molybdenum disulfide has been researched along with lithium in 11 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 0 (0.00) | 29.6817 |
2010's | 11 (100.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Chang, K; Chen, W | 1 |
Cho, J; Hwang, H; Kim, H | 1 |
Chen, JS; Ding, S; Lou, XW; Zhang, D | 1 |
Kim, MK; Lee, DC; Park, SK; Piao, Y; Quan, B; Sung, YE; Woo, S; Yu, SH | 1 |
Deng, J; Gao, Q; Mao, J; Schmidt, OG; Tang, Y; Wang, S; Yang, L | 1 |
Chen, G; Deng, S; Fan, H; Fei, L; Li, B; Li, Y; Luo, H; Smirnov, S; Wu, X; Xu, Y | 1 |
Choi, JS; Ha, HD; Han, DJ; Park, M; Seo, TS | 1 |
Kong, J; Lu, X; Phua, SL; Yang, L; Yao, X; Zhao, C | 1 |
Choi, SH; Kang, YC | 1 |
Chen, YM; Li, Z; Lou, XW; Paik, U; Yu, XY | 1 |
Archer, LA; Cho, WI; Kim, MS; Lee, KR; Lee, SH; Ryu, JH | 1 |
11 other study(ies) available for molybdenum disulfide and lithium
Article | Year |
---|---|
L-cysteine-assisted synthesis of layered MoS₂/graphene composites with excellent electrochemical performances for lithium ion batteries.
Topics: Cysteine; Disulfides; Electric Power Supplies; Electrochemistry; Graphite; Ions; Lithium; Microscopy, Electron, Scanning; Microscopy, Electron, Transmission; Molybdenum; Temperature; Time Factors; X-Ray Diffraction | 2011 |
MoS₂ nanoplates consisting of disordered graphene-like layers for high rate lithium battery anode materials.
Topics: Disulfides; Electric Power Supplies; Electrodes; Equipment Design; Equipment Failure Analysis; Graphite; Lithium; Molybdenum; Nanostructures; Nanotechnology; Particle Size; Titanium | 2011 |
Facile synthesis of hierarchical MoS₂ microspheres composed of few-layered nanosheets and their lithium storage properties.
Topics: Disulfides; Electric Power Supplies; Electrochemical Techniques; Lithium; Molybdenum; Nanostructures | 2012 |
A simple L-cysteine-assisted method for the growth of MoS2 nanosheets on carbon nanotubes for high-performance lithium ion batteries.
Topics: Cysteine; Disulfides; Electric Power Supplies; Electrodes; Ions; Lithium; Molybdenum; Nanoparticles; Nanotubes, Carbon; Particle Size; Surface Properties | 2013 |
Hierarchical MoS₂/polyaniline nanowires with excellent electrochemical performance for lithium-ion batteries.
Topics: Aniline Compounds; Disulfides; Electric Power Supplies; Electrodes; Ions; Lithium; Molybdenum; Nanowires | 2013 |
Instant gelation synthesis of 3D porous MoS2@C nanocomposites for lithium ion batteries.
Topics: Carbon; Disulfides; Electric Power Supplies; Electrochemical Techniques; Electrodes; Electrolytes; Gels; Ions; Lithium; Molybdenum; Nanocomposites; Porosity | 2014 |
Dual role of blue luminescent MoS2 quantum dots in fluorescence resonance energy transfer phenomenon.
Topics: Disulfides; DNA; Electrons; Fluorescence Resonance Energy Transfer; Fluorescent Dyes; Fourier Analysis; Lasers; Lithium; Luminescence; Metals; Microscopy, Electron, Scanning; Microscopy, Electron, Transmission; Molybdenum; Nanotechnology; Photochemistry; Quantum Dots | 2014 |
The dopamine-Mo(VI) complexation-assisted large-scale aqueous synthesis of a single-layer MoS₂/carbon sandwich structure for ultrafast, long-life lithium-ion batteries.
Topics: Carbon; Disulfides; Dopamine; Electric Power Supplies; Electrochemical Techniques; Lithium; Models, Molecular; Molybdenum; Nanocomposites | 2014 |
Polystyrene-Templated Aerosol Synthesis of MoS2 -Amorphous Carbon Composite with Open Macropores as Battery Electrode.
Topics: Aerosols; Carbon; Disulfides; Electric Power Supplies; Electrodes; Lithium; Microscopy, Electron, Scanning; Microscopy, Electron, Transmission; Microspheres; Molybdenum; Nanostructures; Polystyrenes; Sodium | 2015 |
Hierarchical MoS2 tubular structures internally wired by carbon nanotubes as a highly stable anode material for lithium-ion batteries.
Topics: Disulfides; Electric Power Supplies; Electrochemical Techniques; Electrodes; Ions; Lithium; Microscopy, Electron, Transmission; Molybdenum; Nanofibers; Nanotubes, Carbon | 2016 |
Enabling reversible redox reactions in electrochemical cells using protected LiAl intermetallics as lithium metal anodes.
Topics: Disulfides; Electrochemistry; Electrodes; Electrolytes; Lithium; Molybdenum; Oxidation-Reduction | 2019 |