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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Direct Sonochemical Synthesis of Manganese Octahedral Molecular Sieve (OMS-2) Nanomaterials Using Cosolvent Systems, Their Characterization, and Catalytic Applications
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Direct Sonochemical Synthesis of Manganese Octahedral Molecular Sieve (OMS-2) Nanomaterials Using Cosolvent Systems, Their Characterization, and Catalytic Applications

机译:使用助溶剂系统直接声化学合成锰八面体分子筛(OMS-2)纳米材料,其表征和催化应用

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摘要

A rapid, direct sonochemical method has successfully been developed to synthesize cryptomelane-type manganese octahedral molecular sieve (OMS-2) materials. Very high surface area of 288 ± 1 m~2/g and small particle sizes in the range of 1-7 nm were produced under nonthermal conditions. No further processing such as calcination was needed to obtain the pure cryptomelane phase. A cosolvent system was utilized to reduce the reaction time and to obtain higher surface areas. Reaction time was reduced by 50% using water/acetone mixed phase solvent systems. The cryptomelane phase was obtained with 5% acetone after 2 h of sonication at ambient temperature. Reaction time, temperature, and acetone concentration were identified as the most important parameters in the formation of the pure cryptomelane phase. OMS materials synthesized using the above-mentioned method were characterized by X-ray diffraction (XRD), nitrogen sorption,scanning electron microscopy (SEM), transmission electron microscopy (TEM), and Fourier transformation infrared spectroscopy (FTIR). OMS-2 materials synthesized using sonochemical methods (K-OMS-2_(SC)) possess greater amounts of defects and hence show excellent catalytic performances for oxidation of benzyl alcohol as compared to OMS-2 synthesized using reflux methods (K-OMS-2_(KEF)) and commercial MnO2.
机译:已经成功开发了一种快速,直接的声化学方法来合成隐密胺型锰八面体分子筛(OMS-2)材料。在非热条件下产生了288±1 m〜2 / g的非常高的表面积和1-7 nm范围内的小粒径。不需要进一步的处理例如煅烧就可以得到纯的隐密胺烷相。利用助溶剂系统来减少反应时间并获得更大的表面积。使用水/丙酮混合相溶剂系统可使反应时间减少50%。在环境温度下超声处理2小时后,用5%丙酮获得隐甲烷相。反应时间,温度和丙酮浓度被确定为纯隐密胺烷相形成中最重要的参数。使用X射线衍射(XRD),氮吸附,扫描电子显微镜(SEM),透射电子显微镜(TEM)和傅里叶变换红外光谱(FTIR)对使用上述方法合成的OMS材料进行了表征。使用声化学方法(K-OMS-2_(SC​​))合成的OMS-2材料具有大量缺陷,因此与使用回流方法(K-OMS-2_ (KEF))和商用MnO2。

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