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Advanced Search Results For "LITHIUM ions"

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 "LITHIUM ions"
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"Gingival Soft Tissue Integrative" Lithium Disilicate Glass-Ceramics with High Mechanical Properties and Sustained-Release Lithium Ions.

Publication Type: Academic Journal

Source(s): ACS applied materials & interfaces [ACS Appl Mater Interfaces] 2022 Dec 14; Vol. 14 (49), pp. 54572-54586. Date of Electronic Publication: 2022 Dec 05.

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Abstract: Due to their good mechanical performances and high biocompatibility, all-ceramic materials are widely applied in clinics, especially in orthopedic and dental areas. However, the "hard" property negatively affects its integration with "soft" tissue, whi...

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Hierarchical Nanocellulose-Based Gel Polymer Electrolytes for Stable Na Electrodeposition in Sodium Ion Batteries.

Publication Type: Academic Journal

Source(s): Small (Weinheim an der Bergstrasse, Germany) [Small] 2022 Oct; Vol. 18 (43), pp. e2107183. Date of Electronic Publication: 2022 Feb 27.

Abstract: Sodium ion batteries (NIBs) based on earth-abundant materials offer efficient, safe, and environmentally sustainable solutions for a decarbonized society. However, to compete with mature energy storage technologies such as lithium ion batteries, furthe...

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Multi-scale simulation of the adsorption of lithium ion on graphite surface: From quantum Monte Carlo to molecular density functional theory.

Publication Type: Academic Journal

Source(s): Journal of Chemical Physics. 3/7/2022, Vol. 156 Issue 9, p1-9. 9p.

Abstract: The structure of the double-layer formed at the surface of carbon electrodes is governed by the interactions between the electrode and the electrolyte species. However, carbon is notoriously difficult to simulate accurately, even with well-established ...

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Nanofiber-in-microfiber carbon/silicon composite anode with high silicon content for lithium-ion batteries.

Publication Type: Academic Journal

Source(s): Carbon. Jan2023, Vol. 203, p436-444. 9p.

Abstract: Silicon-rich anodes are desired to leverage the energy capacity of lithium-ion batteries (LIBs) towards critical markets. We prepared new silicon-rich composite anodes with a nanofiber-in-microfiber architecture using a co-axial electrospinning setup. ...

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Unlocking Charge Transfer Limitations for Extreme Fast Charging of Li‐Ion Batteries.

Publication Type: Academic Journal

Source(s): Angewandte Chemie. 1/23/2023, Vol. 135 Issue 4, p1-9. 9p.

Abstract: Extreme fast charging (XFC) of high‐energy Li‐ion batteries is a key enabler of electrified transportation. While previous studies mainly focused on improving Li ion mass transport in electrodes and electrolytes, the limitations of charge transfer acro...

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Single-Walled Carbon Nanotubes with Red Phosphorus in Lithium-Ion Batteries: Effect of Surface and Encapsulated Phosphorus.

Publication Type: Academic Journal

Source(s): Nanomaterials (2079-4991). Jan2023, Vol. 13 Issue 1, p153. 18p.

Abstract: Single-walled carbon nanotubes (SWCNTs) with their high surface area, electrical conductivity, mechanical strength and elasticity are an ideal component for the development of composite electrode materials for batteries. Red phosphorus has a very high ...

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Poly tannic acid carbon rods as anode materials for high performance lithium and sodium ion batteries.

Publication Type: Academic Journal

Source(s): Journal of Colloid & Interface Science. Jan2023:Part A, Vol. 629, p832-845. 14p.

Abstract: A carbon superstructure material (PTA-700) was synthesized by a simple self-assembly method and one-step carbonization, and showed remarkable high energy and long cycle life stability in lithium/sodium ion half battery. [Display omitted] Due to abundan...

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Effects of Diffusion-Induced Nonlinear Local Volume Change on the Structural Stability of NMC Cathode Materials of Lithium-Ion Batteries.

Publication Type: Academic Journal

Source(s): Mathematics (2227-7390). Dec2022, Vol. 10 Issue 24, p4697. 17p.

Abstract: Electrochemical stress induced by the charging/discharging of electrode materials strongly affects the lifetime of lithium-ion batteries (LIBs) by regulating mechanical failures. Electrochemical stress is caused by a change in the local volume of the a...

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Review on the Experimental Characterization of Fracture in Active Material for Lithium-Ion Batteries.

Publication Type: Academic Journal

Source(s): Energies (19961073). Dec2022, Vol. 15 Issue 23, p9168. 47p.

Abstract: Nowadays, lithium-ion batteries are one of the most widespread energy storage systems, being extensively employed in a large variety of applications. A significant effort has been made to develop advanced materials and manufacturing processes with the ...

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Insight mechanism of nano iron difluoride cathode material for high-energy lithium-ion batteries: a review.

Publication Type: Academic Journal

Source(s): Journal of Solid State Electrochemistry. Dec2022, Vol. 26 Issue 12, p2601-2626. 26p.

Abstract: Iron(II) fluoride (FeF2) is a promising candidate as the cathode material for lithium-ion batteries (LIBs) due to its quite high theoretical energy density compared with the commercial cathode materials like LiCoO2 and its abundance. However, the actua...

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