1 |
余嘉俊,赵爽,冯霄.膜分离技术在盐湖提锂应用中的研究进展[J].辽宁石油化工大学学报,2023,43(4):30⁃35.
|
|
YU J J,ZHAO S,FENG X.Research progress of membrane separation technology in salt lake lithium extraction[J].Journal of Liaoning Petrochemical University,2023,43(4):30⁃35.
|
2 |
WANG S L,WANG C,TAKYI⁃ANINAKWA P,et al.An improved parameter identification and radial basis correction⁃differential support vector machine strategies for state⁃of⁃charge estimation of urban⁃transportation⁃electric⁃vehicle lithium⁃ion batteries[J].Journal of Energy Storage,2024,80:110222.
|
3 |
WANG X F,HE W J,XUE H L,et al.A nonflammable phosphate⁃based localized high⁃concentration electrolyte for safe and high⁃voltage lithium metal batteries[J].Sustainable Energy & Fuels,2022,6(5):1281⁃1288.
|
4 |
ZHAO S Y,SHI Q H,QI R J,et al.NaTi2(PO4)3 modified O3⁃type NaNi1/3Fe1/3Mn1/3O2 as high rate and air stable cathode for sodium⁃ion batteries[J].Electrochimica Acta,2023,441:141859.
|
5 |
张博,郄佳鑫,曹永安,等.基于可视化分析辅助探究钠离子电池硬碳负极研究进展[J].石油化工高等学校学报,2022,35(6):1⁃9.
|
|
ZHANG B,XI J X,CAO Y A,et al.Research progress of hard carbon anode of sodium⁃ion batteries based on visualization analysis[J].Journal of Petrochemical Universities,2022,35(6):1⁃9.
|
6 |
GOIKOLEA E,PALOMARES V,WANG S J,et al.Na⁃ion batteries⁃approaching old and new challenges[J].Advanced Energy Materials,2020,10(44):2002055.
|
7 |
LI C C,XU H Y,NI L,et al.Nonaqueous liquid electrolytes for sodium⁃ion batteries:Fundamentals,progress and perspectives[J].Advanced Energy Materials,2023,13(40):2301758.
|
8 |
TURGEMAN M,WINEMAN⁃FISHER V,MALCHIK F,et al.A cost⁃effective water⁃in⁃salt electrolyte enables highly stable operation of a 2.15⁃V aqueous lithium⁃ion battery[J].Cell Reports Physical Science,2022,3(1):100688.
|
9 |
LIN R,KE C M,CHEN J E,et al.Asymmetric donor⁃acceptor molecule⁃regulated core⁃shell⁃solvation electrolyte for high⁃voltage aqueous batteries[J].Joule,2022,6(2):399⁃417.
|
10 |
李冰雁,李晨,游晨,等.磷石膏堆场区域水环境中主要污染物分布特征及其风险评价[J].化工环保,2024,44(2):279⁃285.
|
|
LI B Y,LI C,YOU C,et al.Distribution characteristics and risk assessment of major pollutants in regional water environment of phosphogypsum yard[J].Environmental Protection of Chemical Industry,2024,44(2):279⁃285.
|
11 |
夏恒恒,梁鹏程,安仲勋.硫系电解液添加剂对镍钴锰酸锂//石墨锂离子电池性能的影响[J].储能科学与技术,2023,12(8):2390⁃2400.
|
|
XIA H H,LIANG P C,AN Z X.Effects of sulfur⁃containing electrolyte additives on the performance of lithium nickel cobalt manganese oxide//graphite Li⁃ion batteries[J].Energy Storage Science and Technology,2023,12(8):2390⁃2400.
|
12 |
禇艳丽,董庆雨,毛亚云,等.五氟乙氧基环三磷腈添加剂对钠离子电池性能的影响[J].现代化工,2020,40(4):78⁃83.
|
|
CHU Y L,DONG Q Y,MAO Y Y,et al.Effect of FPN additive on performance of sodium ion batteries[J].Modern Chemical Industry,2020,40(4):78⁃83.
|
13 |
靳爱民.斯坦福大学研发不易燃的锂离子电池[J].石油炼制与化工,2023,54(3):13.
|
|
JIN A M.Selection and comparative analysis of hydrogenation unit in ltag process[J].Petroleum Processing and Petrochemicals,2023,54(3):13.
|
14 |
YU Y,CHE H Y,YANG X R,et al.Non⁃flammable organic electrolyte for sodium⁃ion batteries[J].Electrochemistry Communications,2020,110:106635.
