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As the demand increases for Li-ion batteries (LIBs) as power sources for a diverse range of applications, including not only portable energy storage devices but also electric vehicles (EVs) and hybrid electric vehicles (HEVs), there is a need for the development of LIBs with a higher performance than that currently available. Many approaches have been proposed to achieve this required improvement in the electrochemical performance of electrode materials, such as fabrication of novel structures to control their size and morphology, and modification by coating or doping to improve their electronic conductivity. Among these strategies, nanostructured materials have been considered as one of the more efficient approaches, owing to the architectural advantages for enhanced solid-state diffusion of Li ions and charge transfer at the electrode interface. Nanostructured materials possess several benefits, including short solid-state diffusion lengths for Liions and a high electrode/electrolyte interfacial area.
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ADVANCED FUNCTIONAL MATERIALSno. 11 (2024)
Yejin Nam, Deukhyeon Nam, Ji-Won Son,Seongryeong Kim,Yun Chan Kang,Haesung Jung,Chan Woong Na,Yoon Myung,Changwoo Kim
Journal of Water Process Engineering (2024): 105116
Yoonmi Nam, Ki-Beom Kim,Sang Hun Kim, Ki-Hong Park,Myeong-Ill Lee, Jeong Won Cho,Jongtae Lim,In-Sung Hwang,Yun Chan Kang,Jin-Ha Hwang
ACS SENSORSno. 1 (2024): 182-194
INTERNATIONAL JOURNAL OF ENERGY RESEARCH (2024): 1-13
INTERNATIONAL JOURNAL OF ENERGY RESEARCH (2024)
Journal of Materials Science & Technology (2024): 95-107
Seung Hee Woo,Juyun Lee,Jeong Pil Kim,Junpyo Hong, Jeong Min Jang,Tae Yun Ko,Yun Chan Kang,Dae Woo Kim,Seon Joon Kim
Applied Materials Today (2024): 102271
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