Page last updated: 2024-08-23

molybdenum dioxide and lithium

molybdenum dioxide has been researched along with lithium in 10 studies

Research

Studies (10)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's1 (10.00)29.6817
2010's9 (90.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Chen, L; Corr, SA; Guo, B; Heier, KR; Hu, YS; Seshadri, R; Shi, Q; Shi, Y; Stucky, GD1
Chen, JS; Lou, XW; Madhavi, S; Wang, Z; Zhu, T1
Lou, XW; Wang, Z; Wu, HB; Zhou, L1
Chen, L; Fang, X; Guo, B; Hu, YS; Hua, C; Li, B; Shi, Y; Stucky, GD; Wang, Z; Yao, C; Zhang, Y1
Archer, LA; Das, SK; Lu, Y; Moganty, SS1
Deng, C; Ding, X; Wei, M; Zeng, L; Zheng, C1
Chen, A; Li, C; Qi, Y; Tang, R; Yin, L1
Choi, SH; Kang, YC1
Cai, S; Fang, X; Hu, Y; Ji, H; Li, X; Shi, Y; Sun, X; Zheng, C1
Hou, W; Liu, X; Nuli, Y; Wang, J; Yang, J1

Other Studies

10 other study(ies) available for molybdenum dioxide and lithium

ArticleYear
Ordered mesoporous metallic MoO2 materials with highly reversible lithium storage capacity.
    Nano letters, 2009, Volume: 9, Issue:12

    Topics: Crystallization; Electric Power Supplies; Lithium; Macromolecular Substances; Materials Testing; Metal Nanoparticles; Molecular Conformation; Molybdenum; Nanotechnology; Oxides; Particle Size; Porosity; Surface Properties

2009
One-pot synthesis of uniform carbon-coated MoO(2) nanospheres for high-rate reversible lithium storage.
    Chemical communications (Cambridge, England), 2010, Oct-07, Volume: 46, Issue:37

    Topics: Carbon; Electric Power Supplies; Electrochemistry; Lithium; Materials Testing; Molybdenum; Nanospheres; Oxides; Particle Size; Surface Properties

2010
Interconnected MoO2 nanocrystals with carbon nanocoating as high-capacity anode materials for lithium-ion batteries.
    ACS applied materials & interfaces, 2011, Volume: 3, Issue:12

    Topics: Carbon; Electric Power Supplies; Electrodes; Lithium; Molybdenum; Nanotechnology; Oxides

2011
Enhanced Li storage performance of ordered mesoporous MoO2 via tungsten doping.
    Nanoscale, 2012, Mar-07, Volume: 4, Issue:5

    Topics: Electric Power Supplies; Lithium; Molybdenum; Oxides; Porosity; Tungsten

2012
Ionic liquid-nanoparticle hybrid electrolytes and their application in secondary lithium-metal batteries.
    Advanced materials (Deerfield Beach, Fla.), 2012, Aug-22, Volume: 24, Issue:32

    Topics: Electric Power Supplies; Electrolytes; Imidazoles; Ionic Liquids; Lithium; Molybdenum; Nanoparticles; Oxides; Propane; Titanium

2012
MoO2-ordered mesoporous carbon nanocomposite as an anode material for lithium-ion batteries.
    ACS applied materials & interfaces, 2013, Volume: 5, Issue:6

    Topics: Electric Power Supplies; Electrodes; Lithium; Molybdenum; Nanocomposites; Oxides; Porosity

2013
MoO2-ordered mesoporous carbon hybrids as anode materials with highly improved rate capability and reversible capacity for lithium-ion battery.
    Physical chemistry chemical physics : PCCP, 2013, Aug-28, Volume: 15, Issue:32

    Topics: Carbon; Electric Power Supplies; Electrodes; Lithium; Molybdenum; Oxides; Particle Size; Porosity; Surface Properties; Temperature

2013
Crumpled graphene-molybdenum oxide composite powders: preparation and application in lithium-ion batteries.
    ChemSusChem, 2014, Volume: 7, Issue:2

    Topics: Electric Power Supplies; Electrochemistry; Graphite; Lithium; Molybdenum; Oxides; Powders

2014
Green and economical synthesis of carbon-coated MoO2 nanocrystallines with highly reversible lithium storage capacity.
    Journal of nanoscience and nanotechnology, 2014, Volume: 14, Issue:6

    Topics: Adsorption; Carbon; Crystallization; Electric Power Supplies; Equipment Design; Equipment Failure Analysis; Green Chemistry Technology; Lithium; Materials Testing; Molybdenum; Nanostructures; Oxides; Particle Size

2014
Highly Reversible Lithium-ions Storage of Molybdenum Dioxide Nanoplates for High Power Lithium-ion Batteries.
    ChemSusChem, 2015, Aug-24, Volume: 8, Issue:16

    Topics: Electric Power Supplies; Lithium; Microscopy, Electron, Scanning; Molybdenum; Nanostructures; Oxides

2015