Results 11 to 20 of about 2,985 (266)
Spinel LiNi0.5Mn1.5O4 (LNMO) cathode material doped with Ti and La co-doping were synthesized through a solid-state method. The bi-functions of the Ti and La co-doping is realized. On the one hand, the stability of the LiNi0.5Mn1.5O4 crystal structure is
Xueying Zheng +4 more
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For solid-state electrolyte in lithium-ion batteries, high crystal boundary impedance leads to tough electrolyte-electrode interfacial issues. Here, we introduce garnet Li6.4La3Zr1.4Ta0.6O12 (LLZTO) nanoparticles and succinonitrile (SN) into thermal ...
Zhiguang Zhao +6 more
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Surface modification has been one of most effective methods to improve the electrochemical performance of lithium rich layered oxides. In this paper, the Li1.2Mn0.56Ni0.16Co0.08O2 microspheres are prepared by urea assisted combustion route, and then ...
Yunlong ZHOU +6 more
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Solid state ionics: a Japan perspective
The 70-year history of scientific endeavor of solid state ionics research in Japan is reviewed to show the contribution of Japanese scientists to the basic science of solid state ionics and its applications.
Osamu Yamamoto
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Unsupervised discovery of solid-state lithium ion conductors [PDF]
AbstractAlthough machine learning has gained great interest in the discovery of functional materials, the advancement of reliable models is impeded by the scarcity of available materials property data. Here we propose and demonstrate a distinctive approach for materials discovery using unsupervised learning, which does not require labeled data and thus
Ying Zhang +9 more
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LiGaOS is a fast Li-Ion conductor: A first-principles prediction
Solid Li-ion conducting electrolytes are highly sought for all solid-state Li-batteries, which are considered the next-generation safe batteries. Here a systematic computational study on the intrinsic transport properties of lithium gallium oxysulfide ...
Xueling Lei +4 more
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Lithium–sulfur batteries (LSBs) with extremely‐high theoretical energy density (2600 Wh kg−1) are deemed to be the most likely energy storage system to be commercialized.
Wenqi Yan +9 more
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ABSTRAK Fasa Li2Sc3(PO4)3 merupakan material konduktor superionik yang dapat diaplikasikan sebagai baterai yang dapat diisi ulang (rechargeable). Ion Li+ dalam struktur Li2Sc3(PO4) dapat mengalami migrasi dari posisi terisi ke posisi kosong.
Akram La Kilo, D. Mazza
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Simulation of the Atomic Structure and Distribution of Vacancies in the Ionic Conductor LaxCe1/2 – xLixTiO3 [PDF]
The atomic and electronic structure of the ion conductor La0.25Ce0.25Li0.25TiO3 with ab-initio method FLAPW-GGA was studied. The pair interaction potentials of lithium ions were obtained. Dependences of the concentration of vacancies on the concentration
S.A. Kalkuta
doaj
All-solid-state lithium-ion batteries using Li+-ion conducting ceramic electrolytes have been focused on as attractive future batteries for electric vehicles and renewable energy conversion systems because high safety can be realized due to non ...
MAO SHOJI +2 more
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