[미국특허]
Lithium-ion electrochemical cell, components thereof, and methods of making and using same
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H01M-010/0567
H01M-004/505
H01M-004/525
H01M-010/0525
H01M-004/38
출원번호
US-0429439
(2017-02-10)
등록번호
US-10050308
(2018-08-14)
발명자
/ 주소
Liao, Zhaohui
Scordilis-Kelley, Chariclea
Mikhaylik, Yuriy V.
출원인 / 주소
Sion Power Corporation
대리인 / 주소
Wolf, Greenfield & Sacks, P.C.
인용정보
피인용 횟수 :
0인용 특허 :
136
초록▼
An electrochemical cell including at least one nitrogen-containing compound is disclosed. The at least one nitrogen-containing compound may form part of or be included in: an anode structure, a cathode structure, an electrolyte and/or a separator of the electrochemical cell. Also disclosed is a batt
An electrochemical cell including at least one nitrogen-containing compound is disclosed. The at least one nitrogen-containing compound may form part of or be included in: an anode structure, a cathode structure, an electrolyte and/or a separator of the electrochemical cell. Also disclosed is a battery including the electrochemical cell.
대표청구항▼
1. An electrochemical cell, comprising: a first electrode comprising lithium metal;a second electrode;an electrolyte, wherein the electrolyte comprises a fluorinated cyclic carbonate compound; andan ionic N—O compound,wherein the second electrode comprises one or more of the following:a nickel cobal
1. An electrochemical cell, comprising: a first electrode comprising lithium metal;a second electrode;an electrolyte, wherein the electrolyte comprises a fluorinated cyclic carbonate compound; andan ionic N—O compound,wherein the second electrode comprises one or more of the following:a nickel cobalt manganese lithium-ion cathode, LiMn2O4, and LiCoxNi(1-x)O2 where x is between approximately 0.05 and 0.8. 2. An electrochemical cell, comprising: a first electrode comprising lithium metal;a second electrode;an electrolyte, wherein the electrolyte comprises a lithium bis(oxalate)borate compound; andan ionic N—O compound,wherein the second electrode comprises one or more of the following:a nickel cobalt manganese lithium-ion cathode, LiMn2O4, and LiCoxNi(1-x)O2 where x is between approximately 0.05 and 0.8. 3. An electrochemical cell as in claim 1, wherein the fluorinated cyclic carbonate is fluoroethylene carbonate. 4. An electrochemical cell as in claim 1, wherein the second electrode comprises LiCoO2. 5. An electrochemical cell as in claim 1, wherein the second electrode comprises LiCoxNi(1-x)O2 and x is between approximately 0.05 and approximately 0.8. 6. An electrochemical cell as in claim 1, wherein the second electrode comprises LiMn2O4. 7. An electrochemical cell as in claim 1, wherein the ionic N—O compound comprises at least one of a compound including an amine functional group, an inorganic nitrate, an organic nitrate, an inorganic nitrite, and an organic nitrate. 8. An electrochemical cell as in claim 1, wherein the ionic N—O compound comprises a polymer. 9. An electrochemical cell as in claim 8, wherein the polymer is a polyelectrolyte. 10. An electrochemical cell as in claim 1, wherein the ionic N—O compound comprises a nitrate. 11. An electrochemical cell as in claim 1, wherein the ionic N—O compound is an additive to the electrolyte. 12. An electrochemical cell as in claim 1, wherein the electrolyte is a gel polymer electrolyte. 13. An electrochemical cell as in claim 1, wherein the ionic N—O compound is insoluble in the electrolyte. 14. An electrochemical cell as in claim 1, wherein the second electrode includes the ionic N—O compound. 15. An electrochemical cell as in claim 1, wherein the first electrode includes the ionic N—O compound. 16. An electrochemical cell as in claim 1, further comprising a separator including the ionic N—O compound. 