电化学(中英文) ›› 2007, Vol. 13 ›› Issue (4): 351-359.
• 研究论文 • 下一篇
刘鹏;童叶翔;杨绮琴;
收稿日期:
2007-11-28
修回日期:
2007-11-28
出版日期:
2007-11-28
发布日期:
2007-11-28
LIU Peng,TONG Ye-xiang,YANG Qi-qin
Received:
2007-11-28
Revised:
2007-11-28
Published:
2007-11-28
Online:
2007-11-28
摘要: 介绍近年来熔盐体系的概况,着重室温熔盐的发展.熔盐在电化学制备合金和功能材料、能源、分析和分离、用作反应介质和催化剂、环境保护等方面应用前景良好.
中图分类号:
刘鹏, 童叶翔, 杨绮琴, . 熔盐体系及有关应用的新进展[J]. 电化学(中英文), 2007, 13(4): 351-359.
LIU Peng, TONG Ye-xiang, YANG Qi-qin. Molten Salt Systems and the New Developments for the Application of Molten Salts[J]. Journal of Electrochemistry, 2007, 13(4): 351-359.
[1]Yang Qi-Qin(杨绮琴),Duan Shu-Zhen(段淑贞).The new developments of molten salt electrochemistry[J].Electrochemistry(in Chinese),2001,7(1):10-15. [2]Liao Ju-Hsiou,Wu Pei-Chi,Bai Yi-Hsuan.Eutecticmixture of choline chloride/urea as a green solvent,insynthesis of a coordination polymer:[Zn(O3PCH2CO2)].NH4[J].Inorganic Chemistry Com-munications,2005,8:390-392. [3]Andrew P Abbott,David Boothby,Glen Capper,et al.Deep eutectic solvents formed between choline chlorideand carboxylic acids:versatile alternatives to ionic liq-uids[J].J Am Chem Soc,2004,126:9142-9147. [4]Maciej Gali'nski,Andrzej Lewandowski,IzabelaStepniak.Ionic liquids as electrolytes[J].Electrochim-ica Acta,2006,51:5567-5580. [5]TakayaSato,GenMasuda,KentaroTakagi.Electrochemi-cal properties of novel ionic liquids for electric doublelayer capacitor applications[J].Electrochimica Acta,2004,49:3603-3611. [6]Batrice Garcia,Serge Lavall,Grald Perron,et al.Room temperature molten salts as lithium battery elec-trolyte[J].Electrochimica Acta,2004,49:4583-4588. [7]Kazuhiko Matsumoto,Rika Hagiwara.A newroom tem-perature ionic liquid of oxyfluorometallate anion:1-Eth-yl-3-methylimidazolium oxypentafluorotungstate(EMIm-WOF5)[J].Journal of Fluorine Chemistry,2005,126:1095-1100. [8]Anthony M Leone,Stephanie C Weatherly,Mary Eliza-beth Williams,et al.Murray.An ionic liquid form ofDNA:Redox-active molten salts of nucleic acids[J].JAm Chem Soc,2001,123(2):218-222. [9]Marek Kosmulski,Jarl B Rosenholm,Czeslaw Sanelu-ta,et al.Electroacoustics and electroosmosis in lowtemperature ionic liquids[J].Colloids and SurfacesA:Physicochem Eng Aspects,2005,267:16-18. [10]Yongsheng Hu,Hong Li,Xuejie Huang,et al.Novelroom temperature molten salt[J].ElectrochemistryCommunications,2004,6:28-32. [11]Liang Hong-Ying(梁宏莹),Wu Feng(吴锋),ChenLi-Quan(陈立泉),et al.Comparative studies on ther-mal and electrochemical properties of room-temperaturemolten salt electrolytes based on LiTFSI[J].Chemi-cal Journal of Chinese Universities(in Chinese),2003,24:305-30. [12]YongshengHu,ZhaoxiangWang,XuejieHuang,etal.Physical and electrochemical properties of new binaryroom-temperature molten salt electrolyte based on Li-BETI and acetamide[J].Solid State Ionics,2004,175:277-280. [13]Gambino M,Bros J P.Capacite