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Biofabrication methods for the patterned assembly and synthesis of viral nanotemplates

机译:病毒纳米模板的图案化组装和合成的生物制造方法

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This paper reports on novel methodologies for the patterning and templated synthesis of virus-structured nanomaterials in two-and three-dimensional microfabricated architectures using the Tobacco mosaic virus (TMV). The TMV is a high aspect ratio biological molecule which can be engineered to include amino acids with enhanced binding properties. These modifications facilitate self-assembly of the TMV onto various substrates and enable its use as a template for the synthesis of nanostructured materials. This work focuses on the combination of this bottom-up biologically inspired fabrication method with standard top-down micromachining processes that allow direct integration of the virus-structured materials into batch-fabricated devices. Photolithographic patterning of uncoated as well as nickel-coated TMV nanostructures has been achieved using a lift-off process in both solvent and mild basic solutions and their assembly onto three-dimensional polymer and silicon microstructures is demonstrated. In addition to these patterning techniques, in situ formation of metal oxide TMV coatings in patterned microfabricated environments is shown using atomic layer deposition directly on the nickel-coated viruses. The biofabrication 'process toolbox' presented in this work offers a simple and versatile alternative for the hierarchical patterning and incorporation of biotemplated nanomaterials into microanofabrication schemes.
机译:本文报道了使用烟草花叶病毒(TMV)在二维和三维微细加工结构中对病毒结构纳米材料进行图案化和模板化合成的新方法。 TMV是高纵横比的生物分子,其可以被工程化以包括具有增强的结合特性的氨基酸。这些修饰有助于将TMV自组装到各种基材上,并使其可用作合成纳米结构材料的模板。这项工作的重点是这种自下而上的受生物启发的制造方法与标准的自上而下的微加工工艺的结合,该工艺允许将病毒结构的材料直接集成到批生产的设备中。使用剥离工艺在溶剂和温和碱性溶液中均实现了未涂层以及镍涂层的TMV纳米结构的光刻图案化,并展示了它们在三维聚合物和硅微结构上的组装。除了这些构图技术外,还显示了直接在镀镍病毒上使用原子层沉积在构图的微加工环境中原位形成金属氧化物TMV涂层的情况。这项工作中介绍的生物加工“工艺工具箱”提供了一种简单而通用的替代方案,用于将生物模板化的纳米材料进行分层图案化并将其纳入微/纳米加工方案中。

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