Abstract
有 付, Chen Yang, Suyan Niu, Houze Zhang, Boyun Wang, Dongxiang Li, Wenlong Zhang, Na Ju, Zilong Liu, Zhigang Zhang, Hongbin Sun, Guangwen Xu
Abstract
Authors
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A novel multifunctional electrolyte system for high performance Li-ion batteries
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Provenance
crossref
Confidence 100%
openalex
Confidence 95%
datacite
Confidence 0%
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Dipole-dipole interactions in electrolyte to facilitate Li-ion desolvation for low-temperature Li-ion batteries
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Protic poly (ionic liquid) s with high ionic conductivity and Li+ transport number as moderate temperature solid electrolytes
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Dual-objective optimization of lithium metal battery electrolytes via machine learning
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Synergistic anion and solvent-derived interphases enable lithium-ion batteries under extreme conditions
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A localized high-concentration electrolyte with lithium bis (fluorosulfonyl) imide (LiFSI) salt and F-containing cosolvents to enhance the performance of Li||LiNi0.8Co0.1Mn0.1O2 lithium metal batteries
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Inhibition of anodic corrosion of aluminum cathode current collector on recharging in lithium imide electrolytes
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Corrosion of aluminium current collector in lithium-ion batteries: a review
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Corrosion prevention mechanism of aluminum metal in superconcentrated electrolytes
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Study of the corrosion behavior of cathode current collector in LiFSI electrolyte
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Optimizing the composition of LiFSI-based electrolytes by a method combining simplex with normalization
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Effects of LiFSi and LMO-coated NCM on capacity and cycle characteristics of all-solid lithium batteries
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Superior long-term cycling of high-voltage lithium-ion batteries enabled by single-solvent electrolyte
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Inorganic-Dominated interphase enabled by tuning solvation configuration for 4.8 V lithium-ion batteries
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Solvating lithium and tethering aluminium using di-coordination-strength anions for low-temperature lithium metal batteries
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Effects of Li+ solvation structures on aluminum corrosion in ether‐based electrolyte solutions with lithium bis (Fluorosulfonyl) imide (LiFSI)
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Aluminum corrosion chemistry in high-voltage lithium metal batteries with LiFSI-Based ether electrolytes
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Mechanism of aluminum corrosion in LiFSI-based electrolyte at elevated temperatures
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A single lithium-ion conducting monomer as a SEI-Forming additive for lithium-ion batteries
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1, 3, 5-Trifluorobenzene endorsed EC-free electrolyte for high-voltage and wide-temperature lithium-ion batteries
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Alternative pulse current charging reinforcing the cathode–electrolyte interphase to inhibit the aluminum corrosion of LiFSI-Based batteries at high temperatures
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Revisiting the stability of aluminum current collectors in carbonate electrolytes for High-voltage Li-ion batteries
10.1016/j.ces.2023.119346 · doi-reference
A novel 4‐Fluorophenyl isocyanate additive constructing solid cathodes‐electrolyte interface for high‐performance lithium‐ion batteries
10.1002/smll.202405853 · doi-reference
Pentafluorophenyl diethoxy phosphate: an electrolyte additive for high-voltage cathodes of lithium-ion batteries
10.1016/j.est.2024.111364 · doi-reference
1, 3, 5-Trifluorobenzene endorsed EC-free electrolyte for high-voltage and wide-temperature lithium-ion batteries