calorifique de l'uree etde quelques melanges eutectiques a base d'uree entre30 et140℃[J].Thermochim Acta,1988,127:223-236. [14]McManis G E,Fletcher A N,Bliss D E,et al.Elec-trochemical characteristics of simple nitrate+amidemelts at ambient temperatures[J].Journal of Electro-analytical Chem,1985,190:171-183. [15]Tong Yexiang,Liu Peng,Yang Qiqin,et al.Study onelectrodeposition of rare earth-iron group alloys in urea-NaBr-KBr and urea-acetamide-NaBr melts[J].J RareEarths,2005,23(Spec.Issue):72-74. [16]Tai Chia-Cheng,Su Fan-Yin,Sun I-Wen.Electrod-eposition of palladium?silver in a Lewis basic 1-ethyl-3-methylimidazolium chloride-tetrafluoroborate ionicliquid[J].Electrochimica Acta,2005,50:5504-5509. [17]Freyland W,Zell C A,Zein S,et al.Nanoscale elec-trodeposition of metals and semiconductors from ionicliquids[J].Electrochimica Acta,2003,48:3053-3061. [18]Muhammad Rostom Ali,Atshushi Nishikata.Electro-deposition of Al-Ni intermetallic compounds fromaluminum chloride-N-(n-butyl)pyridinium chlorideroom temperature molten salt[J].Tooru Tsuru Journalof Electroanalytical Chemistry,2001,513:111-118. [19]Mukhopadhyay I,Aravinda C L,Borissov D,et al.Electrodeposition of Ti from TiCl4in the ionic liquid l-methyl-3-butyl-imidazolium bis(trifluoro methyl sul-fone)imide at room temperature:study on phase for-mation by in situ electrochemical scanning tunnelingmicroscopy[J].Electrochimica Acta,2005,50:1275-1281. [20]Liu Peng,Du Yuping,Yang Qiqin,et al.Electro-chemical behavior of Fe(II)in acetamide-urea-NaBr-KBr melt and magnetic properties of inductively code-posited Nd-Fe film[J].Electrochimica Acta,2006,52:710-714. [21]Liu Peng,Du Yuping,Yang Qiqin,et al.Induced co-deposition of Sm-Co amorphous films in urea melt andtheir magnetism[J].Journal of the ElectrochemicalSociety,2006,153(1):C57-C62. [22]Zhang J,Evans P,Zangari G.Electrodeposition ofSm?Co nanoparticles from aqueous solutions[J].JMagn Magn Mater,2004,283:89-94. [23]Yang Qi-Qin(杨绮琴),Qiu Kai-Rong(丘开容),Zhu De-Rong(朱德荣),et al.Electrodeposition ofcobalt and rare earth cobalt in urea-NaBr-KBr melt[J].Electrochemistry(in Chinese),1995,1(3):274. [24]Liu Lizhi,Tong Yexiang,Yang Qiqin.Electroreduc-tion of Co(Ⅱ),Ni(Ⅱ)and co-deposition with La(Ⅲ)in urea?NaBr melt[J].Rare Metals,2000,19(3):237-241. [25]TongYexiang,Liu Lizhi,Xu Changwei,etal.Preparationof Gd-Ni alloy film in urea-NaBr Melt[J].Trans Non-ferrous Met Soc China,2001,11(3):451-454. [26]Tong Yexiang,Liu Peng,Liu Lizhi,et al.Electro-chemical behaviors of Fe2+and Sm3+in urea-NaBr lowtemperature melt and their inductive codeposition[J].J Rare Earths.,2002,20(1):11-15. [27]Yang Qiqin,Liu Guankun,Ke Shan,et al.electro-deposition of Ti-Ni alloy in urea-NaBr-KBr melt[J].Trans Nonferrous Met Soc China,1998,8(1):138-141. [28]Hironori Nakajima,Toshiyuki Nohira,Rika Hagiwara.Electrodeposition