TY - JOUR KW - X-ray Diffraction KW - Electrochemical electrodes KW - Intercalation compounds KW - Lithium alloys KW - Magnesium alloys KW - Mechanical alloying KW - Tin alloys AU - Gregory A Roberts AU - Elton J Cairns AU - Jeffrey A Reimer AB -
The intermetallic Mg2Sn is a promising negative electrode material for rechargeable lithium cells. Preliminary cycling tests have demonstrated stable capacities at 400 mAh/g for 20 cycles. Magnesium stannide was produced by mechanically alloying magnesium and tin powders. Mechanical alloying can convert the equilibrium Mg2Sn phase to a metastable phase by the introduction of defects with extended milling times. In situ X-ray diffraction has shown that the cubic Li2MgSn phase, which is similar in size and structure to cubic Mg2Sn, is produced by lithium insertion into the equilibrium and metastable phases. The conversion from the metastable phase is irreversible, so subsequent lithium removal from Li2MgSn produces the equilibrium Mg2Sn phase.
BT - Journal of The Electrochemical Society DO - 10.1149/1.1578477 IS - 7 N2 -The intermetallic Mg2Sn is a promising negative electrode material for rechargeable lithium cells. Preliminary cycling tests have demonstrated stable capacities at 400 mAh/g for 20 cycles. Magnesium stannide was produced by mechanically alloying magnesium and tin powders. Mechanical alloying can convert the equilibrium Mg2Sn phase to a metastable phase by the introduction of defects with extended milling times. In situ X-ray diffraction has shown that the cubic Li2MgSn phase, which is similar in size and structure to cubic Mg2Sn, is produced by lithium insertion into the equilibrium and metastable phases. The conversion from the metastable phase is irreversible, so subsequent lithium removal from Li2MgSn produces the equilibrium Mg2Sn phase.
PY - 2003 SP - A912 EP - A916 ST - J. Electrochem. Soc. T2 - Journal of The Electrochemical Society TI - An Electrochemical and XRD Study of Lithium Insertion into Mechanically Alloyed Magnesium Stannide VL - 150 SN - 00134651 ER -