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Porous nanohybrid materials formed by covalent hybridization between metal-organic frameworks and gigantic mesoporous materials

机译:金属有机骨架与巨大的介孔材料之间的共价杂交形成的多孔纳米杂化材料

摘要

Disclosed herein is a nanoporous hybrids formed by covalent bonding between a crystalline organic-inorganic hybrid and a gigantic mesoporous metal oxide, containing organic groups on the surface thereof, having a size of 10 nm or more. Since the covalently-bonded hybrid nanoporous composite has a large surface area, a multiple microporous structure, a large pore volume and includes an organic-inorganic hybrid having backbone flexibility, the covalently-bonded hybrid nanoporous composite can be used as materials for storing liquids and gases, such as hydrogen, methane and the like, and can be used as adsorbents, separating materials, catalysts, and the like. Further, the covalently-bonded hybrid nanoporous hybrids can be used in the application fields of biomolecule supporting, drug delivery, harmful material removal, nanoparticle supporter, sensors, catalysis, adsorbents, fluorescent materials, solar cells, and the like.
机译:本文公开了通过在晶体有机-无机杂化物和巨大的介孔金属氧化物之间的共价键合形成的纳米孔杂化物,所述介孔金属氧化物在其表面上具有尺寸为10nm以上的有机基团。由于该共价键合的杂化纳米多孔复合材料具有大的表面积,多个微孔结构,大的孔体积,并且包括具有主链柔性的有机-无机杂化体,因此该共价键合的杂化纳米多孔复合材料可以用作用于储存液体的材料。气体,例如氢气,甲烷等,并可用作吸附剂,分离材料,催化剂等。此外,共价键合的杂合体纳米多孔杂合体可以用于生物分子支持,药物递送,有害物质去除,纳米颗粒支持物,传感器,催化,吸附剂,荧光材料,太阳能电池等的应用领域。

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