of metallic molybdenum films inZnCl2-NaCl-KCl-MoCl3systems at 250℃[J].Elec-trochimica Acta,2006,51:3776-3780. [29]Zhang Wan-Ling(张万灵),Liu Jian-Rong(刘建容),Guo Jia-Ju(过家驹),et al.Study on the elec-troplating of Al-Mn alloy in lowtemperature molten salt[J].Materials Protection(in Chinese),2004,37(10):6-9. [30]Castrillejo Y,Bermejo MR,Barrado AI,et al.Elec-trochemical behaviour of dysprosium in the eutecticLiCl-KCl at W and Al electrodes[J].ElectrochimicaActa,2005,50:2047-2057. [31]Castrillejo Y,Bermejo MR,Daz Arocas P,et al.Electrochemical behaviour of praseodymium(III)inmolten chlorides[J].Journal of ElectroanalyticalChemistry,2005,575:61-74. [32]Castrillejo Y,Bermejo M R,Barrado E,et al.Elec-trochemical behaviour of erbium in the eutectic LiCl?KCl at W and Al electrodes[J].Electrochimica Acta,2006,51:1941-1951. [33]Tetsuro Kubota,Takahisa Iida,Toshiyuki Nohira,etal.Formation and phase control of Co-Gd alloy filmsby molten salt electrochemical process[J].Journal ofAlloys and Compounds,2004,379:256-261. [34]Yang Qi-Qin,Fu Sheng-Wei.Electrode process of Nd?Fe alloy formed on iron electrode in molten chlorides[J].Acta Chimica Sinica,1987,(2):137-143. [35]Yang Qiqin,Liu Guankun,Ao Yanbing.Electrochem-ical study on the reduction of Gd(III)in molten chlo-rides[J].Molten Salts 1994,94-13:498-503. [36]Tong Yexiang,Liu Guankun,Yang Qiqin,et al.Elec-trochemical study on formation of Dy-Ni alloy in moltenchlorides[J].Rere Metals,1996,15(4):252. [37]Tong Yexiang,Liu Guankun,Yang Qiqin,et al.Prepararion of yttrium-barium-copper tinary master al-loy by electrolysis from molten fluoride[J].J RareEarths,1995,13(4):271. [38]Yang Qiqin,Liu Guankun,Tong Yexiang,et al.Elec-trodeposition of rare earth metals and their alloys[J].Rare Metals,1996,15(1):59-66. [39]Wang Di-Hua(汪的华),Chen Zheng(陈政).Inno-vation in molten salt electrichemistry[J].Electro-chemistry(in Chinese),2005,11(2):119-124. [40]Massot L,Chamelot P,Palau P,et al.Electrocrystal-lisation of tantalum in molten fluoride media[J].Electrochimica Acta,2005,50:5408-5413. [41]Zein El Abedin S,Borissenko N,Endres F.Electro-deposition of nanoscale silicon in a room temperatureionic liquid[J].Electrochemistry Communications,2004,6:510-514. [42]Liu Peng(刘鹏),Guao Xinai(郭新爱),Tong Ye-Xiang(童叶翔),et al.Electrodepositionof Nano-Sb-Zn Alloy in acetamide-urea-NaBr-KBr melt[J].Elec-trochemistry(in Chinese),2006,12(3):239-242. [43]Kazuaki Toyoura,Takuya Goto,Kan Hachiya,et al.Structural and optical properties of magnesium nitrideformed by a novel electrochemical process[J].Elec-trochimica Acta,2005,51:56-60. [44]Hideki Abea,Kenji Yoshii,Kenji Nishida,et al.E-lectroplating of the superconductive boride MgB2frommolten salts[J].Journal of Physics and Chemistry ofSolids,2005,66:406-409. [45]Kajiyama.The preparation and thermoelectric proper-ties of molten salt