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首页> 外文期刊>Chemistry - A European Journal >Oriented Free-Standing Ammonium Vanadium Oxide Nanobelt Membranes: Highly Selective Absorbent Materials
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Oriented Free-Standing Ammonium Vanadium Oxide Nanobelt Membranes: Highly Selective Absorbent Materials

机译:定向的独立式氧化钒钒纳米带膜:高选择性吸收材料

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摘要

Highly selective, absorbent, free-standing, paper-like membranes made of ammonium vanadium oxide (NH4V4O14) nanobelts have been engineered by taking advantage of the nanoscaled self-assembly of architectures that display a mesh structure with an average periodic pore size of about 5 to 10 nm. The NH4V4O14 nanobelts are synthesized by using a simple hydrothermal process, and exhibit the same orientation and assemble into bundles, each about 40 to 80 nm in width, 3 to 5 nm in thickness, and up to several millimeters in length. Importantly, the as-obtained NH4V4O14 nanobelt membranes can highly selectively absorb a variety of organic solvents, covering both polar and non-polar solvents, for example, the absorbent capacity of glycol is 28 times as high as the initial weight of the membrane, and it can even separate organic solvents with similar polarities and absorb solid contaminants in organic solvents. These highly selective, absorbent membrane materials can be an ideal candidate for the separation and removal of pollution in industrial and environmental applications.
机译:由氧化钒钒(NH 4 V 4 O 14 )纳米带制成的高选择性,吸收性,独立式纸状膜通过利用纳米结构的自组装结构进行设计,该结构显示的网状结构的平均周期孔径约为5至10nm。 NH 4 V 4 O 14 纳米带是通过简单的水热过程合成的,表现出相同的取向并组装成束,每束约宽度为40至80 nm,厚度为3至5 nm,长度可达几毫米。重要的是,获得的NH 4 V 4 O 14 纳米带膜可以高度选择性地吸收各种有机溶剂,覆盖极性和非极性在极性溶剂中,例如,乙二醇的吸收能力是膜初始重量的28倍,它甚至可以分离极性相似的有机溶剂,并吸收有机溶剂中的固体污染物。这些高度选择性的吸收膜材料可以理想地用于工业和环境应用中分离和去除污染。

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