Page 211 - Read Online
P. 211

Page 22 of 23           Yang et al. Energy Mater 2024;4:400061  https://dx.doi.org/10.20517/energymater.2023.144

                   2020;32:9821-48.  DOI
               53.      Li S, Zhang S, Chai S, et al. Structured solid electrolyte interphase enable reversible Li electrodeposition in flame-retardant phosphate-
                   based electrolyte. Energy Stor Mater 2021;42:628-35.  DOI
               54.      Huang Q, Li X, Zhang G, Weng J, Wang Y, Deng J. Innovative thermal management and thermal runaway suppression for battery
                   module with flame retardant flexible composite phase change material. J Clean Prod 2022;330:129718.  DOI
               55.      Xie J, Qiao S, Wang Y, et al. Three-in-one fire-retardant poly(phosphate)-based fast ion-conductor for all-solid-state lithium batteries.
                   J Energy Chem 2023;80:324-34.  DOI
               56.      Du Y, Liu X, Chen L, et al. 3D hierarchical fireproof gel polymer electrolyte towards high-performance and comprehensive safety
                   lithium-ion batteries. Chem Eng J 2023;476:146605.  DOI
               57.      Zhang C, Lu Z, Song M, et al. Highly oxidation-resistant ether gel electrolytes for 4.7 V high-safety lithium metal batteries. Adv
                   Energy Mater 2023;13:2203870.  DOI
               58.      Zhu J, Zhang J, Zhao R, et al. In situ 3D crosslinked gel polymer electrolyte for ultra-long cycling, high-voltage, and high-safety
                   lithium metal batteries. Energy Stor Mater 2023;57:92-101.  DOI
               59.      Le Mong A, Kim D. Acceleration of selective lithium ion transport of PAES-g-2PEG self-assembled flexible solid-state electrolytes
                   for lithium secondary batteries. Energy Stor Mater 2022;47:394-407.  DOI
               60.      Yang SJ, Yao N, Jiang FN, et al. Thermally stable polymer-rich solid electrolyte interphase for safe lithium metal pouch cells. Angew
                   Chem Int Ed 2022;61:e202214545.  DOI
               61.      Jiang FN, Cheng XB, Yang SJ, et al. Thermoresponsive electrolytes for safe lithium-metal batteries. Adv Mater 2023;35:e2209114.
                   DOI
               62.      Zhang S, Sun F, Du X, et al. In situ -polymerized lithium salt as a polymer electrolyte for high-safety lithium metal batteries. Energy
                   Environ Sci 2023;16:2591-602.  DOI
               63.      Huang X, Huang S, Wang T, et al. Polyether-b-amide based solid electrolytes with well-adhered interface and fast kinetics for ultralow
                   temperature solid-state lithium metal batteries. Adv Funct Mater 2023;33:2300683.  DOI
               64.      Ouyang D, Chen M, Liu J, Wei R, Weng J, Wang J. Investigation of a commercial lithium-ion battery under overcharge/over-
                   discharge failure conditions. RSC Adv 2018;8:33414-24.  DOI  PubMed  PMC
               65.      Zhou Z, Li M, Zhou X, Li L, Ju X, Yang L. Investigating thermal runaway triggering mechanism of the prismatic lithium iron
                   phosphate battery under thermal abuse. Renew Energy 2024;220:119674.  DOI
               66.      Jiang G, Liu J, Wang Z, Ma J. Stable non-flammable phosphate electrolyte for lithium metal batteries via solvation regulation by the
                   additive. Adv Funct Mater 2023;33:2300629.  DOI
               67.      Wang X, He W, Xue H, et al. A nonflammable phosphate-based localized high-concentration electrolyte for safe and high-voltage
                   lithium metal batteries. Sustain Energy Fuels 2022;6:1281-8.  DOI
               68.      Zhang S, Li S, Lu Y. Designing safer lithium-based batteries with nonflammable electrolytes: a review. eScience 2021;1:163-77.  DOI
               69.      Tan S, Yue J, Tian Y, et al. In-situ encapsulating flame-retardant phosphate into robust polymer matrix for safe and stable quasi-solid-
                   state lithium metal batteries. Energy Stor Mater 2021;39:186-93.  DOI
               70.      Xiao L, Zeng Z, Liu X, et al. Stable Li metal anode with “ion-solvent-coordinated” nonflammable electrolyte for safe Li metal
                   batteries. ACS Energy Lett 2019;4:483-8.  DOI
               71.      Chen J, Yang Z, Liu G, et al. Reinforcing concentrated phosphate electrolytes with in-situ polymerized skeletons for robust quasi-solid
                   lithium metal batteries. Energy Stor Mater 2020;25:305-12.  DOI
               72.      Long M, Wu G, Wang X, Wang Y. Self-adaptable gel polymer electrolytes enable high-performance and all-round safety lithium ion
                   batteries. Energy Stor Mater 2022;53:62-71.  DOI
               73.      Lu D, Zhang S, Li J, et al. Transformed solvation structure of noncoordinating flame-retardant assisted propylene carbonate enabling
                   high voltage Li-Ion batteries with high safety and long cyclability. Adv Energy Mater 2023;13:2300684.  DOI
               74.      Fan X, Ji X, Chen L, et al. All-temperature batteries enabled by fluorinated electrolytes with non-polar solvents. Nat Energy
                   2019;4:882-90.  DOI
               75.      Liu Y, Tao X, Wang Y, et al. Self-assembled monolayers direct a LiF-rich interphase toward long-life lithium metal batteries. Science
                   2022;375:739-45.  DOI
               76.      Wu J, Wang X, Liu Q, et al. A synergistic exploitation to produce high-voltage quasi-solid-state lithium metal batteries. Nat Commun
                   2021;12:5746.  DOI  PubMed  PMC
               77.      Hu A, Chen W, Li F, et al. Nonflammable polyfluorides-anchored quasi-solid electrolytes for ultra-safe anode-free lithium pouch cells
                   without thermal runaway. Adv Mater 2023;35:e2304762.  DOI
               78.      Liu F, Lan T, Chen K et al. In situ polymerized flame retardant gel electrolyte for high-performance and safety-enhanced lithium metal
                   batteries. ACS Appl Mater Interfaces 2023;15:23136-45.  DOI
               79.      Das S, Bhattacharyya AJ. Influence of water and thermal history on ion transport in lithium salt-succinonitrile plastic crystalline
                   electrolytes. Solid State Ionics 2010;181:1732-9.  DOI
               80.      Hu P, Chai J, Duan Y, Liu Z, Cui G, Chen L. Progress in nitrile-based polymer electrolytes for high performance lithium batteries. J
                   Mater Chem A 2016;4:10070-83.  DOI
               81.      Sun Q, Wang S, Ma Y, et al. Fumaronitrile-fixed in-situ gel polymer electrolyte balancing high safety and superior electrochemical
                   performance for Li metal batteries. Energy Stor Mater 2022;44:537-46.  DOI
               82.      Zhang D, Shi Y, An J, Yang S, Li B. Triallyl cyanurate copolymerization delivered nonflammable and fast ion conducting elastic
   206   207   208   209   210   211   212   213   214   215   216