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Recent Progress of the Solid-State Electrolytes for High-Energy Metal-Based Batteries
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This article is published in Advanced Energy Materials.The article was published on 2018-04-01. It has received 771 citations till now.read more
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The critical role of inorganic nanofillers in solid polymer composite electrolyte for Li+ transportation
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Cell failures of all-solid-state lithium metal batteries with inorganic solid electrolytes: Lithium dendrites
TL;DR: In this paper, the authors focus on comprehensively discussing the lithium dendrite formation that leads to cell failures of all-solid-state lithium metal batteries with inorganic solid electrolytes.
Journal ArticleDOI
Gel Polymer Electrolyte with High Li+ Transference Number Enhancing the Cycling Stability of Lithium Anodes
TL;DR: A polyethylene (PE)-supported gel polymer electrolyte (GPE) with excellent electrolyte uptake/retention capability was prepared by the construction of cross-linked polymer networks (PNs) on the surface of a poly(ethylenimine)-primed PE separator to stabilize the lithium anode.
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Realizing High Voltage Lithium Cobalt Oxide in Lithium-Ion Batteries
TL;DR: In this paper, the authors summarized the mechanism of capacity decay of lithium cobalt oxide during cycling, including coating and doping, and extended the discussion of popular modification methods for electrolytes including electrolyte additives, quasi-solid electrolytes, and electr...
References
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Building better batteries
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Nonaqueous liquid electrolytes for lithium-based rechargeable batteries.
TL;DR: The phytochemical properties of Lithium Hexafluoroarsenate and its Derivatives are as follows: 2.2.1.
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Challenges in the development of advanced Li-ion batteries: a review
TL;DR: Li-ion battery technology has become very important in recent years as these batteries show great promise as power sources that can lead us to the electric vehicle (EV) revolution as mentioned in this paper.
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Reviving the lithium metal anode for high-energy batteries
TL;DR: The current understanding on Li anodes is summarized, the recent key progress in materials design and advanced characterization techniques are highlighted, and the opportunities and possible directions for future development ofLi anodes in applications are discussed.
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Ionic-liquid materials for the electrochemical challenges of the future.
TL;DR: The goal in this review is to survey the recent key developments and issues within ionic-liquid research in these areas, and to generate interest in the wider community and encourage others to make use of ionic liquids in tackling scientific challenges.