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STRESS-REGULATED PROTOCOLS FOR FAST CHARGING IN LITHIUM-ION BATTERIES (MT)
Published 2023-01-01Subjects: “…Lithium-ion battery…”
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62
Aging Mechanisms of Electrode Materials in Lithium-Ion Batteries for Electric Vehicles
Published 2015-01-01“…In this review, we give an interpretation of capacity/power fading of electrode-oriented aging mechanisms under cycling and various storage conditions for metallic oxide-based cathodes and carbon-based anodes. For the cathode of lithium-ion batteries, the mechanical stress and strain resulting from the lithium ions insertion and extraction predominantly lead to structural disordering. …”
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63
Lithium Battery Degradation and Failure Mechanisms: A State-of-the-Art Review
Published 2025-01-01Subjects: “…lithium-ion battery…”
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64
Ensuring Safety and Reliability: An Overview of Lithium-Ion Battery Service Assessment
Published 2024-12-01Subjects: “…lithium-ion batteries…”
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65
Methods for state of health estimation for lithium-ion batteries: An essential review
Published 2025-01-01Subjects: “…lithium-ion batteries (lib)…”
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66
A Parallel Multi-channel Lithium Niobate Electro-optic Modulator
Published 2024-12-01Subjects: “…thin film Lithium niobate…”
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67
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Lithium recovery from secondary sources: A review in battery recycling with emphasis on chemical precipitation
Published 2025-01-01Subjects: Get full text
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69
Recycling cathode materials for lithium-ion batteries via Hydro-to-Cathode® method
Published 2025-01-01Subjects: Get full text
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70
Improving Performance and Safety of Lithium Metal Batteries Through Surface Pretreatment Strategies
Published 2025-01-01“…Lithium metal batteries (LMBs) are promising candidates for electric vehicles (EVs) and next-generation energy storage systems owing to their high energy densities. …”
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71
Charge carrier distribution in the region of charged domain walls in reduced lithium niobate
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72
X-Ray-Induced Changes to Passivation Layers of Lithium-Ion Battery Electrodes
Published 2018-01-01“…We report here on observed modification of the solid electrolyte interphase of a lithium-ion battery electrode during prolonged exposure to 4 keV SR. …”
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73
Spherical hard carbon/graphite anode for high performance lithium ion batteries.
Published 2024-01-01“…The slow kinetics of pure graphite can lead to the formation of the lithium metal during fast charging, which triggers cycle degradation and safety issues of electric vehicles. …”
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74
Grain Boundaries Control Lithiation of Solid Solution Substrates in Lithium Metal Batteries
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75
Online Parameter Identification of the Lithium-Ion Battery with Refined Instrumental Variable Estimation
Published 2020-01-01“…Refined Instrumental Variable (RIV) estimation is applied to online identify the parameters of the Equivalent Circuit Model (ECM) for Lithium-ion (Li-ion) battery in this paper, which enables accurate parameters estimation with the measurement noise. …”
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76
The change of the domain wall shape under the ion beam irradiation in lithium niobate
Published 2025-04-01Get full text
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77
Cell Architecture Design for Fast-Charging Lithium-Ion Batteries in Electric Vehicles
Published 2025-01-01Subjects: “…lithium-ion batteries…”
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78
Lithium-Ion Battery Capacity Estimation: A Method Based on Visual Cognition
Published 2017-01-01“…This study introduces visual cognition into Lithium-ion battery capacity estimation. The proposed method consists of four steps. …”
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79
An Adaptive Estimation Scheme for Open-Circuit Voltage of Power Lithium-Ion Battery
Published 2013-01-01“…Firstly an equivalent circuit model is employed to describe the polarization characteristic and the dynamic behavior of the lithium-ion battery; the state-space representation of the electrical performance for the battery is obtained based on the equivalent circuit model. …”
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80
Broadband and fabrication tolerant polarization splitter–rotator on thin-film lithium niobate
Published 2025-01-01“…Here, we propose and experimentally demonstrate a polarization splitter–rotator based on the principles of adiabatic mode evolution and the stimulated Raman adiabatic passage on the thin-film lithium niobate (TFLN) platform. The experimental results indicate that the fabricated device exhibits an insertion loss of less than 0.5 dB and extinction ratios exceeding 20 dB over a 130-nm band, with the potential to extend up to 250 nm as predicted by simulations. …”
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