Page last updated: 2024-09-03

fullerene c60 and lithium

fullerene c60 has been researched along with lithium in 22 studies

Compound Research Comparison

Studies
(fullerene c60)
Trials
(fullerene c60)
Recent Studies (post-2010)
(fullerene c60)
Studies
(lithium)
Trials
(lithium)
Recent Studies (post-2010) (lithium)
3,80652,17023,3391,1024,484

Research

Studies (22)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's1 (4.55)29.6817
2010's21 (95.45)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Li, XJ; Peng, S1
Aoyagi, S; Ishikawa, S; Kasama, Y; Kawachi, K; Kitaura, R; Komuro, T; Miyata, Y; Nishibori, E; Okada, H; Omote, K; Ono, S; Ono, Y; Sakai, T; Sawa, H; Shinohara, H; Sugimoto, K; Takata, M; Tobita, H; Yokoo, K1
Avramopoulos, A; Kirtman, B; Loboda, O; Luis, JM; Papadopoulos, MG; Reis, H; Zaleśny, R1
An, H; Guo, LJ; Ju, X; Liu, CS; Zeng, Z1
Fukuzumi, S; Jana, A; Kawashima, Y; Kim, D; Kim, DS; Lynch, VM; Ohkubo, K; Park, JS; Sessler, JL1
Cox, BJ; Rahmat, F; Thamwattana, N1
Compton, RN; Hwang, SJ; Lascola, R; Teprovich, JA; Ward, PA; Wellons, MS; Zidan, R1
Avramopoulos, A; Karamanis, P; Koukaras, EN; Papadopoulos, MG; Pouchan, C; Zdetsis, AD1
Fukuzumi, S; Kawashima, Y; Ohkubo, K2
D'Souza, F; Fukuzumi, S; Ohkubo, K; Sessler, JL1
Fukuzumi, S; Hasobe, T; Kawashima, Y; Ohkubo, K; Sakai, H1
Li, Y; Li, ZR; Wang, SJ; Wang, YF; Wu, D1
Fukuzumi, S; Ikuma, N; Kokubo, K; Moriyama, H; Nakamura, Y; Ohkubo, K; Oshima, T; Ueno, H1
Fukuzumi, S; Jeppesen, JO; Kawashima, Y; Larsen, KR; Ohkubo, K; Supur, M1
Chen, CF; Fukuzumi, S; Kawashima, Y; Ma, YX; Ohkubo, K; Supur, M1
Blas-Ferrando, VM; Fernández-Lázaro, F; Font-Sanchis, E; Fukuzumi, S; Hasobe, T; Kawashima, Y; Ohkubo, K; Ortíz, J; Sakai, H; Sastre-Santos, Á1
Itami, K; Nishihara, T; Segawa, Y; