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Highly elastic energy storage device based on intrinsically super-stretchable polymer lithium-ion conductor with high conductivity [PDF]

open access: yesFundamental Research
Stretchable power sources, especially stretchable lithium-ion batteries (LIBs), have attracted increasing attention due to their enormous prospects for powering flexible/wearable electronics.
Shi Wang   +6 more
doaj   +2 more sources

Enhancing Li-ion battery anode performances via Li1.5Al0.5Ti1.5(PO4)3 coated Li1.2Mn0.54Ni0.13Co0.13O2 cathode [PDF]

open access: yesScientific Reports
The material Li1.5Al0.5Ti1.5(PO4)3 is a lithium fast ion conductor with three-dimensional ion channels. It exhibits high ionic conductivity, with lithium ion conductivity. To prevent long-term direct contact between Li1.2Mn0.54Ni0.13Co0.13O2 material and
Shang-Mei Yang   +2 more
doaj   +2 more sources

The Impact of Lithium Tungstate on the Densification and Conductivity of Phosphate Lithium‐Ion Conductors [PDF]

open access: yesChemElectroChem, 2021
AbstractInvited for this month's cover picture is the group of Prof. Fattakhova‐Rohlfing from Forschungszentrum Jülich (IEK‐1). The cover picture shows LATP powder and a dense LATP pellet obtained after powder sintering, which typically requires high temperatures.
Philipp Odenwald   +9 more
openaire   +5 more sources

Novel fast ionic conductor ceramic composite separator for high-performance safe Li-ion power batteries

open access: yesJournal of Materiomics, 2022
The ceramic composite separators coated with silica or alumina particles have been used in power batteries due to their better electrolyte wettability and better thermal stability compared with bare polymer separators.
Yuchuan Feng   +7 more
doaj   +1 more source

Sodium, Silver and Lithium-Ion Conducting β″-Alumina + YSZ Composites, Ionic Conductivity and Stability

open access: yesCrystals, 2021
Na-β″-alumina (Na2O.~6Al2O3) is known to be an excellent sodium ion conductor in battery and sensor applications. In this study we report fabrication of Na- β″-alumina + YSZ dual phase composite to mitigate moisture and CO2 corrosion that otherwise can ...
Liangzhu Zhu, Anil V. Virkar
doaj   +1 more source

Weakly coordinated Li ion in single-ion-conductor-based composite enabling low electrolyte content Li-metal batteries

open access: yesNature Communications, 2023
The pulverization of lithium metal electrodes during cycling recently has been suppressed through various techniques, but the issue of irreversible consumption of the electrolyte remains a critical challenge, hindering the progress of energy-dense ...
Hyeokjin Kwon   +12 more
doaj   +1 more source

TEM Observation of LaPO4-Dispersed LATP Lithium-Ion Conductor

open access: yesElectrochemistry, 2021
We have previously reported that a three-fold increase in lithium-ion conduction can be achieved on LATP (Li1.3Al0.3Ti1.7(PO4)3) by dispersing LaPO4 particles through the co-sintering of LATP with 4 wt% of LLTO (Li0.348La0.55TiO3).
Fangzhou SONG   +5 more
doaj   +1 more source

COF‐based single Li+ solid electrolyte accelerates the ion diffusion and restrains dendrite growth in quasi‐solid‐state organic batteries

open access: yesCarbon Energy, 2023
A solid‐state electrolyte (SSE), which is a solid ionic conductor and electron‐insulating material, is known to play a crucial role in adapting a lithium metal anode to a high‐capacity cathode in a solid‐state battery.
Genfu Zhao   +7 more
doaj   +1 more source

Nanoconfined LiBH4 as a Fast Lithium Ion Conductor [PDF]

open access: yesAdvanced Functional Materials, 2014
Designing new functional materials is crucial for the development of efficient energy storage and conversion devices such as all solid‐state batteries. LiBH4 is a promising solid electrolyte for Li‐ion batteries. It displays high lithium mobility, although only above 110 °C at which a transition to a high temperature hexagonal structure occurs. Herein,
Blanchard, Didier   +8 more
openaire   +4 more sources

Design principles for sodium superionic conductors

open access: yesNature Communications, 2023
Motivated by the high-performance solid-state lithium batteries enabled by lithium superionic conductors, sodium superionic conductor materials have great potential to empower sodium batteries with high energy, low cost, and sustainability.
Shuo Wang   +8 more
doaj   +1 more source

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