Synergistic Cathode Design for High-Performance Dual-Salt Magnesium/Lithium-Ion Batteries Using 2D/2D 1T/2H-MoS2@Ti3C2Tx MXene Nanocomposite

被引:4
|
作者
Rahmatinejad, Jalal [1 ]
Liu, Xudong [1 ]
Raisi, Bahareh [1 ]
Ye, Zhibin [1 ]
机构
[1] Concordia Univ, Dept Chem & Mat Engn, Montreal, PQ H3G 1M8, Canada
关键词
1T MoS2; co-intercalation cathode; dual-salt battery; magnesium storage; MXene; RECHARGEABLE BATTERIES; STORAGE CAPABILITY; CARBIDE MXENE; LITHIUM; MOS2; ELECTRODE; MONOLAYER; STABILITY; ORIGIN;
D O I
10.1002/smll.202401391
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Magnesium-ion batteries (MIBs) and dual-salt magnesium/lithium-ion batteries (MLIBs) have emerged as promising contenders for next-generation energy storage. In contrast to lithium metal anode in lithium metal batteries, magnesium metal anode in MIBs and MLIBs presents a safer alternative due to the limited dendrite growth and higher volumetric capacity, along with higher natural abundance. This study explores a MLIB configuration with a novel cathode design by employing a 2D/2D nanocomposite of 1T/2H mixed phase MoS2 and delaminated Ti3C2Tx MXene (1T/2H-MoS2@MXene) to address challenges associated with slow kinetics of magnesium ions during cathode interactions. This cathode design takes advantage of the high electrical conductivity of Ti3C2Tx MXene and the expanded interlayer spacing with enhanced conductivity of the 1T metallic phase in 1T/2H mixed phase MoS2. Through a designed synthesis method, the resulting nanocomposite cathode maintains structural integrity, enabling the stable and reversible storage of dual Mg2+ and Li+ ions. The nanocomposite cathode demonstrates superior performance in MLIBs compared to individual components (253 mAh g(-1) at 50 mA g(-1), and 36% of capacity retention at 1,000 mA g(-1)), showcasing short ion transport paths and fast ion storage kinetics. This work represents a significant advancement in cathode material design for cost-effective and safe MLIBs.
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页数:13
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