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自组装二肽的三维打印。

Three-Dimensional Printing of Self-Assembled Dipeptides.

机构信息

Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, China.

出版信息

ACS Appl Mater Interfaces. 2021 May 5;13(17):20573-20580. doi: 10.1021/acsami.1c03062. Epub 2021 Apr 26.

Abstract

Peptide-based materials are emerging as smart building blocks for nanobiodevices due to the programmability of their properties via the molecular constituents or arrangements. Many clever molecular self-assembly approaches have been devised to produce peptide crystalline structures. However, their freeform shaping remains a challenge due to the intrinsic self-assembly nature. Here, we report the fabrication of freeform, crystalline diphenylalanine (FF) peptide structures by combining meniscus-guided 3D printing with molecular self-assembly. Self-assembly in 3D-printed FF arises from mild thermal activation under precise temperature control of the build platform. After thorough characterizations, we demonstrate layer-by-layer, crystalline 3D printing with a high spatial resolution of 2 μm laterally and 200 nm vertically. The 3D-printed FF exhibits piezoelectricity originating from its crystalline character, showing the potential to become a key constituent for bioelectronic devices. We expect this technique to open up the possibility to create functional devices based on self-assembled organic materials without design restrictions.

摘要

基于肽的材料由于其分子组成或排列的可编程性而成为纳米生物器件的智能构建块。已经设计了许多巧妙的分子自组装方法来产生肽晶体结构。然而,由于其内在的自组装性质,它们的自由成型仍然是一个挑战。在这里,我们报告了通过结合界面引导 3D 打印和分子自组装来制造自由形态、结晶的二苯丙氨酸 (FF) 肽结构。3D 打印 FF 中的自组装是通过在构建平台的精确温度控制下进行温和的热激活产生的。经过彻底的表征,我们展示了具有 2 μm 横向和 200 nm 纵向高空间分辨率的层状、结晶 3D 打印。3D 打印的 FF 表现出源于其晶体特性的压电性,显示出成为生物电子设备关键组成部分的潜力。我们期望这项技术能够为基于自组装有机材料的功能器件开辟可能性,而不受设计限制。

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