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首页> 外文期刊>Nanoscale >Supramolecular self-assembly of biopolymers with carbon nanotubes for biomimetic and bio-inspired sensing and actuation
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Supramolecular self-assembly of biopolymers with carbon nanotubes for biomimetic and bio-inspired sensing and actuation

机译:超分子自组装的生物聚合物碳纳米管对仿生以及仿生传感和驱动

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摘要

Biopolymers are important natural multifunctional macromolecules for biomimetic and bio-inspired advanced functional material design. They are not only simple dispersants for carbon nanotube stabilization as they have been found to have specific interactions with carbon nanotubes. Their molecular activity, orientation and crystallization are influenced by the CNTs, which endow their composites with a variety of novel sensing and actuation performances. This review focuses on the progress in supramolecular self-assembly of biopolymers with carbon nanotubes, and their advances in sensing and actuation. To promote the development of advanced biopolymer/CNT functional materials, new electromechanical characteristics of biopolymer/CNT composites are discussed in detail based on the relationship between the microscopic biopolymer structures and the macroscopic composite properties.
机译:生物聚合物是重要的天然多功能对仿生以及仿生高分子先进功能材料的设计。只有简单的分散剂,碳纳米管稳定,因为他们已经被发现具体与碳纳米管的相互作用。它们的分子活动,取向和纳米结晶的影响,赋予他们的复合材料与各种各样的小说传感和驱动性能。关注的是超分子的进展自组装的生物聚合物和碳纳米管和他们在传感和进步驱动。生物聚合物/ CNT功能材料,新的机电的特点生物聚合物/问复合材料进行了较为详细的试验研究基于微观之间的关系生物聚合物结构和宏观复合属性。

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