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ORDERED POROUS MESOSTRUCTURED MATERIALS FROM NANOPARTICLE-BLOCK COPOLYMER SELF-ASSEMBLY

机译:纳米颗粒嵌段共聚物自组装的有序多孔介孔结构材料

摘要

The invention provides mesostructured materials and methods of preparing mesostructured materials including metal-rich mesostructured nanoparticle-block copolymer hybrids, porous metal-nonmetal nanocomposite mesostructures, and ordered metal mesostructures with uniform pores. The nanoparticles can be metal, metal alloy, metal mixture, intermetallic, metal-carbon, metal-ceramic, semiconductor-carbon, semiconductor-ceramic, insulator-carbon or insulator-ceramic nanoparticles, or combinations thereof. A block copolymer/ligand-stabilized nanoparticle solution is cast, resulting in the formation of a metal-rich (or semiconductor-rich or insulator-rich) mesostructured nanoparticle-block copolymer hybrid. The hybrid is heated to an elevated temperature, resulting in the formation of an ordered porous nanocomposite mesostructure. A nonmetal component (e.g., carbon or ceramic) is then removed to produce an ordered mesostructure with ordered and large uniform pores.
机译:本发明提供了介孔结构材料和制备介孔结构材料的方法,所述介孔结构材料包括富含金属的介孔结构的纳米颗粒-嵌段共聚物杂化物,多孔金属-非金属纳米复合介孔结构和具有均匀孔的有序金属介孔结构。纳米颗粒可以是金属,金属合金,金属混合物,金属间化合物,金属-碳,金属陶瓷,半导体-碳,半导体-陶瓷,绝缘体-碳或绝缘体-陶瓷纳米颗粒,或其组合。浇铸嵌段共聚物/配体稳定的纳米颗粒溶液,从而形成富含金属(或富含半导体或富含绝缘体)的介孔结构的纳米颗粒-嵌段共聚物杂化物。将杂化物加热至高温,导致形成有序的多孔纳米复合介观结构。然后去除非金属组分(例如碳或陶瓷)以产生具有有序且大的均匀孔的有序介观结构。

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