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A generalized strategy for synthesizing crystalline bismuth-containing nanomaterials

机译:一个通用的合成策略水晶bismuth-containing纳米材料

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摘要

Bismuth oxide and its derivatives are promising materials that have applications varying from catalysis to energy-storage devices. Most of these applications benefit from the creation of crystalline nanostructures. Herein, we present a simple and fast polymer-assisted precipitation method to synthesize various crystalline bismuth oxide nanomaterials, including bismuth oxide (Bi2O3) microrods, bismuth-transition metal mixed oxide (BixMyOz, M = V, Cr, Mo, or W) nanoparticles/rods, and bismuth oxyhalide (BiOX, X = Cl, Br, or I) nanoplates. All these materials are semiconductors with bandgaps in the range of 1.76-3.43 eV. This strategy can also be used to fabricate nanostructured composites (e.g., bismuth vanadate nanoparticles on BiOX nanosheets), copper oxide nanoparticles, and potentially other metal oxide nanomaterials.
机译:三氧化二铋及其衍生物是有前途的材料应用程序不同催化储能设备。这些应用程序从创造中获益水晶纳米结构。简单和快速polymer-assisted降水方法合成各种水晶铋氧化物纳米材料,包括三氧化二铋(Bi2O3) microrods bismuth-transition金属混合氧化(BixMyOz M = V、铬、钼、或W)纳米粒子/棒和铋oxyhalide (BiOXX = Cl、Br或nanoplates我)。半导体的带隙范围吗1.76 - -3.43 eV。制造纳米复合材料(如,BiOX钒酸铋纳米粒子nanosheets),铜氧化物纳米颗粒,可能其他金属氧化物纳米材料。

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