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Photoinitiated Marangoni flow morphing in a liquid crystalline polymer film directed by super-inkjet printing patterns

机译:超级喷墨印刷图案指导的液晶聚合物薄膜中的光引发Marangoni流动形变

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摘要

Slight contaminations existing in a material lead to substantial defects in applied paint. Herein, we propose a strategy to convert this nuisance to a technologically useful process by using an azobenzene-containing side chain liquid crystalline (SCLCP) polymer. This method allows for a developer-free phototriggered surface fabrication. The mass migration is initiated by UV-light irradiation and directed by super-inkjet printed patterns using another polymer on the SCLCP film surface. UV irradiation results in a liquid crystal-to-isotropic phase transition, and this phase change immediately initiates a mass migration to form crater or trench structures due to the surface tension instability known as Marangoni flow. The transferred volume of the film reaches approximately 440-fold that of the polymer ink, and therefore, the printed ink pattern acts as a latent image towards the amplification of surface morphing. This printing-aided photoprocess for surface inscription is expected to provide a new platform of polymer microfabrication.
机译:材料中存在的轻微污染会导致涂漆严重缺陷。本文中,我们提出了一种策略,通过使用含偶氮苯的侧链液晶(SCLCP)聚合物将这种讨厌的东西转换为技术上有用的过程。该方法允许无显影剂的光触发表面制造。质量迁移是通过紫外线照射引发的,并通过在SCLCP膜表面上使用另一种聚合物的超级喷墨印刷图案进行控制。 UV照射导致液晶向各向同性的相变,并且由于已知为Marangoni流的表面张力不稳定性,这种相变会立即引发质量迁移,从而形成火山口或沟槽结构。膜的转移体积达到聚合物墨水的约440倍,因此,印刷的墨水图案可作为潜像,促进表面变形的扩大。这种用于表面刻印的印刷辅助光工艺有望为聚合物微细加工提供一个新的平台。

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