Zhao Yue, An Linan, Fang Jiyu
Advanced Materials Processing and Analysis Center, Department of Mechanical, Materials, and Aerospace Engineering, University of Central Florida, Orlando, Florida 32816, USA.
Nano Lett. 2007 May;7(5):1360-3. doi: 10.1021/nl070408v. Epub 2007 Apr 17.
Self-assembled hollow lipid tubules are interesting and potentially useful supramolecular structures. Here, we study the deformation of lipid tubules of 1,2-bis(tricosa-10,12-diynoyl)-sn-glycero-3-phosphocholine (DC8,9PC) trapped inside liquid droplets on glass substrates. The interface tension of the shrinking liquid droplets exerts a compression force on the ends of the trapped lipid tubules, and causes them to buckle. This provides a method to measure their mechanical properties. The Young's modulus of the DC8,9PC lipid tubules is estimated to approximately 1.07 GPa. As the strain energy of the buckled tubules builds up, they poke through the interface of shrinking liquid droplets and then adhere onto glass substrates to form looplike shapes.
自组装空心脂质微管是有趣且具有潜在用途的超分子结构。在此,我们研究了被困在玻璃基板上液滴内的1,2-双(二十三碳-10,12-二炔酰基)-sn-甘油-3-磷酸胆碱(DC8,9PC)脂质微管的变形情况。收缩液滴的界面张力对被困脂质微管的两端施加压缩力,使其发生弯曲。这提供了一种测量其力学性能的方法。DC8,9PC脂质微管的杨氏模量估计约为1.07吉帕。随着弯曲微管的应变能积累,它们会刺穿收缩液滴的界面,然后附着在玻璃基板上形成环状。