Magnesium‐Ion Batteries: High‐Rate and Long Cycle‐Life Alloy‐Type Magnesium‐Ion Battery Anode Enabled Through (De)magnesiation‐Induced Near‐Room‐Temperature Solid–Liquid Phase Transformation (Adv. Energy Mater. 45/2019)

Magnesium‐Ion Batteries: High‐Rate and Long Cycle‐Life Alloy‐Type Magnesium‐Ion Battery Anode Enabled Through (De)magnesiation‐Induced Near‐Room‐Temperature Solid–Liquid Phase Transformation (Adv. Energy Mater. 45/2019)
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DOI:
10.1002/aenm.201970180
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发表时间:
2019-12
影响因子:
27.8
通讯作者:
Lin Wang;Samuel S. Welborn;H. Kumar;Manni Li;Zeyu Wang;V. Shenoy;E. Detsi
Lin Wang;Samuel S. Welborn;H. Kumar;Manni Li;Zeyu Wang;V. Shenoy;E. Detsi
中科院分区:
材料科学1区
文献类型:
--
作者:
Lin Wang;Samuel S. Welborn;H. Kumar;Manni Li;Zeyu Wang;V. Shenoy;E. Detsi

文献摘要

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在第1902086号文章中,Eric Detsi及其同事开发了一种Mg 2 Ga 5合金型阳极,其具有1000次循环的极长循环寿命,在3C的相对高的(放电)速率下实现,利用了Ga(液体)和Mg 2 Ga 5(固体)之间的近室温固-液相转变。这一概念将为下一代镁离子电池实用阳极的开发开辟道路。
In article number 1902086, Eric Detsi and co-workers develop a Mg 2 Ga 5 alloy-type anode with an extremely long-cycle life of 1000 cycles, achieved at a relatively high (dis) charge rate of 3C, taking advantage of near-room-temperatures solid-liquid phase transformations between Ga (liquid) and Mg 2 Ga 5 (solid). This concept should open the way to the development of practical anodes for next-generation magnesium-ion batteries.