10.1016/j.jechem.2023.06.003 · doi-reference
A single lithium-ion conducting monomer as a SEI-Forming additive for lithium-ion batteries
10.1039/d5ta00347d · doi-reference
Mechanism of aluminum corrosion in LiFSI-based electrolyte at elevated temperatures
10.1016/s1003-6326(21)65588-7 · doi-reference
Aluminum corrosion chemistry in high-voltage lithium metal batteries with LiFSI-Based ether electrolytes
10.1021/acsami.4c09083 · doi-reference
Effects of Li+ solvation structures on aluminum corrosion in ether‐based electrolyte solutions with lithium bis (Fluorosulfonyl) imide (LiFSI)
10.1002/smll.202500166 · doi-reference
Solvating lithium and tethering aluminium using di-coordination-strength anions for low-temperature lithium metal batteries
10.1039/d3ee03809b · doi-reference
Failure mechanism and voltage regulation strategy of low N/P ratio lithium iron phosphate battery
10.1016/j.est.2022.104588 · doi-reference
Elucidating in-situ heat generation of LiFePO4 semi-solid lithium slurry battery under specific cycling protocols
10.1016/j.electacta.2023.143674 · doi-reference
Inorganic-Dominated interphase enabled by tuning solvation configuration for 4.8 V lithium-ion batteries
10.1021/acs.jpclett.4c03094 · doi-reference
Corrosion inhibition of aluminum current collector by a newly synthesized 5-formyl-8-hydroxyquinoline for aqueous-based battery
10.1016/j.jpowsour.2022.232142 · doi-reference
Ionic liquid additive mitigating lithium loss and aluminum corrosion for high-voltage anode-free lithium metal batteries
10.1021/acsnano.4c13203 · doi-reference
Superior long-term cycling of high-voltage lithium-ion batteries enabled by single-solvent electrolyte
10.1016/j.nanoen.2021.106299 · doi-reference
Effects of LiFSi and LMO-coated NCM on capacity and cycle characteristics of all-solid lithium batteries
10.1149/1945-7111/ab9a06 · doi-reference
Optimizing the composition of LiFSI-based electrolytes by a method combining simplex with normalization
10.1039/d1ra05156c · doi-reference
Study of the corrosion behavior of cathode current collector in LiFSI electrolyte
10.1002/cssc.202400164 · doi-reference
Corrosion prevention mechanism of aluminum metal in superconcentrated electrolytes
10.1002/celc.201500235 · doi-reference
Corrosion of aluminium current collector in lithium-ion batteries: a review
10.1016/j.est.2021.103226 · doi-reference
Inhibition of anodic corrosion of aluminum cathode current collector on recharging in lithium imide electrolytes
10.1016/s0013-4686(99)00429-6 · doi-reference
Revisiting the corrosion of the aluminum current collector in lithium-ion batteries
10.1021/acs.jpclett.6b02933 · doi-reference
A localized high-concentration electrolyte with lithium bis (fluorosulfonyl) imide (LiFSI) salt and F-containing cosolvents to enhance the performance of Li||LiNi0.8Co0.1Mn0.1O2 lithium metal batteries
10.1016/j.cej.2022.135534 · doi-reference
Synergistic anion and solvent-derived interphases enable lithium-ion batteries under extreme conditions
10.1021/jacs.4c07806 · doi-reference
Protic poly (ionic liquid) s with high ionic conductivity and Li+ transport number as moderate temperature solid electrolytes
10.1021/acs.chemmater.4c02765 · doi-reference
Complementary electrolyte design for Li metal batteries in electric vehicle applications
10.1021/acsami.1c03017 · doi-reference
Dipole-dipole interactions in electrolyte to facilitate Li-ion desolvation for low-temperature Li-ion batteries
10.1016/j.jechem.2025.01.017 · doi-reference
In situ polymerization of an electrochemically stable dual-salt gel polymer electrolyte for lithium ion batteries
10.1039/d4ta07337a · doi-reference
Controlled hydrolysis of LiPF6-based electrolytes with trace dual-unsaturated additives for high-temperature lithium-ion pouch batteries
10.26599/nr.2025.94907475 · doi-reference
A review on design parameters for the full-cell lithium-ion batteries
10.3390/batteries10100340 · doi-reference
Onset of lithium plating in fast-charging Li-Ion batteries
10.1021/acsenergylett.5c00322 · doi-reference
Upcycling spent lithium‐ion batteries: constructing bifunctional catalysts featuring long‐range order and short‐range disorder for lithium‐oxygen batteries
10.1002/adma.202418963 · doi-reference
A novel multifunctional electrolyte system for high performance Li-ion batteries
10.1016/j.apsusc.2024.161100 · doi-reference