Metal organic framework-derived carbon aerogel, preparation method thereof and application in lithium ion batteries
US-12183924-B2 · Dec 31, 2024 · US
US11075385B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11075385-B2 |
| Application number | US-201414459755-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 14, 2014 |
| Priority date | Feb 14, 2012 |
| Publication date | Jul 27, 2021 |
| Grant date | Jul 27, 2021 |
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The present invention is to provide a negative electrode active material for nonaqueous secondary batteries, which prevents increase in negative electrode resistance and improves initial charge/discharge efficiency and the effect of preventing gas generation and which is excellent in cycle characteristics. The present invention relates to a negative electrode active material for nonaqueous secondary batteries, which comprises an active material (A) capable of occluding and releasing lithium ions and an organic compound (B), wherein the organic compound (B) has a basic group and a lithium ion-coordinating group, and has a specific structure (S).
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The invention claimed is: 1. A negative electrode active material for a nonaqueous secondary battery comprising: an active material (A) capable of occluding and releasing lithium ions, wherein said active material (A) is natural graphite; and an organic compound (B) adsorbed to a surface of the active material (A), wherein the organic compound (B) promotes the desolvation relative to the lithium ions having solvated with electrolytic solution; wherein the organic compound (B) is a polymer which comprises: at least one basic group selected from the group consisting of a primary amino group and a secondary amino group; and a lithium ion-coordinating group which comprises an oxyalkylene group, and wherein a structure (S) of the compound (B) comprises at least one structure selected from the group consisting of a graft structure, a star structure and a three-dimensional network structure, and the structure (S) is formed by crosslinking of the organic compound (B). 2. The negative electrode active material for a nonaqueous secondary battery according to claim 1 , wherein a weight average molecular weight of the compound (B) is from 500 to 1,000,000 measured through gel permeation chromatography. 3. The negative electrode active material for a nonaqueous secondary battery according to claim 1 , wherein the structure (S) comprises at least one crosslinking selected from the group consisting of chemical crosslinking, physical crosslinking and ion complex crosslinking. 4. The negative electrode active material for a nonaqueous secondary battery according to claim 1 , wherein the organic compound (B) further comprises a π-conjugated structure. 5. The negative electrode active material for a nonaqueous secondary battery according to claim 4 , wherein the π-conjugated structure is at least one selected from the group consisting of a benzene ring, a condensed aromatic ring and an aromatic hetero ring. 6. The negative electrode active material for a nonaqueous secondary battery according to claim 1 , wherein the organic component (B) comprises a reaction product of a polymer (b1) and a polymer (b2), the polymer (b1) is at least one of a homopolymer and a copolymer of an ethylenic unsaturated group-containing amine, the polymer (b2) is at least one polymer of formula (1), and a content of the polymer (b2) relative to the polymer (b1) in the active material (A) is from 1% by mass to 300% by mass: wherein R 1 and R 2 are each independently a hydrogen atom, an alkyl group, an aryl group, an aralkyl group, a glycidyl group or an epoxy group, AO is an oxyalkylene group having from 2 to 5 carbon atoms, and n is an integer of from 1 to 50, and the reaction product of the polymers (b1) and (b2) comprises at least one of a graft structure, a star structure and a three-dimensional network structure. 7. The negative electrode active material for nonaqueous secondary batteries according to claim 6 , wherein the polymer (b1) is: a homopolymer of a monomer selected from the group consisting of vinylamine, allylamine, N-alkyl-substituted allylamine, N,N-dialkyl-substituted allylamine, diallylamine and N-alkyl-substituted diallylamine, a copolymer of two or more of monomers selected from the group consisting of vinylamine, allylamine, N-allyl-substituted allylamine, N,N-dialkyl-substituted allylamine, diallylamine and N-alkyl-substituted diallylamine, or a copolymer of (i) one or more of monomers selected from the group consisting of vinylamine, allylamine, N-alkyl-substituted allylamine, N,N-dialkyl-substituted allylamine, diallylamine and N-alkyl-substituted diallylamine and (ii) one or more of monomers other than those monomers listed in (i) the above. 8. The negative electrode active material for nonaqueous secondary batteries according to claim 6 , wherein the reaction product of polymer (b1) and polymer (b2) accounts for from 0.01% to 10% by mass relative to the active material (A). 9. An organic compound for a negative electrode active material for a nonaqueous secondary battery, which is a polymer comprising: at least one basic group selected from the group consisting of a primary amino group and a secondary amino group; and a lithium ion-coordinating group which comprises an oxyalkylene group, wherein a structure (S) of the polymer comprises at least one structure selected from the group consisting of a graft structure, a star structure and a three-dimensional network structure, and the structure (S) is formed by crosslinking. 10. A negative electrode for a nonaqueous secondary battery, comprising: the negative electrode active material for nonaqueous secondary batteries of claim 1 . 11. A nonaqueous secondary battery, comprising: a positive electrode; the negative electrode of claim 10 ; and an electrolyte. 12. The negative electrode active material for nonaqueous secondary batteries of claim 1 , wherein a content of the organic compound (B) is from 0.01% to 10 mass % relative to the active material (A). 13. The nonaqueous secondary battery of claim 11 , wherein a content of the organic compound (B) is from 0.01% to 10 mass % relative to the active material (A). 14. The negative electrode active material for nonaqueous secondary batteries of claim 1 , wherein the structure (S) of the compound (B) comprises at least one structure selected from the group consisting of a star structure and a three-dimensional network structure. 15. The organic compound of claim 9 , wherein the structure (S) of the polymer comprises at least one structure selected from the group consisting of a star structure and a three-dimensional network structure. 16. The negative electrode active material for a nonaqueous secondary battery according to claim 1 , wherein the organic compound (B) comprises a moiety represented by formula (2-1) and/or a moiety represented by formula (3-1), as the at least one basic group: wherein: R 6 represents an alkylene group having from 1 to 6 carbon atoms; R 7 and R 8 each represent a hydrogen atom; R 13 and R 14 each independently represent an alkylene group having from 1 to 6 carbon atoms; R 15 represents a hydrogen atom; and * represents a position wherein (2-1) or (3-1) binds to another moiety in the organic compound (B). 17. The organic compound according to claim 9 , wherein the organic compound comprises a moiety represented by formula (2-1) and/or a moiety represented by formula (3-1), as the at least one basic group: wherein: R 6 represents an alkylene group having from 1 to 6 carbon atoms; R 7 and R 8 each represent a hydrogen atom; R 13 and R 14 each independently represent an alkylene group having from 1 to 6 carbon atoms; R 15 represents a hydrogen atom; and * represents a position wherein (2-1) or (3-1) binds to another moiety in the organic compound.
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