TY - JOUR
T1 - Microwave-Assisted Synthesis of CuS Hierarchical Nanosheets as the Cathode Material for High-Capacity Rechargeable Magnesium Batteries
AU - Wang, Zhitao
AU - Rafai, Souleymen
AU - Qiao, Chen
AU - Jia, Jian
AU - Zhu, Youqi
AU - Ma, Xilan
AU - Cao, Chuanbao
N1 - Publisher Copyright:
© 2019 American Chemical Society.
PY - 2019/2/20
Y1 - 2019/2/20
N2 - Rechargeable magnesium batteries (rMBs) have been recognized as one of most promising next-generation energy storage devices with high energy and power density. However, the development of rMBs has been hampered by the lack of usable cathode materials with high capacity and cycling stability. Herein, we report an ultra-rapid, cost-effective, and scalable synthesis of ultrathin CuS hierarchical nanosheets by a one-step microwave-assisted preparation. Benefiting from the exceptional structural configuration, when used as the cathode material for rMBs at room temperature, the CuS hierarchical nanosheets deliver a high reversible discharge capacity of 300 mA h g -1 at 20 mA g -1 , remarkable rate capability (256.5 mA h g -1 at 50 mA g -1 and 237.5 mA h g -1 at 100 mA g -1 ), and excellent cycling stability (135 mA h g -1 at 200 mA g -1 over 200 cycles). To date, the obtained excellent electrochemical performances are superior to most results ever reported for cathode materials of rMBs.
AB - Rechargeable magnesium batteries (rMBs) have been recognized as one of most promising next-generation energy storage devices with high energy and power density. However, the development of rMBs has been hampered by the lack of usable cathode materials with high capacity and cycling stability. Herein, we report an ultra-rapid, cost-effective, and scalable synthesis of ultrathin CuS hierarchical nanosheets by a one-step microwave-assisted preparation. Benefiting from the exceptional structural configuration, when used as the cathode material for rMBs at room temperature, the CuS hierarchical nanosheets deliver a high reversible discharge capacity of 300 mA h g -1 at 20 mA g -1 , remarkable rate capability (256.5 mA h g -1 at 50 mA g -1 and 237.5 mA h g -1 at 100 mA g -1 ), and excellent cycling stability (135 mA h g -1 at 200 mA g -1 over 200 cycles). To date, the obtained excellent electrochemical performances are superior to most results ever reported for cathode materials of rMBs.
KW - CuS hierarchical nanosheets
KW - cathode
KW - high capacity
KW - microwave-assisted synthesis
KW - rechargeable magnesium batteries
UR - http://www.scopus.com/inward/record.url?scp=85061559741&partnerID=8YFLogxK
U2 - 10.1021/acsami.8b20533
DO - 10.1021/acsami.8b20533
M3 - Article
C2 - 30667214
AN - SCOPUS:85061559741
SN - 1944-8244
VL - 11
SP - 7046
EP - 7054
JO - ACS applied materials & interfaces
JF - ACS applied materials & interfaces
IS - 7
ER -