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dc.contributor.author최진호-
dc.date.accessioned2016-08-28T12:08:05Z-
dc.date.available2016-08-28T12:08:05Z-
dc.date.issued2011-
dc.identifier.issn1861-4728-
dc.identifier.otherOAK-7240-
dc.identifier.urihttps://dspace.ewha.ac.kr/handle/2015.oak/221322-
dc.description.abstractThe fabrication of layered nanomaterials, such as inorganic-inorganic, organic-inorganic, and bioinorganic nanohybrids has been demonstrated through controlled lattice engineering techniques including intercalation, exfoliation-reassembling, and pillaring reactions. Such a lattice engineering method gives rise to an almost unlimited set of new hybrid compounds with a large spectrum of desirable properties. Due to the unique two-dimensional structures and properties, various kinds of functional nanohybrid materials can be utilized as photocatalysts, electrode materials, superconducting thin films, gas separation membranes, drug-delivery systems, and biomolecule reservoirs. Go nano! The fabrication of layered nanomaterials, such as inorganic-inorganic, organic-inorganic, and bioinorganic nanohybrids (see picture), has been demonstrated through controlled lattice engineering techniques, including intercalation, exfoliation-reassembling, and pillaring reactions. Copyright © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.-
dc.languageEnglish-
dc.titleA lattice-engineering route to heterostructured functional nanohybrids-
dc.typeReview-
dc.relation.issue2-
dc.relation.volume6-
dc.relation.indexSCIE-
dc.relation.indexSCOPUS-
dc.relation.startpage324-
dc.relation.lastpage338-
dc.relation.journaltitleChemistry - An Asian Journal-
dc.identifier.doi10.1002/asia.201000578-
dc.identifier.wosidWOS:000286440600006-
dc.identifier.scopusid2-s2.0-79251514642-
dc.author.googlePaek S.-M.-
dc.author.googleOh J.-M.-
dc.author.googleChoy J.-H.-
dc.contributor.scopusid최진호(8044393000)-
dc.date.modifydate20190301081000-
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자연과학대학 > 화학·나노과학전공 > Journal papers
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