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Bio nano ink for 4D printing membrane proteins

机译:用于4D打印膜蛋白的生物纳米墨水

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The transfer of bio-functionality from natural living organisms to stable engineered environments opens a wide horizon of applications. Our work focusses on the creation of materials and devices that transform bio traits and collect, process and act on the information in response to changes in their local environment, thus promoting additive manufacturing from 3D space to a four-dimensional, functional space. In this work we have expanded the set of tools enabling the incorporation of biological function as an intrinsic property in the devices we print with a new class of light curable bio nano ink. This novel approach allows the 3D printing of acrylic polymer compositions containing biological materials, especially, membrane proteins using a photo (407 nm) curing stereolithography (SLA)/digital light processing (DLP) 3D printer. Retaining the bio functionality of these proteins gives a fourth dimensional (4D) aspect to this construct. Herein, we report the 4D printing of a bio-inspired nano hybrid electrode for water-splitting applications using a polymeric resin with proton-pumping bacteriorhodopsin (bR), silver nanoparticles (Ag NP) and carbon nanotubes (CNT). These printed photo electrochemical cells exhibit high durability, low onset over potential, and upon light irradiation (535 nm) produces hydrogen by a synergistic effect of Ag NP and bR.
机译:生物功能从天然生物转移到稳定的工程环境中,开辟了广阔的应用前景。我们的工作专注于创造可改变生物特征并响应其当地环境变化而对信息进行收集,处理和操作的材料和设备,从而将增材制造从3D空间推广到四维功能空间。在这项工作中,我们扩展了工具集,使我们能够在使用新型光固化生物纳米墨水打印的设备中将生物学功能作为一种内在特性纳入其中。这种新颖的方法允许使用光(407 nm)固化立体光刻(SLA)/数字光处理(DLP)3D打印机对包含生物材料(尤其是膜蛋白)的丙烯酸聚合物组合物进行3D打印。保留这些蛋白质的生物功能可为该构建体提供第四维(4D)方面。在本文中,我们报告了使用具有质子泵送细菌视紫红质(bR),银纳米颗粒(Ag NP)和碳纳米管(CNT)的聚合物树脂进行水裂解应用的生物启发纳米混合电极的4D打印。这些印刷的光电化学电池表现出高的耐久性,低的过电位,并且在光照射(535 nm)时通过Ag NP和bR的协同作用产生氢。

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