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Progress of NiO‐Based Anodes for High‐Performance Li‐Ion Batteries

Guolang Zhou, Wenhao Ding, Yu Guan, Tianshi Wang, Cheng Liu, Lili Zhang, Jingzhou Yin, Yongsheng Fu

2022The Chemical Record26 citationsDOI

Abstract

Rechargeable lithium-ion batteries (LIBs) are of great significance to the development of renewable energy. The traditional graphite anode is gradually unable to meet increasing demands for high energy density and power density due to its low theoretical capacity. NiO has gained considerable attention because of its high theoretical capacity, low toxicity, and stable chemical properties. This review summarizes the research progress of NiO-based nanomaterials in LIBs and centers on the electrochemical reaction mechanism, synthesis methods, and strategies for improving the electrochemical properties of NiO anodes. The results demonstrate that the electrochemical characteristics highly depend on the synthesis method, morphology, surface area, conductive substrate, etc. Compared with pure NiO, NiO-based composites including NiO/carbon-based materials and NiO/metal oxide often present higher capacity and cycle stability. Furthermore, challenges and future perspectives of NiO-based anodes are also discussed.

Topics & Concepts

Non-blocking I/OAnodeMaterials scienceElectrochemistryLithium (medication)OxideNanotechnologyNanomaterialsChemical engineeringNickel oxideMetallurgyElectrodeChemistryCatalysisEngineeringBiochemistryMedicinePhysical chemistryEndocrinologyAdvancements in Battery MaterialsSupercapacitor Materials and FabricationTransition Metal Oxide Nanomaterials
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