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光和电精确控制耗散自组装。

Precise Control of Dissipative Self-assembly by Light and Electricity.

机构信息

Department of Chemistry, University of California Irvine, Irvine, California, 92697, United States.

Center for Complex and Active Materials, University of California, Irvine, Irvine, California, 92697, United States.

出版信息

Chemistry. 2023 May 11;29(27):e202300347. doi: 10.1002/chem.202300347. Epub 2023 Mar 27.

Abstract

Nature-inspired synthetic dissipative self-assemblies have attracted much attention recently. However, it remains a major challenge to achieve precise control over dissipative supramolecular assembly structures and functions of self-contained systems. Here we combine light and electricity as two clean, and spatiotemporally addressable fuels to provide precise control over the morphology for dissipative self-assembly of a perylene bisimide glycine (PBIg) building block in a self-contained solution. In this design, electrochemical oxidation provides the positive fuel to activate PBIg self-assembly while photoreduction supplies the negative fuel to deactivate the system for disassembly. Through programming the two counteracting fuels, we demonstrated the control of PBIg self-assembly into a variety of assembly morphologies in a self-contained system. In addition, by exerting light and electrical dual fuels simultaneously, we could create an active homeostasis exhibiting dynamic instability, leading to morphological change to asymmetric assemblies with curvatures. Such precise control over self-assembly of self-contained systems may find future applications in programming complex active materials as well as formulating pharmaceutical reagents with desired morphologies.

摘要

受自然启发的合成耗散自组装最近引起了广泛关注。然而,实现对自包含系统中耗散超分子组装结构和功能的精确控制仍然是一个重大挑战。在这里,我们结合光和电作为两种清洁且时空可控的燃料,对包含在内的溶液中芘二酰亚胺甘氨酸(PBIg)砌块的耗散自组装的形态进行精确控制。在该设计中,电化学氧化提供正燃料以激活 PBIg 自组装,而光还原提供负燃料以使系统失活以进行拆卸。通过编程这两种相互抵消的燃料,我们证明了可以控制 PBIg 自组装成自包含系统中的各种组装形态。此外,通过同时施加光和电两种燃料,我们可以创建具有动态不稳定性的主动动态平衡,导致具有曲率的不对称组装的形态变化。这种对自包含系统自组装的精确控制可能会在未来的复杂活性材料编程以及具有所需形态的药物试剂的制定中找到应用。

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