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Configuration-Controllable Polymeric Nanovehicles Self-Assembled in Pixel Grids under an Electric Field

机译:配置可控聚合物纳米座在电场下的像素网格中自组装

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摘要

Polymeric nanovehicles have been widely applied in many fields, but during the process of preparation, it is still hard to reach the balance between precise structure control and mass production. In the present work, using industrial pixel grids as the macroscopic template, we applied dual effects of confinement and dielectric difference to speed up the self-assembly of polymeric nanovehicles, even to regulate the generated mesostructures and cargo loading. Within 2 min, a poly(ethylene glycol)-block-poly(D,L-lactide acid) (PEG-b-PDLLA) amphiphilic block copolymer layer was rapidly pushed off and broken down into uniform nanoparticles at 40 V. Hereinto, increasing volume of the outer aqueous phase in pixel grids favored the architectonic transformation of the generated nanovehicles from solid micelles with a diameter of 95 nm to hollow vesicles with a diameter of 232 nm. In particular, all the elements from the confinement cells to the preparation process can be completed via wet printing. Electric-field-induced pixel template technology is facile, cheap, controllable, and recyclable, and it is anticipated to promote continuous and bulk production of polymeric nanovehicles.
机译:聚合物纳米座上已广泛应用于许多领域,但在制备过程中,仍然难以达到精确的结构控制和批量生产之间的平衡。在本作工作中,使用工业像素网格作为宏观模板,我们应用了限制和介电差的双重效应,加速了聚合物纳米座的自组装,甚至调节产生的型腹腔和货物负荷。在2分钟内,迅速推断聚(乙二醇)-BlOck-poly(d,L-丙交酯)(PEG-B-PDLEA)两亲嵌段共聚物层并在40V下分解成均匀的纳米颗粒。介绍,增加像素网格中的外水相的体积有利于从直径为95nm的固体胶束的所生物纳米粒子的建筑学转化,以具有直径为232nm的中空囊泡。特别地,可以通过湿印刷完成来自限制细胞到制备过程的所有元素。电场诱导的像素模板技术是便宜的,便宜,可控的和可回收的,并且预计将促进聚合物纳米座的连续和散装生产。

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