ChemPhysChem, ISSN 1439-4235, 06/2013, Volume 14, Issue 9, pp. 1993 - 2001
The stabilization energies (ΔEform) calculated for the formation of the Li+ complexes with mono‐, di‐ tri‐ and tetra‐glyme (G1, G2, G3 and G4) at the...
geometry optimization | glyme complexes | intermolecular interactions | ionic liquids | stabilization energy | LITHIUM BATTERY ELECTROLYTE | ELECTROCHEMICAL PROPERTIES | SELF-DIFFUSION COEFFICIENTS | AMORPHOUS CONCENTRATED LIQUID | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | SALT BINARY ELECTROLYTES | POLYMER ELECTROLYTES | SENSITIZED SOLAR-CELLS | SMALL-MOLECULE ELECTROLYTES | CATION SOLVATE STRUCTURES | DISTRIBUTED MULTIPOLE ANALYSIS
geometry optimization | glyme complexes | intermolecular interactions | ionic liquids | stabilization energy | LITHIUM BATTERY ELECTROLYTE | ELECTROCHEMICAL PROPERTIES | SELF-DIFFUSION COEFFICIENTS | AMORPHOUS CONCENTRATED LIQUID | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | SALT BINARY ELECTROLYTES | POLYMER ELECTROLYTES | SENSITIZED SOLAR-CELLS | SMALL-MOLECULE ELECTROLYTES | CATION SOLVATE STRUCTURES | DISTRIBUTED MULTIPOLE ANALYSIS
Journal Article
2.
Li
1993, Di 1 ban., Huaxia xing shi cong shu, ISBN 7219023286, 1, 4, 205 p., [2] leaves of plates
Book
3.
Li He
1992, Chu ban., Zhongguo gu dian wen xue ji ben zhi shi cong shu, ISBN 9576670845, Volume 40, 2, 1, 92
Book
The Journal of Physical Chemistry B, ISSN 1520-6106, 09/2014, Volume 118, Issue 36, pp. 10785 - 10794
The Li+–BF4 – and BF4 ––BF4 – interactions are studied using second order perturbation theory (MP2) and coupled cluster singles and doubles approach, including...
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 01/2014, Volume 136, Issue 3, pp. 999 - 1007
High-capacity layered, lithium-rich oxide cathodes show great promise for use as positive electrode materials for rechargeable lithium ion batteries....
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2010, Volume 195, Issue 19, pp. 6847 - 6853
Lithium dendrite growth in Li/poly(ethylene oxide) (PEO)–Li(CF SO ) N (LiTFSI)–nano-SiO /Li was examined using direct observation under galvanostatic...
Composite solid polymer electrolytes | Dendrite growth | Interfacial characteristic | Nano-SiO 2 filler | filler | Nano-SiO
Composite solid polymer electrolytes | Dendrite growth | Interfacial characteristic | Nano-SiO 2 filler | filler | Nano-SiO
Journal Article
2016, Chu ban., Shang ye/wen hua/she qu : Xianggang qi ye jia zhuan ji xi lie, ISBN 9789888420797, Volume 5, xvii, 213 pages
Book
2015, Beijing di 1 ban., Beidao ji, ISBN 7108052598, 2, 4, 132 pages
"Lü li : shi xuan 1972-1988" shi you Beidao bian zhu de, "lü li : shi xuan 1972-1988"nei rong bao kuo le ni hao, bai hua shan, wu se hua, zhen de, xiao xue hua...
Book
ISSN 1463-9076, 2/2016, Volume 18, Issue 7, pp. 565 - 5613
Non-equilibrium molecular dynamics has been used to model cation diffusion in stoichiometric Li 3 N over the temperature range 50 < T /K < 800. The resulting...
Journal Article
2016, Di 1 ban., Zhongguo yi shu yan jiu yuan xue shu wen ku., ISBN 9787569908428, 4, 1, 2, 231 pages
Book
2017, Xie li shi, ISBN 986948641X, Volume 82.
Book
2013, Di 1 ban., Jiangyou si xiang jia yan jiu cong shu, ISBN 7010114692, 6, 276
Book
ISSN 1463-9076, 6/2019, Volume 21, Issue 24, pp. 13186 - 13193
Fluorinated carbonates have attracted increasing attention in high-voltage lithium ion battery applications. Under free and electric fields, their...
Journal Article
2012, Di 1 ban., Zhongguo dang dai ming jia hua ji, ISBN 7514002006, 10, 109
Book
Nano Letters, ISSN 1530-6984, 10/2016, Volume 16, Issue 10, pp. 6357 - 6363
Layered transition-metal oxides (Li[Ni x Mn y Co z ]O2, NMC, or NMCxyz) due to their poor stability when cycled at a high operating voltage (>4.5 V) have...
tunnels | core-shell coating | nano-LiFePO | Li(Ni | aligned Li
tunnels | core-shell coating | nano-LiFePO | Li(Ni | aligned Li
Journal Article
Advanced Materials, ISSN 0935-9648, 01/2018, Volume 30, Issue 1, pp. 1704841 - n/a
The safety hazards and cycle instability of lithium metal anodes (LMA) constitute significant barriers to progress in lithium metal batteries. This situation...
reversibility | lithium metal anode | solid electrolyte interphase | Li–O2 battery | electrolyte engineering | Electrolytes | Batteries | Stability | Metal air batteries | Lithium | Solid electrolytes | Hazards | Dendritic structure | Cathodes
reversibility | lithium metal anode | solid electrolyte interphase | Li–O2 battery | electrolyte engineering | Electrolytes | Batteries | Stability | Metal air batteries | Lithium | Solid electrolytes | Hazards | Dendritic structure | Cathodes
Journal Article
2015, Chu ban., Ying xiang ji shi, ISBN 9789862729274, Volume 28, 179
Book
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