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Non-adhesive PEG hydrogel nanostructures for self-assembly of highly ordered colloids

机译:非粘性PEG水凝胶纳米结构,用于高度有序胶体的自组装

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In this paper, we report on the effect of patterned non-adhesive hydrogel nanosurfaces on the self-assembly of highly ordered colloids. Polyethylene glycol (PEG) hydrogel is employed as the substrate material in the study, for its desired non-adhesive property, and biocompatibility as well as photopatternability. Ultrafine PEG features are photopatterned onto glass substrates with minimal feature resolution of 500 nm using ultraviolet or deep ultraviolet exposure. By simply controlling the colloidal concentration of the nanoassembly solutions and the dimensions of the wells, a range of highly organized nanocolloidal patterns are formed inside the PEG wells. Unlike the traditional surface modification techniques, ours takes advantage of the unique non-adhesive property of PEG hydrogels to achieve extremely high selectivity in the pattern-assisted nanoassembly. Our experiments show that with oxygen plasma treatment, the non-adhesive property of the PEG surface deteriorates significantly, leading to non-selective assembly with complete surface coverage of nanocolloidal beads under the same processing condition. Therefore, benefiting from the unique non-adhesive surface property, the pattern-assisted nanoassembly method enables a highly predictable and robust process for colloidal nanofabrication, and the obtained nanocolloidal arrays with well organized patterns could potentially find applications in photonic crystal fabrication, biological sensing and analytical detection.
机译:在本文中,我们报告了图案化的非粘性水凝胶纳米表面对高度有序胶体自组装的影响。聚乙二醇(PEG)水凝胶由于其所需的非粘附性,生物相容性以及光图案性而被用作研究的底物。使用紫外线或深紫外线曝光,以500 nm的最小特征分辨率将超细PEG特征图案化到玻璃基板上。通过简单地控制纳米组装溶液的胶体浓度和孔的尺寸,在PEG孔内部形成了一系列高度组织化的纳米胶体图案。与传统的表面改性技术不同,我们的技术利用了PEG水凝胶独特的非粘性特性,在图案辅助纳米组装中实现了极高的选择性。我们的实验表明,在氧等离子体处理下,PEG表面的非粘合性能会大大降低,从而导致在相同加工条件下纳米胶体微珠的表面完全覆盖的非选择性组装。因此,得益于独特的非粘性表面特性,图案辅助纳米组装方法可实现胶体纳米加工的高度可预测且鲁棒的过程,并且所获得的具有良好组织的图案的纳米胶体阵列可潜在地在光子晶体制造,生物传感和生物医学等领域得到应用。分析检测。

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