17. An electrochemical cell as in claim 1, wherein the ionic N—O compound forms part of one or more of the first electrode, the second electrode, the electrolyte, and a separator prior to electrochemical cell cycling. 18. An electrochemical cell as in claim 1, wherein the electrochemical cell has a cell life of greater than 90 cycles. 19. An electrochemical cell as in claim 1, wherein the electrochemical cell has a discharge capacity ratio of greater than 0.8 after 60 cycles. 20. An electrochemical cell as in claim 1, wherein the second electrode comprises LiNi1/3Mn1/3CO1/3O2. 21. An electrochemical cell as in claim 1, wherein the second electrode comprises LiNi0.4Co0.2Mn0.4O2. 22. An electrochemical cell as in claim 2, wherein the second electrode comprises LiCoO2. 23. An electrochemical cell as in claim 2, wherein the second electrode comprises LiCoxNi(1-x)O2 and x is between approximately 0.05 and approximately 0.8. 24. An electrochemical cell as in claim 2, wherein the second electrode comprises LiMn2O4. 25. An electrochemical cell as in claim 2, wherein the ionic N—O compound comprises a nitrate. 26. An electrochemical cell as in claim 2, wherein the ionic N—O compound is insoluble in the electrolyte. 27. An electrochemical cell as in claim 2, wherein the electrochemical cell has a cell life of greater than 90 cycles. 28. An electrochemical cell as in claim 2, wherein the electrochemical cell has a discharge capacity ratio of greater than 0.8 after 60 cycles. 29. An electrochemical cell as in claim 2, wherein the second electrode comprises LiNi1/3Mn1/3Co1/3O2. 30. An electrochemical cell as in claim 2, wherein the second electrode comprises LiNi0.4Co0.2O2.
Klemann ; Lawrence P. ; Newman ; Gerald H., Alkali metal anode/chalcogenide cathode reversible batteries having alkali metal polyaryl metallic compound electrolyte.
Scordilis-Kelley, Chariclea; Affinito, John D.; Jones, Lowell D.; Mikhaylik, Yuriy V.; Kovalev, Igor; Wilkening, William F.; Campbell, Christopher T. S.; Martens, John A., Application of force in electrochemical cells.
Ventura Susanna C. ; Narang Subhash C. ; Hum Georgina ; Liu Peikang ; Ranganathan Prema ; Sun Luying, Batteries, conductive compositions, and conductive films containing organic liquid electrolytes and plasticizers.
Gorkovenko Alexander ; Skotheim Terje A. ; Xu Zhe-Sheng ; Boguslavsky Leonid I. ; Deng Zhongyi ; Mukherjee Shyama P., Cathodes comprising electroactive sulfur materials and secondary batteries using same.
Mukherjee Shyama P. ; Skotheim Terje A., Composite cathodes, electrochemical cells comprising novel composite cathodes, and processes for fabricating same.
Mukherjee Shyama P. ; Skotheim Terje A., Composite cathodes, electrochemical cells comprising novel composite cathodes, and processes for fabricating same.
de Neufville John P. (Mendham NJ) Rajoria Dalbir (Glengardner NJ) Ovshinsky Stanford R. (Bloomfield Hills MI), Composite coating for electrochemical electrode and method.
Gozdz Antoni S. (Tinton Falls NJ) Schmutz Caroline N. (Eatontown NJ) Tarascon Jean-Marie (Martinsville NJ) Warren Paul C. (Far Hills NJ), Crosslinked hybrid electrolyte film and methods of making and using the same.
Stachoviak Timothy J. ; Nestler Joseph P. ; Schneider Daniel A. ; Craanen Shirley A. ; Lawrence Amy K., Current collector manufacture by arc spray deposition.
Kawakami, Soichiro; Degura, Yasusaburo, DETECTING METHOD FOR DETECTING INTERNAL INFORMATION OF A RECHARGEABLE BATTERY, DETECTING APPARATUS FOR DETECTING INTERNAL INFORMATION OF A RECHARGEABLE BATTERY, APPARATUS IN WHICH SAID DETECTING METH.
Skotheim Terje A. (Shoreham NY) Trofimov Boris (Irkutsk RUX) Grigorevna Malkina A. (Irkutsk NY RUX) Koralev Igor P. (Setauket NY), Electroactive high storage capacity polyacetylene-co-polysulfur materials and electrolytic cells containing same.