electrodeposited boron wafers[J].Journal of Solid State Chemistry,2004,177:537-541. [46]Devyatkin S V.Electrochemical synthesis of coatingsin the system Ti-Si-B from molten salts[J].Journal ofSolid State Chemistry,2004,177:407-409. [47]Okido.Formation of ZnTe compounds by using theelectrochemical ion exchange reaction in molten chlo-ride[J].Thin Solid Films,2005,478:223-227. [48]Yasuhiko Ito,Takuya Goto.Electrochemistry of nitro-gen and nitrides in molten salts[J].Journal of NuclearMaterials,2005,344:128-135. [49]Baranchugov V,Markevich E,Pollak E,et al.Amor-phous silicon thin films as a high capacity anodes forLi-ion batteries in ionic liquid electrolytes[J].Elec-trochemistry Communications,2007,9:796-800. [50]Batrice Garcia,Serge Lavall,Grald Perron,et al.Room temperature molten salts as lithium battery elec-trolyte[J].Electrochimica Acta,2004,49:4583-4588. [51]Honghe Zheng,Kai Jiang,Takeshi Abe,et al.Elec-trochemical intercalation of lithium into a naturalgraphite anode in quaternary ammonium-based ionicliquid electrolytes[J].Carbon,2006,44:203-210. [52]Yancheng Zhang,Mirna Urquidi-Macdonald.1-butyl-3-methylimidazolium cation for lithium/seawater batteries[J].Journal of Power Sources,2005,144:191-196. [53]Kazuharu Suzuki,MakotoYamaguchi,Mikio Kumagai,et al.Dye-sensitized solar cells with ionic gel electro-lytes prepared from imidazolium salts and agarose[J].Comptes Rendus Chimie,2006,9:611-616. [54]Rosa E Ramrez,Eduardo M Snchez.Molten phos-phonium iodides as electrolytes in dye-sensitized nano-crystalline solar cells[J].Solar Energy Materials&Solar Cells,2006,90(15):2384-2390. [55]Patrick Masset,Ronald A Guidotti.Thermal activated(thermal)battery technology Part II.Molten salt elec-trolytes[J].Journal of Power Sources,2007,164:397-414. [56]Tang Weiping,Yang Xiaojing,Liu Zhonghui,et al.Preparation of fine single crystals of spinel-type lithiummanganese by LiCl flux method for rechargeable lithiumbatteries.Part1.LiMn2O4[J].J Mater Chem,2002,(12):2991-2997. [57]Bai Ying,Shi Hongjun,Wang Zhaoxiang,et al.Per-formance improvement of LiCoO2by molten salt surfacemodification[J].Journal of Power Sources,2007,167:504-509. [58]Derek W Hengeveld,Shripad T Revankar.Economicanalysis of a combined heat and power molten carbon-ate fuel cell system[J].Journal of Power Sources,2007,165:300-306. [59]Kanako Yuyamaa,Gen Masudaa,Hiroshi Yoshida,etal.Ionic liquids containing the tetrafluoroborate anionhave the best performance and stability for electricdouble layer capacitor applications[J].Journal ofPower Sources,2006,162:1401-1408. [60]Jan Hve,Michaela Benov,Karel Bouzek,et al.Electrochemical formation of ferrate(VI)in a moltenNaOH-KOH system[J].Electrochemistry Communi-cations,2006,8:1737-1740. [61]Takuya Goto,Takayuki Iwaki,Yasuhiko Ito.Electro-chemical formation of AlN in molten LiCl?KCl?Li3N