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首页> 外文期刊>Journal of Bioscience and Bioengineering >Autonomous bottom-up fabrication of three-dimensional nano/microcellulose honeycomb structures, directed by bacterial nanobuilder
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Autonomous bottom-up fabrication of three-dimensional nano/microcellulose honeycomb structures, directed by bacterial nanobuilder

机译:由细菌纳米助剂指导的三维纳米/微纤维素蜂窝结构的自下而上的制造

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摘要

We investigated the autonomous bottom-up fabrication of three-dimensional honeycomb cellulose structures, using Gluconacetobacterxylinus as a bacterial nanoengine, on cellulose honeycomb templates prepared by casting water-in-oil emulsions on glass substrates (Kasai and Kondo, Macromol. Biosci., 4,17-21, 2004). The template film had a unique molecular orientation state along the honeycomb frames, but was non-crystalline. When G. xylinus, used as a nanofiber-producing bacterium, was incubated on the honeycomb scaffold in a culture medium, it secreted cellulose nanofibers only on the upper surface of the honeycomb frame. The movement was regulated by a selective interaction between the synthesized nanoflber and the surface of the honeycomb frames of the template. The relationship between directed deposition of synthesized nanofibers and ordered fabrication from the nano- to the micro-scale could provide a novel bottom-up methodology, using bacteria, for the design of three-dimensional honeycomb structures as functional materials with nano/micro hierarchical structures, with low energy consumption.
机译:我们研究了使用Gluconacetobacterxylinus作为细菌纳米引擎,在通过将油包水型乳剂浇铸在玻璃基板上而制备的纤维素蜂窝模板上对三维蜂窝纤维素结构进行自动的自下而上的制造(Kasai和Kondo,Macromol.Biosci。,4 ,17-21,2004)。模板膜沿蜂窝框架具有独特的分子取向状态,但为非晶态。当用作纳米纤维生产细菌的木霉G. xylinus在培养基中的蜂窝支架上孵育时,它仅在蜂窝框架的上表面分泌纤维素纳米纤维。通过合成的纳米纤维与模板的蜂窝框架表面之间的选择性相互作用来调节运动。合成纳米纤维的定向沉积与从纳米级到微米级有序制造之间的关系,可以为细菌提供一种新颖的自下而上的方法,用于设计三维蜂窝结构作为具有纳米/微米层次结构的功能材料,能耗低。

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