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石墨烯气凝胶在可充电电池中的作用。

The role of graphene aerogels in rechargeable batteries.

作者信息

Sultanov Fail, Tatykayev Batukhan, Bakenov Zhumabay, Mentbayeva Almagul

机构信息

National Laboratory Astana, Nazarbayev University, Kabanbay Batyr Ave. 53, Astana 010000, Kazakhstan.

National Laboratory Astana, Nazarbayev University, Kabanbay Batyr Ave. 53, Astana 010000, Kazakhstan; Department of Chemical and Materials Engineering, Nazarbayev University, Kabanbay Batyr Ave. 53, Astana 010000, Kazakhstan.

出版信息

Adv Colloid Interface Sci. 2024 Sep;331:103249. doi: 10.1016/j.cis.2024.103249. Epub 2024 Jul 17.

DOI:10.1016/j.cis.2024.103249
PMID:39032342
Abstract

Energy storage systems, particularly rechargeable batteries, play a crucial role in establishing a sustainable energy infrastructure. Today, researchers focus on improving battery energy density, cycling stability, and rate performance. This involves enhancing existing materials or creating new ones with advanced properties for cathodes and anodes to achieve peak battery performance. Graphene aerogels (GAs) possess extraordinary attributes, including a hierarchical porous and lightweight structure, high electrical conductivity, and robust mechanical stability. These qualities facilitate the uniform distribution of active sites within electrodes, mitigate volume changes during repeated cycling, and enhance overall conductivity. When integrated into batteries, GAs expedite electron/ion transport, offer exceptional structural stability, and deliver outstanding cycling performance. This review offers a comprehensive survey of the advancements in the preparation, functionalization, and modification of GAs in the context of battery research. It explores their application as electrodes and hosts for the dispersion of active material nanoparticles, resulting in the creation of hybrid electrodes for a wide range of rechargeable batteries including lithium-ion batteries (LIBs), Li-metal-air batteries, sodium-ion batteries (SIBs), zinc-ion batteries (AZIBs) and zinc-air batteries (ZABs), aluminum-ion batteries (AIBs) and aluminum-air batteries and other.

摘要

储能系统,尤其是可充电电池,在建立可持续能源基础设施方面发挥着至关重要的作用。如今,研究人员专注于提高电池的能量密度、循环稳定性和倍率性能。这涉及改进现有材料或创造具有先进性能的新材料用于阴极和阳极,以实现电池的最佳性能。石墨烯气凝胶(GAs)具有非凡的特性,包括分级多孔和轻质结构、高导电性以及强大的机械稳定性。这些特性有助于活性位点在电极内均匀分布,减轻反复循环过程中的体积变化,并提高整体导电性。当集成到电池中时,GAs可加速电子/离子传输,提供卓越的结构稳定性,并展现出出色的循环性能。本综述全面概述了在电池研究背景下GAs在制备、功能化和改性方面的进展。它探讨了GAs作为电极以及用于活性材料纳米颗粒分散的主体的应用,从而产生了用于包括锂离子电池(LIBs)、锂金属空气电池、钠离子电池(SIBs)、锌离子电池(AZIBs)和锌空气电池(ZABs)、铝离子电池(AIBs)和铝空气电池等多种可充电电池的混合电极。

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The role of graphene aerogels in rechargeable batteries.石墨烯气凝胶在可充电电池中的作用。
Adv Colloid Interface Sci. 2024 Sep;331:103249. doi: 10.1016/j.cis.2024.103249. Epub 2024 Jul 17.
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Nanocarbon networks for advanced rechargeable lithium batteries.用于先进可充电锂电池的纳米碳网络。
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The Li-ion rechargeable battery: a perspective.锂离子可充电电池:一个展望。
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Materials (Basel). 2023 Jun 18;16(12):4449. doi: 10.3390/ma16124449.

引用本文的文献

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ZIF-67 Clusters with Small-Size Particles Confined by a Graphene Framework as a Promising Lithium-Ion Battery Anode.具有石墨烯框架限制的小尺寸颗粒的ZIF-67簇作为一种有前景的锂离子电池负极材料
ACS Omega. 2025 Apr 9;10(15):15181-15190. doi: 10.1021/acsomega.4c10972. eCollection 2025 Apr 22.
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Morphology of Graphene Aerogel as the Key Factor: Mechanical Properties Under Tension and Compression.
石墨烯气凝胶的形态作为关键因素:拉伸和压缩下的力学性能
Gels. 2024 Dec 25;11(1):3. doi: 10.3390/gels11010003.
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Research progress of graphene-based nanomaterials in the diagnosis and treatment of head and neck cancer.基于石墨烯纳米材料在头颈部癌症诊断和治疗中的研究进展。
Sci Prog. 2024 Oct-Dec;107(4):368504241291342. doi: 10.1177/00368504241291342.