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Biomimetic Materials: Stretch‐Healable Molecular Nanofibers (Adv. Theory Simul. 10/2020)
Advanced Theory and Simulations ( IF 3.3 ) Pub Date : 2020-10-05 , DOI: 10.1002/adts.202070023
Yanxiao Han , Michal Langer , Miroslav Medved’ , Michal Otyepka , Petr Král

Ultra‐stretchable self‐healable nanofibers have been designed by Michal Otyepka, Petr Král, and co‐workers, inspired by spider silk, which has fascinating properties and molecular structures. The nanofibers, reported in article number 2000094, are formed by assemblies of coronene and perfluorocoronene molecular flakes covalently connected by short flexible molecular linkers. Molecular dynamics simulations revealed that the speed of forced stretching and released reassembly of the nanofibers depend on the environment humidity.
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中文翻译:

仿生材料:可拉伸愈合的分子纳米纤维(Adv。Theory Simul。10/2020)

Michal Otyepka,PetrKrál和同事设计的超可拉伸自修复纳米纤维受到蜘蛛丝的启发,蜘蛛丝具有令人着迷的特性和分子结构。在文章号2000094中报道的纳米纤维是由通过短的柔性分子连接体共价连接的二氧化丙烯和全氟二氧化萘分子薄片的组件形成的。分子动力学模拟表明,纳米纤维的强制拉伸和释放的重组速度取决于环境湿度。
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更新日期:2020-10-05
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