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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Charge Transfer Mechanism into the Chevrel Phase Mo6S8 during Mg Intercalation
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Charge Transfer Mechanism into the Chevrel Phase Mo6S8 during Mg Intercalation

机译:在MG插入期间将电荷转移机制进入Chevrel相MO6S8

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摘要

We re-examine the charge transfer mechanism in the Chevrel phase Mo6S8 upon Mg intercalation and deintercalation by the mean of X-ray photoemission spectroscopy. We highlighted a two-step reversible charge transfer process involving successively axial sulfurs and Mo-6 cluster redox center. In parallel, the Mg 2p and Mg KLL Auger transition evolution evidenced two insertion sites having different polarizations in accordance with previous studies. The nonconventional metal transition redox reaction, involved during Mg intercalation in Chevrel phase, might be at the origin of its excellent reversibility and intercalation kinetics.
机译:我们通过X射线照射光谱法在Mg嵌入和蜕膜中重新检查Chevrel相MO6S8中的电荷转移机制。 我们强调了一种两步的可逆电荷转移过程,涉及连续轴向硫磺和MO-6簇氧化还原中心。 同时,MG 2P和MG KLL螺旋钻过渡演进明确了根据先前研究具有不同偏振的两个插入位点。 在曲面阶段Mg嵌入期间涉及的非转化金属转化氧化还原反应可能是其优异的可逆性和插层动力学的起源。

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