Skotheim Terje A. (Shoreham NY) Kovalev Igor P. (Setauket NY), Electroactive high storage capacity polycarbon-sulfide materials and electrolytic cells containing same.
Gorkovenko Alexander ; Skotheim Terje A., Electroactive, energy-storing, highly crosslinked, polysulfide-containing organic polymers and methods for making same.
Affinito, John D.; Mikhaylik, Yuriy V.; Geronov, Yordan M.; Sheehan, Christopher J., Electrode protection in both aqueous and non-aqueous electrochemical cells, including rechargeable lithium batteries.
Affinito, John D.; Mikhaylik, Yuriy V.; Geronov, Yordan M.; Sheehan, Christopher J., Electrode protection in both aqueous and non-aqueous electrochemical cells, including rechargeable lithium batteries.
Affinito, John D.; Mikhaylik, Yuriy V.; Geronov, Yordan M.; Sheehan, Christopher J., Electrode protection in both aqueous and non-aqueous electrochemical cells, including rechargeable lithium batteries.
Affinito, John D.; Mikhaylik, Yuriy V.; Geronov, Yordan M.; Sheehan, Christopher J., Electrode protection in both aqueous and non-aqueous electrochemical cells, including rechargeable lithium batteries.
Affinito, John D.; Mikhaylik, Yuriy V.; Geronov, Yordan M.; Sheehan, Christopher J., Electrode protection in both aqueous and non-aqueous electrochemical cells, including rechargeable lithium batteries.
Affinito, John D.; Mikhaylik, Yuriy V.; Geronov, Yordan M.; Sheehan, Christopher J., Electrode protection in both aqueous and non-aqueous electromechanical cells, including rechargeable lithium batteries.
Lee Hung-Sui (East Setauket NY) Geng Lin (Coram NY) Skotheim Terje A. (Shoreham NY), Electrolyte materials containing highly dissociated metal ion salts.
Kelley, Tracy Earl; May, John D.; Oleshko, Vladimir; Scordilis-Kelley, Chariclea, Hermetic sample holder and method for performing microanalysis under controlled atmosphere environment.
Mikhaylik, Yuriy V.; Wilkening, William F.; Campbell, Christopher T. S.; Burnside, Savannah V., Method of forming electrodes comprising sulfur and porous material comprising carbon.
Skotheim Terje A. (Tucson AZ) Kovalev Igor P. (Tucson AZ), Method of making electroactive high storage capacity polycarbon-sulfide materials and electrolytic cells containing same.
Armand Michel (St-Martin d\Uriage FRX) Gauthier Michel (La Prairie CAX) Muller Daniel (Pau FRX), New ion conductive material composed of a salt in solution in a liquid electrolyte.
Naoi Katsuhiko,JPX ; Iizuka Hiroshi,JPX ; Suzuki Yasuhiro,JPX, Oligosulfide type electrode material and secondary battery containing such electrode material.
Waddell Jennifer E. (Burnsville MN) Lamanna William M. (Stillwater MN) Krause Larry J. (Stillwater MN) Moore George G. I. (Afton MN) Hamrock Steven J. (St. Paul MN), Perfluoroalkylsulfonates, sulfonimides, and sulfonyl methides, and electrolytes containing them.
Shackle Dale R. (Springboro OH) Lee Mei-Tsu (Taipei TWX), Preparation of radiation cured solid electrolytes and electrochemical devices employing the same.
Brodd Ralph J. (15845 LaPrenda Ct. Morgan Hill CA 95037), Process and apparatus for producing thin lithium coatings on electrically conductive foil for use in solid state recharg.
Visco,Steven J.; Katz,Bruce D.; Nimon,Yevgeniy S.; De Jonghe,Lutgard C., Protected active metal electrode and battery cell structures with non-aqueous interlayer architecture.
DeLuca William H. (Naperville IL) Hornstra ; Jr Fred (St. Charles IL) Gelb George H. (Rancho Palos Verdes CA) Berman Baruch (Rancho Palos Verdes CA) Moede Larry W. (Manhattan Beach CA), System and method for charging electrochemical cells in series.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.