Reversible K-ion intercalation in CrSe2 cathodes for potassium-ion batteries: combined operando PXRD and DFT studies

被引:0
|
作者
Li, Weihao [1 ]
Doehn, Johannes [2 ]
Chen, Jinyu [3 ,4 ]
Dillenz, Manuel [2 ]
Sotoudeh, Mohsen [2 ]
Pickup, David M. [5 ]
Luo, Shunrui [6 ,7 ]
Parmenter, Ryan [5 ]
Arbiol, Jordi [6 ,7 ,8 ]
Alfredsson, Maria [5 ]
Chadwick, Alan V. [5 ]
Gross, Axel [2 ,9 ]
Zarrabeitia, Maider [3 ,4 ]
Ganin, Alexey Y. [1 ]
机构
[1] Univ Glasgow, Sch Chem, Glasgow G12 8QQ, Scotland
[2] Ulm Univ, Inst Theoret Chem, D-89081 Ulm, Germany
[3] Helmholtz Inst Ulm HIU, Helmholtz Str 11, D-89081 Ulm, Germany
[4] Karlsruhe Inst Technol KIT, POB 3640, D-76021 Karlsruhe, Germany
[5] Univ Kent, Sch Phys Sci, Canterbury CT2 7NH, Kent, England
[6] CSIC, Catalan Inst Nanosci & Nanotechnol ICN2, Campus UAB, Barcelona 08193, Catalonia, Spain
[7] BIST, Campus UAB, Barcelona 08193, Catalonia, Spain
[8] ICREA, Pg Lluis Co 23, Barcelona 08010, Catalonia, Spain
[9] Helmholtz Inst Ulm HIU Electrochem Energy Storage, D-89081 Ulm, Germany
基金
英国工程与自然科学研究理事会;
关键词
STABILITY;
D O I
10.1039/d4ta05114a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In the pursuit of more affordable battery technologies, potassium-ion batteries (KIBs) have emerged as a promising alternative to lithium-ion systems, owing to the abundance and wide distribution of potassium resources. While chalcogenides are uncommon as intercalation cathodes in KIBs, this study's electrochemical tests on CrSe2 revealed a reversible K+ intercalation/deintercalation process. The CrSe2 cathode achieved a KIB battery capacity of 125 mA h g-1 at a 0.1C rate within a practical 1-3.5 V vs. K+/K operation range, nearly matching the theoretical capacity of 127.7 mA h g-1. Notably, the battery retained 85% of its initial capacity at a high 1C rate, suggesting that CrSe2 is competitive for high-power applications with many current state-of-the-art cathodes. In-operando PXRD studies uncovered the nature of the intercalation behavior, revealing an initial biphasic region followed by a solid-solution formation during the potassium intercalation process. DFT calculations helped with the possible assignment of intermediate phase structures across the entire CrSe2-K1.0CrSe2 composition range, providing insights into the experimentally observed phase transformations. The results of this work underscore CrSe2's potential as a high-performance cathode material for KIBs, offering valuable insights into the intercalation mechanisms of layered transition metal chalcogenides and paving the way for future advancements in optimizing KIB cathodes.
引用
收藏
页码:31276 / 31283
页数:8
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