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Cellulose Perversions

机译:纤维素变态

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摘要

Cellulose microano-fibers can be produced by electrospinning from liquid crystalline solutions. Scanning electron microscopy (SEM), as well as atomic force microscopy (AFM) and polarizing optical microscopy (POM) measurements showed that cellulose-based electrospun fibers can curl and twist, due to the presence of an off-core line defect disclination, which was present when the fibers were prepared. This permits the mimicking of the shapes found in many systems in the living world, e.g., the tendrils of climbing plants, three to four orders of magnitude larger. In this work, we address the mechanism that is behind the spirals’ and helices’ appearance by recording the trajectories of the fibers toward diverse electrospinning targets. The intrinsic curvature of the system occurs via asymmetric contraction of an internal disclination line, which generates different shrinkages of the material along the fiber. The completely different instabilities observed for isotropic and anisotropic electrospun solutions at the exit of the needle seem to corroborate the hypothesis that the intrinsic curvature of the material is acquired during liquid crystalline sample processing inside the needle. The existence of perversions, which joins left and right helices, is also investigated by using suspended, as well as flat, targets. Possible routes of application inspired from the living world are addressed.
机译:纤维素微/纳米纤维可以通过从液晶溶液中电纺丝来生产。扫描电子显微镜(SEM)以及原子力显微镜(AFM)和偏振光学显微镜(POM)的测量结果表明,由于存在芯外线缺陷错位,基于纤维素的电纺纤维会卷曲和扭曲。制备纤维时存在。这允许模仿在现实世界中许多系统中发现的形状,例如,攀爬植物的卷须大三到四个数量级。在这项工作中,我们通过记录纤维朝向各种电纺目标的轨迹,来解决螺旋形和螺旋形外观背后的机理。系统的固有曲率是通过内部错位线的不对称收缩而发生的,内部错位线会沿纤维产生不同的材料收缩率。对于在针的出口处各向同性和各向异性的电纺溶液,观察到的完全不同的不稳定性似乎证实了这样的假说,即在针内部进行液晶样品处理时会获得材料的固有曲率。通过使用悬浮目标和平坦目标,还研究了连接左右螺旋的变态的存在。本文探讨了来自现实世界的可能应用途径。

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