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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Water-oxidation catalysis by synthetic manganese oxides – systematic variations of the calcium birnessite theme??
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Water-oxidation catalysis by synthetic manganese oxides – systematic variations of the calcium birnessite theme??

机译:合成锰氧化物对水的氧化催化作用–水钠钙锰矿主题的系统变化?

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Layered manganese oxides from the birnessite mineral family have been identified as promising heterogeneous compounds for water-oxidation catalysis (WOC), a key reaction for the conversion of renewable energy into storable fuels. High catalytic rates were especially observed for birnessites which contain calcium as part of their structures. With the aim to systematically improve the catalytic performance of such oxide materials, we used a flexible synthetic route to prepare three series of calcium birnessites, where we varied the calcium concentrations, the ripening times of the original precipitates and the temperature of the heat treatment following the initial synthetic steps (tempering) during the preparation process. The products were carefully analysed by a number of analytical techniques and then probed for WOC activity using the Ce~(4+)-system. We find that our set of twenty closely related manganese oxides shows large, but somewhat systematic alterations in catalytic rates, indicating the importance of synthesis parameters for maximum catalytic performance. The catalyst of the series for which the highest wateroxidation rate was found is a birnessite of medium calcium content (Ca :Mn ratio 0.2 : 1) that had been subjected to a tempering temperature of 400 °C. On the basis of the detailed analysis of the results, a WOC reaction scheme for birnessites is proposed to explain the observed trends in reactivity.
机译:来自水钠锰矿矿物族的层状锰氧化物已被确认为有前途的多相化合物,可用于水氧化催化(WOC),这是将可再生能源转化为可储存燃料的关键反应。尤其对于含有钙作为其结构一部分的水钠锰矿观察到高催化速率。为了系统地改善此类氧化物材料的催化性能,我们使用了灵活的合成路线来制备三个系列的水钠钙锰矿,其中我们改变了钙浓度,原始沉淀的熟化时间和热处理后的温度制备过程中的初始合成步骤(回火)。通过多种分析技术仔细分析了产物,然后使用Ce〜(4 +)-系统探测了WOC活性。我们发现,我们的二十种紧密相关的锰氧化物组在催化速率上显示出较大但有些系统的变化,表明合成参数对于最大催化性能的重要性。发现最高水氧化速率的系列催化剂是中度钙含量(Ca:Mn比为0.2:1)的水钠锰矿,已经受了400℃的回火温度。在对结果进行详细分析的基础上,提出了水钠锰矿的WOC反应方案,以解释观察到的反应性趋势。

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