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双层复制硅溶胶晶体膜。

Double Replication of Silica Colloidal Crystal Films.

机构信息

Departments of Chemistry, Biochemistry and Molecular Biology, and Physics, The Pennsylvania State University , University Park, Pennsylvania 16802, United States.

出版信息

ACS Appl Mater Interfaces. 2017 Dec 6;9(48):42075-42083. doi: 10.1021/acsami.7b12662. Epub 2017 Nov 21.

DOI:10.1021/acsami.7b12662
PMID:29131944
Abstract

Inverse opals made by polymerizing vinyl monomers inside a colloidal crystal have lattice dimensions that are contracted relative to the original hard template. This effect was studied in order to investigate the possibility of making double replicas of varying pore sizes from different materials, and to gain a better understanding of the polymer contraction behavior during replication. The degree of lattice contraction was measured using colloidal crystal films formed from silica spheres with diameters in the range 33-225 nm, and polymers pEDMA [poly(1,2-ethanediol dimethacrylate)], pDVB [poly(divinylbenzene)], pHDMA [poly(1,6-hexanediol dimethacrylate)], pBDMA [poly(1,4-butanediol dimethacrylate)], and a 5:4 copolymer mixture of pEDMA/pDVB. The degree of lattice contraction depended on the alkyl chain length of the monomer, as well as the degree of cross-linking, with up to 32% contraction observed for pEDMA when the silica template was removed. However, filling the polymer inverse opals with silica or titania returned the lattice spacing closer to its original size, an effect that can be rationalized in terms of the driving forces for contraction. Double replication of both single-component and binary silica colloidal crystals therefore generated silica and titania replicas of the original lattice. Thus, double replication provides a pathway for accessing periodic structures that are difficult to synthesize directly from materials such as titania.

摘要

由胶体晶体内部聚合乙烯基单体制成的反蛋白石的晶格尺寸相对于原始硬模板收缩。研究了这种效应,以便研究从不同材料制造不同孔径的双复制品的可能性,并更好地了解复制过程中聚合物收缩的行为。使用直径在 33-225nm 范围内的二氧化硅球形成胶体晶体膜,测量了晶格收缩的程度,使用的聚合物为 pEDMA[聚(1,2-乙二基二甲基丙烯酸酯)]、pDVB[聚(二乙烯基苯)]、pHDMA[聚(1,6-己二醇二甲基丙烯酸酯)]、pBDMA[聚(1,4-丁二醇二甲基丙烯酸酯)]和 pEDMA/pDVB 的 5:4 共聚物混合物。晶格收缩的程度取决于单体的烷基链长度以及交联度,当去除二氧化硅模板时,pEDMA 的收缩程度高达 32%。然而,用二氧化硅或二氧化钛填充聚合物反蛋白石,晶格间距更接近原始尺寸,这种效应可以根据收缩的驱动力来解释。因此,单组分和二元二氧化硅胶体晶体的双复制产生了原始晶格的二氧化硅和二氧化钛复制品。因此,双复制为从二氧化钛等材料直接合成的周期性结构提供了一种途径。

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