储能革命:克服挑战,释放下一代锂离子电池技术的潜力

Md. Dipu Ahmed, K. Maraz
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引用次数: 0

摘要

锂离子(Li-ion)电池已成为领先的储能技术,在当今电气化世界中有着广泛的应用。这篇全面的综述论文深入探讨了当前的挑战和推动锂离子电池未来增压的创新解决方案。它仔细研究了现有电池能量密度的局限性,探索了有望提高容量的先进电极材料和设计。安全问题是中心舞台,重点是尖端的热管理系统和材料。解决了可持续采购的必要性,强调了绿色供应链的替代材料和回收战略。变革性的突破,如固态电解质和新兴的电池化学,提供了未来的一瞥。本文还探讨了锂离子电池在电动汽车、便携式电子产品和可再生能源存储方面的应用和市场前景。报告最后强调了锂离子电池在加速能源革命和为可持续能源未来铺平道路方面的变革潜力。
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Revolutionizing energy storage: Overcoming challenges and unleashing the potential of next generation Lithium-ion battery technology
Lithium-ion (Li-ion) batteries have become the leading energy storage technology, powering a wide range of applications in today's electrified world. This comprehensive review paper delves into the current challenges and innovative solutions driving the supercharged future of lithium-ion batteries. It scrutinizes the limitations of energy density in existing batteries, exploring advanced electrode materials and designs that promise higher capacity. Safety concerns take center stage, with a focus on cutting-edge thermal management systems and materials. The imperative of sustainable sourcing is addressed, highlighting alternative materials and recycling strategies for a greener supply chain. Transformative breakthroughs, such as solid-state electrolytes and emerging battery chemistries, offer glimpses of the future. The paper also examines the applications and market perspectives of lithium-ion batteries in electric vehicles, portable electronics, and renewable energy storage. It concludes by emphasizing the transformative potential of lithium-ion batteries in accelerating the energy revolution and paving the way for a sustainable energy future.
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Revolutionizing energy storage: Overcoming challenges and unleashing the potential of next generation Lithium-ion battery technology Load-induced local phase transformation and modulus of shape memory alloys under spherical indentation by finite element method Polymer electrolyte design strategies for high-performance and safe lithium-ion batteries: Recent developments and future prospects Residual properties of silicone (MED-4719) lead with leads from retrieved devices Synthesis of an eco-friendly composite of palygorskite-gypsum associated ore using corn starch and waste biomass
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