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- W3130068508 abstract "Abstract Since the last two decades, the desires for new energy storage materials with higher energy and power densities are continuously increasing, to enable the large-scale energy storage for the power grid. Recently, lithium-ion batteries (LIBs), which have successfully powered the electronic gadgets, stationary storage devices, pure and hybrid electric vehicles, and their development were acknowledged through the 2019 Nobel Prize in Chemistry. The nanostructured materials that typically retain two or as a minimum of one dimension with the nanometer scale when used as anodes for rechargeable batteries can promise the enhanced performance and superior energy storage capacities owing to their unique architectures. The adaptability of nanostructured materials could originate the capable power sources for various technologies, such as portable, foldable, flexible electronic appliances, electric transport, and grid-scale energy storage. Moreover, the combination of these nanoarchitectures into functional structures and storage devices is enabled by the innovative development and fabrication techniques. This chapter is intended to summarize and briefly discuss the main energy storage systems, energy storage mechanism, and utilization of nanostructured materials for rechargeable battery anodes, their limitations, and recommendations." @default.
- W3130068508 created "2021-03-01" @default.
- W3130068508 creator A5022389091 @default.
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- W3130068508 date "2021-01-01" @default.
- W3130068508 modified "2023-10-12" @default.
- W3130068508 title "Nanostructured anode materials in rechargeable batteries" @default.
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