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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Reaction mechanisms of Li0.30La0.57TiO3 powder with ambient air: H+/Li+ exchange with water and Li2CO3 formation
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Reaction mechanisms of Li0.30La0.57TiO3 powder with ambient air: H+/Li+ exchange with water and Li2CO3 formation

机译:Li0.30La0.57TiO3粉末与环境空气的反应机理:H + / Li +与水交换和Li2CO3的形成

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The proton/lithium exchange property of the lithium lanthanum titanate Li0.30La0.57TiO3 ( named LLTO) is shown to occur at room temperature under ambient air. The H-1 and Li-7 MAS NMR, TGA analysis and IR spectroscopy techniques are used to probe reaction mechanisms. XRPD analysis gives evDEence of the topotactic character of this exchange reaction. As for exchange in aqueous solution, it is shown that Li0.30La0.57TiO3 is able to dissociate water on the grain surface and then to exchange H+ for Li+ into the perovskite structure. Lithium hydroxDEe is then formed on the grain surface and afterwards reacts with CO2 contained in air to form Li2CO3. It is shown that this mechanism is reversible. When the aged sample ( aging in air for 5 months at room temperature) is annealed at 400 degrees C for two hours, the initial LLTO sample is totally recovered, a mass loss is observed and the carbonate signal in IR spectra disappears, demonstrating the reversibility of the carbonation reaction process.
机译:钛酸锂镧Li0.30La0.57TiO3(称为LLTO)的质子/锂交换性质显示为在室温下于环境空气中发生。 H-1和Li-7 MAS NMR,TGA分析和IR光谱技术用于探测反应机理。 XRPD分析证明了该交换反应的全功能性。至于水溶液中的交换,表明Li0.30La0.57TiO3能够使晶粒表面上的水解离,然后将H +交换为Li +,形成钙钛矿结构。然后,在晶粒表面上形成氢氧化锂DEe,然后与空气中的CO2反应形成Li2CO3。结果表明,该机制是可逆的。当老化的样品(在室温下在空气中老化5个月)在400摄氏度下退火2小时后,初始的LLTO样品被完全回收,观察到质量损失,红外光谱中的碳酸盐信号消失,证明了可逆性碳酸化反应过程。

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