Department of Chemical and Biological Engineering, Korea University, Seoul 02841, Republic of Korea.
Lab Chip. 2020 Jan 7;20(1):74-83. doi: 10.1039/c9lc00828d. Epub 2019 Nov 20.
Replica molding techniques, which are used to synthesize microparticles inside anisotropic micromolds, have been developed to enable the mass production of hydrogel particles. However, these techniques are limited in their ability to synthesize only a narrow range of particle compositions and shapes because of the difficulty in loading precursors into the micromolds as well as the low particle homogeneity due to the uneven evaporation of the precursors. Herein, we describe a simple yet powerful technique, called degassed micromolding lithography, which can load precursors within 1 min regardless of the wettability. This technique is based on the gas-solubility of a degassed micromold that acts as a suction pump to completely fill the mold by drawing precursor liquids in. The semi-closed system within the micromold prevents the uneven evaporation of the precursor, which is essential for the production of homogeneous particles. Furthermore, controlled uniformity of the hydrogel microparticles (C.V. < 2%) can be achieved by engineering the design of the micromold array.
复制成型技术用于在各向异性微模具内合成微粒子,已经开发出来以实现水凝胶颗粒的大规模生产。然而,由于难以将前体装入微模具以及由于前体的不均匀蒸发导致颗粒的均匀性低,这些技术在合成粒子的组成和形状方面受到限制。在此,我们描述了一种简单而强大的技术,称为脱气微模注塑光刻技术,它可以在 1 分钟内装入前体,而与润湿性无关。该技术基于脱气微模具的气体溶解度,脱气微模具充当真空泵,通过吸入前体液体完全填充模具。微模具内的半封闭系统防止了前体的不均匀蒸发,这对于生产均匀的颗粒至关重要。此外,通过设计微模具阵列的工程,可以实现水凝胶微球的均匀性控制(C.V. < 2%)。