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Controlled Fabrication of Microparticles with Complex 3D Geometries by Tunable Interfacial Deformation of Confined Polymeric Fluids in 2D Micromolds

机译:通过二维微模具中受限聚合物流体的可调谐界面变形,控制具有复杂3D几何形状的微粒的可控加工

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Polymeric microparticles with complex shapes have attracted "substantial attention in many, application areas because particle shape is a critical parameter to impart programmable functionalities. The formation of specific three-dimensional (3D) microstructures in a simple, scalable, and controllable manner is difficult. Here, we report the controlled fabrication of microparticles with complex 3D shapes based on the Simple tuning of mold swelling and capillarity. Specifically; a photocurable solution loaded in micromolds is spatially deformed into complex shapes depending on the degree of molding swelling and capillarity, thereby producing polymeric microparticles with controlled 3D shapes upon photopolymerization. The results show that highly uniform microparticles with controlled two-dimensional (2D) and 3D shapes were fabricated from identical 2D micromolds via the simple tuning of the wetting fluids, This technique can be extended to produce highly complex microarchitectures With controlled 3D geometric domains via 2D mold designs. Finally, multicompartment microparticles with independently controlled 3D shapes for each compartment are produced by a simple combination of fabrication sequences. We envision that this strategy of producing 3D microarchitectures from easily designed simple micromolds could provide a path to new materials and new properties.
机译:具有复杂形状的聚合物微粒已经吸引了许多应用领域的广泛关注,因为微粒形状是赋予可编程功能的关键参数。以简单,可扩展和可控制的方式形成特定的三维(3D)微观结构非常困难。在此,我们根据对模具溶胀和毛细作用的简单调节,报告了具有复杂3D形状的微粒的受控制备,具体而言,根据成型溶胀和毛细作用的程度,装载在微模具中的光固化溶液在空间上变形为复杂形状,从而产生结果表明,通过对润湿液进行简单调整,由相同的2D微型模具可制造出具有均一的二维(2D)和3D形状的高度均一的具有受控二维(2D)和3D形状的微粒。具有c的复杂微体系结构通过2D模具设计导入3D几何域。最后,通过简单地组合制造顺序来生产每个隔室具有独立控制的3D形状的多隔室微粒。我们设想,这种由易于设计的简单微模具生产3D微体系结构的策略可能会提供通往新材料和新特性的途径。

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