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基于周期律指导设计用于实用型钠离子电池的高稳定性O3型层状氧化物阴极

Periodic law-guided design of highly stable O3-type layered oxide cathodes for practical sodium-ion batteries.

作者信息

Wu Yuan-Bo, Hu Hai-Yan, Li Jia-Yang, Dong Hang-Hang, Zhu Yan-Fang, Chen Shuang-Qiang, Wang Na-Na, Wang Jia-Zhao, Xiao Yao

机构信息

College of Chemistry and Materials Engineering, Wenzhou University Wenzhou 325035 P. R. China

Wenzhou Key Laboratory of Sodium-Ion Batteries, Wenzhou University Technology Innovation Institute for Carbon Neutralization Wenzhou 325035 P. R. China.

出版信息

Chem Sci. 2025 Jan 15;16(9):3928-3937. doi: 10.1039/d4sc08351b. eCollection 2025 Feb 26.

Abstract

O3-type NaNiMnO cathode material exhibits significant potential for sodium-ion batteries (SIBs) owing to its high theoretical capacity and ample sodium reservoir. Nonetheless, its practical implementation encounters considerable obstacles, such as impaired structural integrity, sensitivity to moisture, inadequate high-temperature stability, and being unstable under high-voltage conditions. This study investigates the co-substitution of Cu, Mg, and Ti, guided by principles of the periodic law, to enhance the material's stability under varying conditions. The substituent elements were selected based on their atomic properties and introduced into specific sites within the structure: Cu and Mg were substituted at Ni sites, while Ti replaced Mn sites. These modifications strengthened the crystal lattice, mitigating phase transitions, and improved electrochemical performance. The O3-type NaNiCuMgMnTiO material exhibited remarkable moisture stability, maintaining 85% of its capacity after 1000 cycles at 5C in 2.0-4.0 V. It also exhibited reversible phase transitions at voltages up to 4.3 V, with no oxygen release observed even when charged to 4.5 V. Furthermore, it exhibited remarkable high-temperature stability in half-cell testing and excellent cycling performance in full-cell evaluations. These results are very helpful for designing high-performance SIB cathodes that can withstand a variety of operating circumstances and ensuring structural stability.

摘要

O3型NaNiMnO正极材料因其高理论容量和充足的钠存储库而在钠离子电池(SIB)中展现出巨大潜力。尽管如此,其实际应用面临着诸多障碍,如结构完整性受损、对水分敏感、高温稳定性不足以及在高压条件下不稳定。本研究依据周期律原则,研究了Cu、Mg和Ti的共取代,以提高材料在不同条件下的稳定性。取代元素根据其原子性质进行选择,并引入到结构中的特定位置:Cu和Mg取代Ni位点,而Ti取代Mn位点。这些改性增强了晶格,减轻了相变,并改善了电化学性能。O3型NaNiCuMgMnTiO材料表现出显著的水分稳定性,在2.0 - 4.0 V下以5C循环1000次后仍保持其容量的85%。它在高达4.3 V的电压下还表现出可逆相变,即使充电至4.5 V也未观察到氧气释放。此外,它在半电池测试中表现出显著的高温稳定性,在全电池评估中表现出优异的循环性能。这些结果对于设计能够承受各种工作环境的高性能SIB正极并确保结构稳定性非常有帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd6a/11863670/3ae9dfe68589/d4sc08351b-f1.jpg

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