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Manganese Tetraphosphide (MnP_4) as a High Capacity Anode for Lithium-Ion and Sodium-Ion Batteries

机译:用于锂离子和钠离子电池的高容量阳极的锰四膦(MNP_4)

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摘要

Phosphorus-rich 6-MnP4 nanoparticles are synthesized via high energy mechanical milling (HEMM) and their electrochemical properties as an anode for lithium-ion batteries (LIBs) and sodium-ion batteries (SIBs) are investigated focusing on the electrochemical activity and reaction mechanism. The 6-MnP4 nanoparticles with a triclinic structure (P-1) are successfully synthesized by HEMM and they are composed of 5 to 20 nm-sized crystallites. During the lithiation process, the MnP4 phase undertakes the sequential alloying (MnP4 + 7 Li+ + 7 e(-) - Li7MnP4) and conversion (Li7MnP4 + 5 Li+ + 5 e(-) - Mn-0 + 4 Li3P) reactions. On the other hand, the MnP4 nanoparticles are directly converted to Mn-0 and Na3P without the formation of an intermediate Na-Mn-P alloy phase during sodiation process. The MnP4 electrode shows high initial discharge and charge capacity (1876 and 1615 mAh g(-1) for LIBs, and 1234 and 1028 mAh g(-1) for SIBs) and high initial Coulombic efficiency (86% for LIBs and 83% for SIBs), indicating a promising candidate for high capacity anodes. In addition, the long-term cyclability and high rate capability of MnP4 can be further improved through the formation of MnP4/graphene nanocomposites and vanadium substituted Mn0.75V0.25P4 solid solutions.
机译:富含磷的6-MNP4纳米颗粒通过高能量机械研磨(HEMM)合成,并作为锂离子电池(LIBS)和钠离子电池(SIBS)的电化学性能,研究专注于电化学活性和反应机制。具有三级结构(P-1)的6-MNP4纳米颗粒通过麻疹成功地合成,它们由5至20nm大小的微晶组成。在锂化过程中,MNP4相对顺序合金化(MNP4 + 7 Li + + 7e( - ) - > Li7MNP4)和转化率(Li7MNP4 + 5 Li ++ 5e( - ) - > Mn-0 + 4 Li3P)反应。另一方面,MNP4纳米颗粒直接转化为Mn-0和Na3P,而不形成复苏过程中中间Na-Mn-P合金相。 MNP4电极显示出高初始排放和充电容量(1876和1615mAhg(-1),用于SIB的1234和1028mAhg(-1),初始初始库仑效率(Libs 86%,83% SIBS),表示高容量阳极的有希望的候选者。另外,通过形成MNP4 /石墨烯纳米复合材料和钒取代的MN0.75V0.25P4固溶体,可以进一步提高MNP4的长期可自由性和高速率能力。

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