高容量锂电池负极材料TiNb2O7的合成及其机理
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Synthesis and Formation Mechanism of Lithium Battery High-Capacity Anode Material TiNb2O7
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图4. 前驱体、在不同温度煅烧的TiNb2O7粉末的扫描电子显微镜图像及其相应的放大图像 |
Fig.4. Scanning electron microscopy images of precursor and TiNb2O7 powders calcined at different temperature and the corresponding magnified images (a, a’) precursor; (b, b’) 400℃; (c, c’) 800℃; (d, d’) 900℃; (e, e’) 1000℃; and (f, f’) 1100℃ |
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