操纵液晶聚合物介介取向的微管光控液体输运

Quan Liu, Yuyun Liu, Jiu‐an Lv, Erqiang Chen, Yanlei Yu
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引用次数: 16

摘要

由光可变形液晶聚合物(lcp)制造的管状微致动器(tma)为智能微流体应用铺平了重要的道路,具有非接触式,空间和精确的液体操纵。为了在这些tma中实现液体输送,lcp必须具有优异的光变形性能和合适的力学性能。本文采用不同介观取向的线性液晶聚合物(LLCPs)制备TMAs,研究其输运行为。每个LLCP中的介观取向都是自发形成的,并且随着间隔层长度的变化而变化,导致LLCP膜的变形不同。研究发现,只有介元朝向平面外的llcp才能实现tma的自支撑,而介元朝向平面内的tma则非常弱,会在径向上坍塌,这表明介元朝向在制造三维结构中的重要性。在470 nm的弱光照射下,TMAs变形成不对称的锥形结构,导致液体段塞向窄侧运动。液体运动在间隔较长的TMA中加速,表明液体速度受介观取向的控制。这些光控tma有望应用于生物应用,如全血分析和流式细胞术,用于精确的液体操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photocontrolled Liquid Transportation in Microtubes by Manipulating Mesogen Orientations in Liquid Crystal Polymers
Tubular microactuators (TMAs) fabricated by photodeformable liquid crystal polymers (LCPs) pave a significant way for smart microfluidic applications with contactless, spatial, and precise manipulation of liquids. To realize liquid transportation in these TMAs, LCPs should have excellent photodeformation property and suitable mechanical properties. Herein, linear liquid crystal polymers (LLCPs) with different mesogen orientations are used to prepare TMAs to study their liquid transportation behaviors. The mesogen orientation in each LLCP is formed spontaneously and varies with the spacer length, leading to different deformations of LLCP films. It is found that only LLCPs with mesogens oriented out‐of‐plane realize self‐support of the TMAs, whereas the TMAs with mesogens oriented in‐plane are so weak that they collapse in the radial direction, indicating the importance of mesogen orientation in fabricating three‐dimensional structures. Upon attenuated 470 nm light irradiation, the TMAs deform to an asymmetric conical structure, leading to the motion of liquid slug toward the narrow side. The liquid motion is accelerated in the TMA with longer spacer, showing the control of liquid speed by the mesogen orientation. These photocontrolled TMAs are expected to be applied in biological applications, such as whole blood analysis and flow cytometry, for precise liquid manipulation.
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