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首页> 外文期刊>Nanoscale >An ultrasonic atomization assisted synthesis of self-assembled manganese oxide octahedral molecular sieve nanostructures and their application in catalysis and water treatment
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An ultrasonic atomization assisted synthesis of self-assembled manganese oxide octahedral molecular sieve nanostructures and their application in catalysis and water treatment

机译:超声波雾化辅助合成自组装氧化锰八面体分子筛纳米结构和他们的在催化和水处理中的应用

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摘要

Manganese oxides of octahedral molecular sieve (OMS-2) type have important applications in oxidation catalysis, adsorption, and as battery materials. The synthesis methods employed determine their morphology and textural properties which markedly affect their catalytic activity. In this work, a room temperature ultrasonic atomization assisted synthesis of OMS-2 type materials is demonstrated. This synthesis differs from previously reported methods in that it is a simple, no-heat application that leads to a striking morphological characteristic of uniformly sized OMS-2 fibers and their self-assembly into dense as well as hollow spheres. Control of various parameters in the ultrasonic atomization assisted synthesis led to OMS-2 with high surface areas (between 136-160 m(2) g(-1)) and mesoporosity. Catalytically these materials have higher activities in the oxidation of hydroxymethylfurfural (HMF), a bio-based chemical, (65% conversion of HMF vs. 14% with conventional OMS-2 catalyst) and a higher adsorption of lead from aqueous solutions (70% vs. 12% in conventional OMS-2 materials).
机译:锰氧化物的八面体分子筛(OMS-2)类型有重要的应用氧化催化、吸附和电池材料。决定他们的形态和结构显著影响其催化性能活动。超声波雾化辅助合成OMS-2类型材料证明。合成不同于之前报道方法,它是一个简单的,没有热量应用程序导致引人注目形态大小均匀的特点OMS-2纤维及其自组装成密集以及空心球体。超声波雾化辅助参数高的合成导致OMS-2表面区域(在136 - 160 (2)g(1))和中孔隙。这些材料有较高的催化地活动的氧化羟甲基糠醛(羟甲基糠醛),一个生物化学、(65%羟甲基糠醛比14%的转换传统OMS-2)和更高的催化剂从(70%水溶液吸附铅与传统OMS-2材料)的12%。

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