变。在此我们表明,通过使用带有双功能胶体Janus颗粒的DNA包覆,我们可以实现一维与二维自组装胶体结构之间的可重构热可逆转变。我们引入了一种胶体系统,其中DNA包覆的不对称Janus颗粒能够响应温度可逆地切换其Janus平衡,从而导致组装结构在胶体链和双层之间重新配置。Janus颗粒的每个面都包覆有不同的自互补DNA链。采用链置换引发来选择性地激活或失活较小面上的粘性末端,这使得Janus颗粒能够通过较小面或较大面进行选择性组装。这种策略对于构建能够在不同环境中重新配置以组装成不同结构的复杂系统可能很有用。

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