Li-rich layered oxides: Structure, capacity and voltage fading mechanisms and solving strategies

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‏‎thematization strategies, textual authenticity, and comprehensibility‎‏

‏‎the investigation would certainly offer implications for translation, where the translators mostly adhere to only the ideational meaning of the sl text neglecting its textual meaning, a practice which mostly leads to target language texts which have lower readability(compared with their source language counterparts) due to their displaced thematization strategies.‎‏

Synthesis–Structure–Property Relations in Layered, “Li-excess” Oxides Electrode Materials Li†Li1Õ3−2xÕ3NixMn2Õ3−xÕ3‡O2 (x = 1Õ3, 1/4, and 1/5)

Synthesis–Structure–Property Relations in Layered, “Li-excess” Oxides Electrode Materials Li†Li1Õ3−2xÕ3NixMn2Õ3−xÕ3‡O2 (x = 1Õ3, 1/4, and 1/5) Christopher R. Fell,* Kyler J. Carroll, Miaofang Chi, and Ying Shirley Meng** Department of Materials Science and Engineering, University of Florida, Gainesville, Florida 32611, USA Department of Chemistry, Virginia Commonwealth University, Richmond, Vir...

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Photoemission for layered oxides

The study of electronic structure of complex systems has been intensely prompted since the cuprate has been considered as potential breakthrough in high Tc superconductivity. Angle-resolved photoemission spectroscopy (ARPES) is one of the most direct methods of studying the electronic structure of solids. By measuring the kinetic energy and angular distribution of the electrons photoemitted fro...

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Understanding and Controlling Anionic Electrochemical Activity in High-Capacity Oxides for Next Generation Li-Ion Batteries

Rechargeable Li-ion batteries with higher energy density are in urgent demand to address the global challenge of energy storage. In comparison with anode materials, the relatively low capacity of cathode oxides, which exhibit classical cationic redox activity, has become one of the major bottlenecks to reach higher energy density. Recently, anionic activity, such as oxygen redox reaction, has b...

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Origin of voltage decay in high-capacity layered oxide electrodes.

Although Li-rich layered oxides (Li1+xNiyCozMn1-x-y-zO2 > 250 mAh g(-1)) are attractive electrode materials providing energy densities more than 15% higher than today's commercial Li-ion cells, they suffer from voltage decay on cycling. To elucidate the origin of this phenomenon, we employ chemical substitution in structurally related Li2RuO3 compounds. Li-rich layered Li2Ru1-yTiyO3 phases with...

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ژورنال

عنوان ژورنال: Particuology

سال: 2021

ISSN: 1674-2001

DOI: 10.1016/j.partic.2021.05.011