systems[J].Electrochimica Acta,2005,50:1283-1288. [62]Chen Chen,Zhou Chungen,Gong Shengkai,et al.Deposition of Cr-modified silicide coatings on Nb-Sisystem intermetallics[J].Intermetallics,2007,15:805-809. [63]Mikito Ueda,Hirokuni Kigawa,Toshiaki Ohtsuka.Co-deposition of Al-Cr-Ni alloys using constant poten-tial and potential pulse techniques in AlCl3-NaCl-KClmolten salt[J].Electrochimica Acta,2007,52:2515-2519. [64]Tetsuya Uda,Toru H.Okabe,Yoshio Waseda,et al.Electroplating of titanium on iron by galvanic contactdeposition in NaCl?TiCl2molten salt[J].Journal ofAlloys and Compounds,2006,420:71-76. [65]Jun Li,Li Bing.Preparation of the TiB2coatings byelectroplating in molten salts[J].Materials Letters,2007,61:1274-1278. [66]Ohisih T,Mishina A,Yamauchi TMatsuyama,et al.Structural property ofβ-FeSi2layers deposited on FeSifrom a molten salt[J].Thin Solid Films,2007,515:8201-8204. [67]Digamber G Porob,Paul A Maggard.Synthesis of tex-tured Bi5Ti3FeO15and LaBi4Ti3FeO15ferroelectric lay-ered Aurivillius phases by molten-salt flux methods[J].Materials Research Bulletin,2006,41:1513-1519. [68]Cai Zongying,Xing Xianran,Yu Ranbo,et al.Large-scale synthesis of Pb1-xLaxTiO3ceramic powders bymolten salt method[J].Journal of Alloys and Com-pounds,2006,420:273-277. [69]Qi Xian-Jin(祁先进),Wang Hua(王华),WangSheng-Lin(王胜林),et al.Preparation and reseachof composite heat storage material with metal Ni andmolten salts[J].Industrial Heating(in Chinese),2005,34(1):8-10,18. [70]Brazier A,Appetecchi G B,Passerini S,et al.Ionicliquids in electrochromic devices[J].ElectrochimicaActa,2007,52:4792-4797. [71]Ke Xingfei,Cao Jieming,Zheng Mingbo,et al.Mol-ten salt synthesis of single-crystal Co3O4nanorods[J].Materials Letters,2007,61:3901-3903. [72]Zheng Yan-Zhen,Zhang Mi-Lin.Preparation and elec-trochemical properties of nickel oxide by molten-saltsynthesis[J].Materials Letters,2007,61(18):3967-3969. [73]Jan Uhlr.Chemistry and technology of molten salt re-actors?history and perspectives[J].Journal of Nu-clear Materials,2007,360:6-11. [74]Bourg`es G D,Lambertin S Rochefort,Delpech S,etal.Electrochemical studies on plutonium in moltensalts[J].Journal of Alloys and Compounds,2007,444-445:404-409. [75]Olivier Conocar,Nicolas Douyere,Jr me Lacque-ment.Extraction behavior of actinides and lanthanides in amolten fluoride/liquid aluminum system[J].Journalof Nuclear Materials,2005,344:136-141. [76]Daichi Yamada,Takayuki Murai,Kimikazu Moritani,et al.Diffusion behavior of actinide and lanthanide ele-ments in molten salt for reductive extraction[J].Jour-nal of Alloys and Compounds,2007,444-445:557-560. [77]Liu Jing-fu,Jan A°ke J nsson,Jiang Gui-bin.Appli-cation of ionic liquids in analytical chemistry[J].Trends in Analytical Chemistry,2005,24(1):20-27. [78]Ozlem Oter,Kadriye Ertekin,Derya Topkaya,et al.Room temperature