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一种用于水相环境的仿生物湿/干微流控粘合剂。

A bioinspired wet/dry microfluidic adhesive for aqueous environments.

机构信息

Department of Chemical Engineering, Indian Institute of Technology, Kanpur 208016, India.

出版信息

Langmuir. 2010 Jan 5;26(1):521-5. doi: 10.1021/la9021849.

Abstract

A pressure-sensitive, nonreacting and nonfouling adhesive which can perform well both in air and underwater is very desirable because of its potential applications in various settings such as biomedical, marine, and automobile. Taking a clue from nature that many natural adhesive pads have complex structures underneath the outer adhesive layer, we have prepared thin elastic adhesive films with subsurface microstructures using PDMS (poly(dimethylsiloxane)) and investigated their performance underwater. The presence of embedded structure enhances the energy of adhesion considerably both in air and underwater. Furthermore, filling the channels with liquid of suitable surface tension modifies the internal stress profile, resulting into significant enhancement in adhesive performance. As this increase in adhesion is mediated by mechanics and not by surface chemistry, the presence of water does not alter its performance much. For the same reason, this adhesion mechanism works with both hydrophobic and hydrophilic surfaces. The adhesive can be reused because of its elastic surface. Moreover, unlike many other present-day adhesives, its performance does not decrease with time.

摘要

由于其在生物医学、海洋和汽车等各种环境中的潜在应用,一种具有压力敏感性、不反应和不污染的粘合剂在空气和水下都能很好地发挥作用,这是非常理想的。从许多天然粘合剂垫在外部粘合剂层下面具有复杂结构的自然线索中,我们使用 PDMS(聚二甲基硅氧烷)制备了具有亚表面微结构的薄弹性粘合剂膜,并研究了它们在水下的性能。嵌入式结构的存在大大提高了在空气和水下的附着力能量。此外,用具有适当表面张力的液体填充通道会改变内部应力分布,从而显著提高粘合性能。由于这种粘附力的增加是通过力学而不是通过表面化学来介导的,因此水的存在不会使其性能发生太大变化。由于同样的原因,这种粘附机制适用于疏水和亲水表面。由于其弹性表面,粘合剂可以重复使用。此外,与许多其他现有的粘合剂不同,其性能不会随时间而降低。

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