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Multifunctional graphene oxide-bacteriophage based porous three-dimensional micro-nanocomposites

机译:多功能基于石墨烯oxide-bacteriophage多孔三维micro-nanocomposites

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摘要

Graphene, since its successful exfoliation and characterisation has been continuously drawing extensive research interests due to its potential for a broad range of applications ranging from energy, microelectronics, through polymer fillers and sensors to environmental and biomedical devices. Exploitation of its unique chemical and physical properties for the manufacturing of functional materials, requires careful structural control and scaling-up into three-dimensional morphologies. Here, a facile method is established to create and control the bottom-up self-assembly of graphene oxide nano-sheets via unprecedented integration with a highly versatile bio-ingredient, the filamentous bacteriophage M13, into hierarchical, three-dimensional, porous sponges of GraPhage13. This study explores the interplay of the GraPhage13 structure formation and studies the mechanisms that give rise to the controllable self-assembly. The straightforward fabrication of robust hierarchical micro-nano-architectures further lays a platform for applications in energy storage and conversion, catalysis and sensing.
机译:石墨烯,因为其成功剥离描述不断画广泛的研究,由于其潜在的利益从广泛的应用程序能源、微电子、通过聚合物填料和传感器对环境和生物医学设备。物理性质的制造业结构功能材料,需要小心控制和扩大到三维形态。建立和控制自底向上氧化石墨烯的自组装nano-sheets通过前所未有的高度通用的集成bio-ingredient丝状噬菌体M13,层次、三维多孔GraPhage13海绵。GraPhage13结构形成的相互作用产生的机制和研究可控的自组装。制造的层次micro-nano-architectures进一步奠定了平台在能量存储和应用程序转换,催化和传感。

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