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首页> 外文期刊>ECS Electrochemistry Letters >X-Ray Absorption and Diffraction Studies of LiNiO_2-Derivatives with or without Electrolyte at Elevated Temperature
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X-Ray Absorption and Diffraction Studies of LiNiO_2-Derivatives with or without Electrolyte at Elevated Temperature

机译:高温下含或不含电解质的LiNiO_2衍生物的X射线吸收和衍射研究

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Simultaneous measurement of X-ray absorption and diffraction at elevated temperature was developed and carried out to. examine thermal decomposition of LiNi_(0.75)Co_(0.15)Al_(0.05)Mg_(0.05)O_2 (NCA-Mg) electrode charged at 4.2 V vs. Li~+/Li with or without electrolyte. Our measurement clearly displays accelerated reduction of NCA-Mg by the electrolyte in terms of the change in crystal structure and the oxidation states of nickel and cobalt species. Reduction of nickel and cobalt species by XANES occurs at about 50°C lower temperature than the structural collapse detected by XRD, which will be a key to understand the mechanisms for onset temperature of the exothermic reactions.
机译:开发并同时进行了高温下X射线吸收和衍射的同时测量。研究了在有或没有电解质的情况下,以4.2 V充电的LiNi_(0.75)Co_(0.15)Al_(0.05)Mg_(0.05)O_2(NCA-Mg)电极对Li〜+ / Li的热分解。我们的测量清楚地表明,就晶体结构的变化以及镍和钴物种的氧化态而言,电解质可加速NCA-Mg的还原。 XANES还原镍和钴物质的温度比XRD检测到的结构塌陷低约50°C,这将是了解放热反应起始温度机理的关键。

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