|
15 |
孟嘉祺,贾国凤,杨红军,等.哌啶基离子液体在钠离子电池中的高温性能研究[J].盐湖研究,2024,32(4):46⁃51.
|
|
MENG J Q,JIA G F,YANG H J,et al.High temperaure perfonmnnce study of piperidine⁃based lonic liquids in sodium lon batteries[J].Journal of Salt Lake Research,2024,32(4):46⁃51.
|
16 |
PELED E.The electrochemical behavior of alkali and alkaline earth metals in nonaqueous battery systems:The solid electrolyte interphase model[J].Journal of the Electrochemical Society,1979,126(12):2047.
|
17 |
MA X,FENG D Y,XIAO Y L,et al.Generating lithium fluoride⁃abundant interphase on layered lithium⁃rich oxide cathode with lithium 1,1,2,2,3,3⁃hexafluoropropane⁃1,3⁃disulfonimide[J].Journal of Power Sources,2021,507:230278.
|
18 |
RUI G,KIM K H,GALLANT B M,et al.Impact of LiF particle morphology on overpotential and structure of Li metal deposition[J].Journal of the Electrochemical Society,2022,169(10):100523.
|
19 |
KITZ P G,LACEY M J,NOVÁK P,et al.Operando investigation of the solid electrolyte interphase mechanical and transport properties formed from vinylene carbonate and fluoroethylene carbonate[J].Journal of Power Sources,2020,477:228567.
|
20 |
EL KACEMI Z,FKHAR L,EL MAALAM K,et al.Enhancement of the Na2FePO4F@gC3N4 electrochemical performance in view of its implementation in sodium⁃ion batteries[J].Solid State Ionics,2023,392:116167.
|
21 |
ZHENG X Y,WENG S T,LUO W,et al.Deciphering the role of fluoroethylene carbonate towards highly reversible sodium metal anodes[J].Research,2022,9754612.
|
22 |
AURBACH D,MARKEVICH E,SALITRA G.High energy density rechargeable batteries based on Li metal anodes.The role of unique surface chemistry developed in solutions containing fluorinated organic co⁃solvents[J].Journal of the American Chemical Society,2021,143(50):21161⁃21176.
|
23 |
WANG X L,ZENG Z Q,ZHANG H,et al.1,3,5⁃Trifluorobenzene,an electrolyte additive with high thermal stability and superior film⁃forming properties for lithium⁃ion batteries[J].Chemical Communications (Cambridge,England),2023,59(86):12919⁃12922.
|
24 |
曾双威,李春雷,李世友,等.基于LiFSI和LiTFSI电解液对铝箔腐蚀的抑制方法[J].现代化工,2019,39(1):28⁃31.
|
|
ZENG S W,LI C L,LI S Y,et al.Methods for suppressing aluminum foil corrosion by LiFSI and LiTFSI based electrolytes[J].Modern Chemical Industry,2019,39(1):28⁃31.
|
25 |
ZHANG S S.An unique lithium salt for the improved electrolyte of Li⁃ion battery[J].Electrochemistry Communications,2006,8(9):1423⁃1428.
|
26 |
JAMAL A,SALIAN G D,MATHEW A,et al.Tris (trimethylsilyl) phosphite and lithium difluoro (oxalato) borate as electrolyte additives for LiNi0.5Mn1.5O4 graphite lithium⁃ion batteries[J].ChemElectroChem,2023,10(16):e202300139.
|
27 |
LAW H M,YU J,KWOK S C T,et al.A hybrid dual⁃salt polymer electrolyte for sodium metal batteries with stable room temperature cycling performance[J].Energy Storage Materials,2022,46:182⁃191.
|
28 |
MOGENSEN R,BUCKEL A,COLBIN S,et al.A wide⁃temperature⁃range,low⁃cost,fluorine⁃free battery electrolyte based on sodium bis (oxalate) borate[J].Chemistry of Materials,2021,33(4):1130⁃1139.
|
29 |
ZENG Z Q,JIANG X Y,LI R,et al.A safer sodium⁃ion battery based on nonflammable organic phosphate electrolyte[J].Advanced Science (Weinheim,Baden⁃Wurttemberg,Germany),2016,3(9):1600066.
|
30 |
ZHENG J M,ENGELHARD M H,MEI D H,et al.Electrolyte additive enabled fast charging and stable cycling lithium metal batteries[J].Nature Energy,2017,2(3):17012.
|
31 |
SZCZĘSNA⁃CHRZAN A,SMOLIŃSKI M,ZYBERT M,et al.Development of titanium and yttrium doped sodium⁃cobalt oxide cathods and their behaviour in cells with electrolytes based on NaTDI Hückel salt with NaPF6 salt additive[J].Journal of Power Sources,2023,562:232761.
