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Journal of Energy Storage | ScienceDirect by Elsevier

A spinoff of Journal of Energy Storage, Future Batteries aims to become a central vehicle for publishing new advances in all aspects of battery and electric energy storage research.

林泽京-新能源材料与低碳技术研究院

2 Zejing Lin; Minglei Mao; Tianshi Lv; Shuwei Li; Yong-Sheng Hu; Hong Li; Xuejie Huang; Liquan Chen; Liumin Suo*; Electroactive-catalytic conductive framework for aluminum-sulfur batteries,

Decoupling the air sensitivity of Na-layered oxides | Science

Air sensitivity remains a substantial barrier to the commercialization of sodium (Na)–layered oxides (NLOs). This problem has puzzled the community for decades because of

Polymeric membranes with aligned zeolite nanosheets for sust

As a result, pairing this aligned membrane with a vanadium flow battery leads to a high energy efficiency of >80% at 200 mA cm−2 and remarkable stability over 1,000 cycles. This work

Publications-Nankai University :: Nano@Nankai, 陈永胜教授研究

"A high-performance supercapacitor-battery hybrid energy storage device based on graphene-enhanced electrode materials with ultrahigh energy density",Fan Zhang, Tengfei Zhang, Xi

Nankai University :: Nano@Nankai, 陈永胜教授研究

目前担任《Carbon》、《中国科学-化学》、《中国科学-材料》、《化学学报》、《2D Materials》、《Energy Storage Materials》等期刊的编辑或编委。 研究

Membrane with horizontally rigid zeolite nanosheet arrays against

Zinc-based flow batteries are recognized as one of the most promising stationary energy storage systems due to their advantages of high energy density and low cost. However,

‪Prof Yongsheng Chen, Nankai University‬

‪Prof of Chemistry and Material Science, Nankai University‬ - ‪‪Cited by 91,179‬‬ - ‪Organic Solar Cell‬ - ‪Functional Polymer Materials‬ - ‪Nano Carbon‬ - ‪Energy Conversion and Storage‬

Yongsheng CHEN | Nankai University, Tianjin | NKU

As an emerging multivalent-ion-based energy storage device, aqueous zinc-ion capacitors (AZICs) combine the merits of zinc-ion batteries with high energy density, excellent safety, low

<strong>Na-ion batteries</strong>:<strong> From fundamental

Abstract: With the increasing demand for low-cost energy storage systems, more and more researchers and engineers have been involved in the fundamental research and engineering

中国科学院Energy Storage Materials(IF=20):钠离子电池碳阳

本研究在《Energy Storage Materials》期刊上发表,题为"Unlocking plateau capacity with versatile precursor crosslinking for carbon anodes in Na-ion batteries"。研究团队

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