ionic liquids as optical sensor matrixmaterials for gaseous and dissolved CO2[J].Sensorsand Actuators B,2006,117:295-301. [79]Wang Sheng-Fu,Chen Ting,Zhang Zhi-Ling,et al.Activity and stability of horseradish peroxidase in hy-drophilic room temperature ionic liquid and its applica-tion in non-aqueous biosensing[J].ElectrochemistryCommunications,2007,9:1337-1342. [80]Liu Hong-Tao,He Ping,Li Zhi-Ying.An ionic liquid-type carbon paste electrode and its polyoxometalate-modified properties[J].Electrochemistry Communica-tions,2005,7:1357-1363. [81]Jay D Wadhawan,Uwe Schr der,Andreas Neudeck,et al.Ionic liquid modified electrodes[J].Journal ofElectroanalytical Chemistry,2000,493:75-83. [82]Shahana Chowdhury,Ram S Mohan,Janet L Scott.Reactivity of ionic liquids[J].Tetrahedron,2007,63:2363-2389. [83]Tom Welton.Ionic liquids in catalysis[J].Coordina-tion Chemistry Reviews,2004,248:2459-2477. [84]Xu Jian-Ming,Wu Wei-Bo,Qian Chao,et al.A no-vel and highly efficient protocol for Markovnikov’s ad-dition using ionic liquid as catalytic green solvent[J].Tetrahedron Letters,2006,47:1555-1558. [85]Shi Feng,He Yude,Li Dongmei,et al.Developingeffective catalyst system for reductive carbonylation ofnitrobenzene based on the diversity of ionic liquids[J].Journal of Molecular Catalysis A:Chemical,2006,244:64-67. [86]Carlos Gutierrez Blanco,Dolores Casal Banciella,Do-lores Gonz偄lez Azp姫roz M.Alkylation of naphthalene u-sing three different ionic liquids[J].Journal of Mo-lecular Catalysis A:Chemical,2006,253:203-206. [87]Sergey E Lyubimov,Vadim A Davankova,KonstantinN Gavrilov.The use of an ionic liquid in asymmetriccatalytic allylic amination[J].Tetrahedron Letters,2006,47:2721-2723. [88]Peng Jiajian,Deng Youquan.Catalytic Beckmann re-arrangement of ketoximes in ionic liquids[J].Tetra-hedron Letters,2001,42:403-405. [89]Xiao Xiao-Hua(肖小华),Liu Shu-Juan(刘淑娟),Liu Xia(刘霞),et al.Application of ionic liquid inanalytical chemistry[J].Chinese Journal of AnalyticalChemistry(in Chinese),2005,33(4):569-574. [90]Du Fu-You,Xiao Xiao-Hua,Li Gong-Ke.Applicationof ionic liquids in the microwave-assisted extraction oftrans-resveratrol from Rhizma Polygoni Cuspidati[J].Journal of Chromatography A,2007,1140(1-2):56-62. [91]Mousumi Chakraborty,Hans-J rg Bar.Highly selec-tive and efficient transport of toluene in bulk ionic liq-uid membranes containing Ag+as carrier[J].FuelProcessing Technology,2007,88:43-49. [92]Michiaki Matsumoto,Tokihito Ohtani,Kazuo Kondo.Comparison of solvent extraction and supported liquidmembrane permeation using an ionic liquid for concen-trating penicillin G[J].Journal of Membrane Sci-ence,2007,289:92-96. [93]Sun Jianmin,Shin-ichiro Fujita,Masahiko Arai.De-velopment in the green synthesis of cyclic carbonatefrom carbon dioxide using ionic liquids[J].Journal ofOrganometallic Chemistry,2005,690:3490-3497. [94]Zhang