|
32 |
LIU S,ZHANG Q K,WANG X S,et al.LiFSI and LiDFBOP dual⁃salt electrolyte reinforces the solid electrolyte interphase on a lithium metal anode[J].ACS Applied Materials & Interfaces,2020,12(30):33719⁃33728.
|
33 |
YANG H,HWANG J,TONOUCHI Y,et al.Sodium difluorophosphate:Facile synthesis,structure,and electrochemical behavior as an additive for sodium⁃ion batteries[J].Journal of Materials Chemistry A,2021,9(6):3637⁃3647.
|
34 |
SONG G,YI Z L,SU F Y,et al.Boosting the low⁃temperature performance for Li⁃ion batteries in LiPF6⁃based local high⁃concentration electrolyte[J].ACS Energy Letters,2023,8(3):1336⁃1343.
|
35 |
ZHENG X Y,FU H Y,HU C C,et al.Toward a stable sodium metal anode in carbonate electrolyte:A compact,inorganic alloy interface[J].The Journal of Physical Chemistry Letters,2019,10(4):707⁃714.
|
36 |
XU Z X,YANG J,ZHANG T,et al.Stable Na metal anode enabled by a reinforced multistructural SEI layer[J].Advanced Functional Materials,2019,29(27):1901924.
|
37 |
JIAO S H,REN X D,CAO R G,et al.Stable cycling of high⁃voltage lithium metal batteries in ether electrolytes[J].Nature Energy,2018,3(9):739⁃746.
|
38 |
杨明山,刘建伟,于今,等.锂离子电池用磷腈类聚合物电解质的制备与性能[J].石油化工高等学校学报,2010,23(1):1⁃5.
|
|
YANG M S,LIU J W,YU J,et al.The preparation and properties of phosphazene polymer electrolyte for lithium ion battery[J].Journal of Petrochemical Universities,2010,23(1):1⁃5.
|
39 |
QIU Y J,LU D S,GAI Y Y,et al.Adiponitrile (ADN):A stabilizer for the LiNi0.8Co0.1Mn0.1O2 (NCM811) electrode/electrolyte interface of a graphite/NCM811 Li⁃ion cell[J].ACS Applied Materials & Interfaces,2022,14(9):11398⁃11407.
|
40 |
ZHENG X Z,HUANG T,PAN Y,et al.3,3′⁃sulfonyldipropionitrile:A novel electrolyte additive that can augment the high⁃voltage performance of LiNi1/3Co1/3Mn1/3O2/graphite batteries[J].Journal of Power Sources,2016,319:116⁃123.
|
41 |
LI X,LI W K,CHEN L,et al.Ethoxy (pentafluoro) cyclotriphosphazene (PFPN) as a multi⁃functional flame retardant electrolyte additive for lithium⁃ion batteries[J].Journal of Power Sources,2018,378:707⁃716.
|
42 |
FANG S,ZHANG Y,LIU X.Lithium anode in carbonate⁃based electrolyte:High⁃performance by self⁃protected solid⁃electrolyte⁃interphase[J].Chemical Engineering Journal,2021,426:131880.
|
43 |
ZHANG D F,LIU M,MA J B,et al.Lithium hexamethyldisilazide as electrolyte additive for efficient cycling of high⁃voltage non⁃aqueous lithium metal batteries[J].Nature Communications,2022,13(1):6966.
|
44 |
CHEN L,KISHORE B,SONG T F,et al.Improved lifetime of Na⁃ion batteries with a water⁃scavenging electrolyte additive[J].Frontiers in Energy Research,2022,10:925430.
|
45 |
雷盈,谢宇翔,戴棚,等.七氟丁酸酐电解液添加剂提升锂金属负极性能[J].厦门大学学报(自然科学版),2022,61(5):794⁃799.
|
|
LEI Y,XIE Y X,DAI P,et al.Heptafluorobutyric anhydride as an electrolyte additive to improve the performance of lithium metal anode[J].Journal of Xiamen University(Natural Science),2022,61(5):794⁃799.
|
46 |
DAI P,SHI C G,HUANG Z,et al.A new film⁃forming electrolyte additive in enhancing the interface of layered cathode and cycling life of sodium ion batteries[J].Energy Storage Materials,2023,56:551⁃561.
|
47 |
ZHANG W G,ZENG F H,HUANG H J,et al.Enhanced interphasial stability of hard carbon for sodium⁃ion battery via film⁃forming electrolyte additive[J].Nano Research,2023,16(3):3823⁃3831.
|