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作为软致动器的马氏体有机晶体。

Martensitic organic crystals as soft actuators.

作者信息

Li Liang, Commins Patrick, Al-Handawi Marieh B, Karothu Durga Prasad, Halabi Jad Mahmoud, Schramm Stefan, Weston James, Rezgui Rachid, Naumov Panče

机构信息

New York University Abu Dhabi , Abu Dhabi , POB 129188 , United Arab Emirates . Email:

Radcliffe Institute for Advanced Study , Harvard University , 10 Garden St. , Cambridge , MA 02138 , USA.

出版信息

Chem Sci. 2019 Jul 24;10(31):7327-7332. doi: 10.1039/c9sc02444a. eCollection 2019 Aug 21.

Abstract

Being capable of rapid and complete structure switching, the martensitic phase transitions in molecular crystals are thought to hold a tremendous potential as thermally driven organic actuators. However, the mechanical engineering parlance in the assessment of their performance is not immediately legible to the chemistry research community that starts to explore these materials, and the unavailability of performance indices has precluded molecular crystals from being considered in the device design process. Here, we demonstrate that an organic martensite, hexamethylbenzene, can be used to perform work that is comparable to that of most actuator classes. Millimeter-size single crystals of this material undergo a transition between two forms by uniaxial expansion at a rate of 6.36(2) mm s, exerting force in the range 10-100 mN. The force-to-weight ratio of the crystals is on the order of 10 and is superior to that of some living creatures. An actuator performance chart reveals that the performance of this material is close to that of nanomuscles, electrostatic actuators and voice coils, with a strain higher than that of electro/magnetostrictive actuators and ceramic piezoelectrics and stress higher than that of the electroactive polymers, MEMS devices, nanomuscles, voice coils, and some solenoids. Moreover, the crystals of this material are mechanically compliant and can be reversibly bent and shaped to fit the desired application. Altogether, the results point to the untapped potential of molecular crystals as rapid and efficient soft, organic actuators.

摘要

由于能够快速且完全地进行结构转变,分子晶体中的马氏体相变被认为作为热驱动的有机致动器具有巨大潜力。然而,对于刚开始探索这些材料的化学研究群体而言,评估其性能时所使用的机械工程术语并非一目了然,而且性能指标的缺乏使得分子晶体在器件设计过程中未被纳入考虑。在此,我们证明了一种有机马氏体——六甲基苯,可用于完成与大多数致动器类型相当的功。这种材料的毫米尺寸单晶通过以6.36(2)毫米/秒的速率进行单轴膨胀,在两种形式之间发生转变,施加的力在10 - 100毫牛范围内。晶体的力与重量比约为10,优于一些生物。一个致动器性能图表显示,这种材料的性能接近纳米肌肉、静电致动器和音圈,其应变高于电/磁致伸缩致动器和陶瓷压电材料,应力高于电活性聚合物、微机电系统器件、纳米肌肉、音圈和一些螺线管。此外,这种材料的晶体具有机械柔顺性,可被可逆地弯曲和塑形以适应所需应用。总体而言,这些结果表明分子晶体作为快速且高效的软性有机致动器具有尚未开发的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beac/6837004/12e8af826d66/c9sc02444a-f1.jpg

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