Suojiang,Chen Yuhuan,Li Fuwei,et al.Fixa-tion and conversion of CO2using ionic liquids[J].Catalysis Today,2006,115:61-69. [95]Yang Zhen,Pan Wubin.Ionic liquids:Green solventsfor nonaqueous biocatalysis[J].Enzyme and Microbi-al Technology,2005,37:19-28. [96]Katsoura M H,Polydera A C,Tsironis L,et al.Useof ionic liquids as media for the biocatalytic preparationof flavonoid derivatives with antioxidant potency[J].Journal of Biotechnology,2006,123:491-503. [97]Kazuhiko Matsumoto,Rika Hagiwara,Structural char-acteristics of alkylimidazolium-based salts containingfluoroanions[J].Journal of Fluorine Chemistry,2007,(128):317?331. [98]Jan Piclek,Jir`Kolafa.Molecular dynamics study ofconductivity of ionic liquids:The Kohlrausch Law[J].Journal of Molecular Liquids,2007,134(1-3):29-33. [99]Alexandra Groβe B ing,Andreas Jess.Kinetics andreactor design aspects of the synthesis of ionic liquids[J].Chemical Engineering Science,2007,62:1760-1769. [100]Takashiro Akitsu,Yasuaki Einaga.Novel photo-in-duced aggregation behavior of a supramolecular sys-tem containing iron(III)magnetic ionic liquid andazobenzene[J].Inorganic Chemistry Communica-tions 2006,9:1108-1110. [101]Zhang hengxi,Li Yanga,Shichun Luoa,et al.Ionicliquids based on aliphatic tetraalkylammonium dica-tions and TFSI anion as potential electrolytes[J].Journal of Power Sources,2007,167:217-222. |
[1] | 陈浩杰, 唐美华, 陈胜利. 质子交换膜燃料电池阴极催化层疏水性优化[J]. 电化学(中英文), 2023, 29(9): 2207061-. |
[2] | 丑佳, 王雅慧, 王文鹏, 辛森, 郭玉国. 面向高性能锂-硫二次电池应用的非对称电极-电解质界面[J]. 电化学(中英文), 2023, 29(9): 2217009-. |
[3] | 侯博文, 何龙, 冯旭宁, 张伟峰, 王莉, 何向明. 胺类添加剂对NCM811‖SiC电池热失控抑制效果研究[J]. 电化学(中英文), 2023, 29(8): 2211141-. |
[4] | 郑天龙, 欧明玉, 徐松, 毛信表, 王释一, 和庆钢. 一体式可再生燃料电池双功能氧催化剂的研究进展[J]. 电化学(中英文), 2023, 29(7): 2205301-. |
[5] | 黄荣钦, 廖卫平, 晏梦璇, 刘石, 李远明, 康雄武. 磷掺杂的Ru-Pt合金催化剂及其电催化碱性析氢性能[J]. 电化学(中英文), 2023, 29(5): 2203081-. |
[6] | 杨云锐, 董欢欢, 郝志强, 何祥喜, 杨卓, 李林, 侴术雷. 高性能锂硫电池用钴/碳复合材料硫宿主[J]. 电化学(中英文), 2023, 29(4): 2217003-. |
[7] | 张修庆, 唐帅, 付永柱. 锂硫电池电解液功能性添加剂研究进展[J]. 电化学(中英文), 2023, 29(4): 2217005-. |
[8] | 王振宇, 高学平. 金属和合金作为锂-硫电池硫正极催化载体[J]. 电化学(中英文), 2023, 29(4): 2217001-. |
[9] | 李莎, 湛孝, 王顾莲, 王慧群, 熊伟明, 张力. 紫外光引发原位交联多功能粘结剂构筑稳固硫正极[J]. 电化学(中英文), 2023, 29(4): 2217004-. |
[10] | 化五星, 夏静怡, 胡忠豪, 李欢, 吕伟, 杨全红. 多活性中心双金属硫化物促进多硫化锂转化构建高性能锂硫电池[J]. 电化学(中英文), 2023, 29(3): 2217006-. |
[11] | 罗宇, 马如琴, 龚正良, 杨勇. 固态锂硫电池研究进展[J]. 电化学(中英文), 2023, 29(3): 2217007-. |
[12] | 王妍洁, 程宏宇, 侯冀岳, 杨文豪, 黄荣威, 倪志聪, 朱子翼, 王颖, 韦克毅, 张义永, 李雪. CoNi基双金属-有机骨架衍生碳复合材料多功能改性锂硫电池隔膜[J]. 电化学(中英文), 2023, 29(3): 2217002-. |
[13] | 贾欢欢, 胡晨吉, 张熠霄, 陈立桅. 固态锂硫电池综述:从硫正极转化机制到电池的工程化设计[J]. 电化学(中英文), 2023, 29(3): 2217008-. |
[14] | 温波, 朱卓, 李福军. 锂-氧气电池:正极催化剂的最新进展与挑战[J]. 电化学(中英文), 2023, 29(2): 2215001-. |
[15] | 张衡, 夏力行, 姜珊, 王福芝, 谭占鳌. 氮掺杂石墨毡对水系醌基氧化还原液流电池性能的影响[J]. 电化学(中英文), 2023, 29(12): 2203231-. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||