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Size-exclusion 'capture and release' separations using surface-patterned poly(N-isopropylacrylamide) hydrogels

机译:使用表面图案化的聚(N-异丙基丙烯酰胺)水凝胶进行尺寸排阻“捕获和释放”分离

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Micrometer-scale poly(N-isopropylacrylamide) (poly-NIPAAm) hydrogel monolith patterns were fabricated on solid surfaces using soft lithography. At sufficiently high aspect ratios, the hydrogel monoliths swell and contract laterally with temperature. The spaces between the monoliths form a series of trenches that catch, hold, and release appropriately sized targets. A series of poly-NIPAAm monoliths were fabricated with dry dimensions of 40 mu m height, 12 mu m diameter, and a spacing of 12 mu m between monoliths. Above the lower critical solution temperature (LCST), the monoliths collapse to their dry dimensions and the spacing between monoliths is 12 mu m. Below the LCST, the monoliths swell by 70% in the lateral direction, reducing the gap size between monoliths to 3 mu m. The potential use of the hydrogel monoliths as size-selective "catch and release" structures was demonstrated with a mixture of 6 and 20 mu m polystyrene microspheres, where the 6 mu m diameter particles were selectively concentrated and separated from the larger particles.
机译:微米级的聚(N-异丙基丙烯酰胺)(poly-NIPAAm)水凝胶单块图案是使用软光刻在固体表面上制成的。在足够高的纵横比下,水凝胶整料随温度膨胀并横向收缩。整体之间的空间形成一系列沟槽,这些沟槽捕获,保持和释放适当大小的目标。制备了一系列聚-NIPAAm整体料,其干尺寸为高度为40微米,直径为12微米,单料之间的间距为12微米。高于较低的临界溶液温度(LCST),整料坍塌至干尺寸,整料之间的间距为12μm。在LCST下方,整料在横向上膨胀了70%,从而将整料之间的间隙尺寸减小到3μm。用6和20μm聚苯乙烯微球的混合物证明了水凝胶整料作为尺寸选择的“捕获和释放”结构的潜在用途,其中6μm直径的颗粒被选择性地浓缩并与较大的颗粒分离。

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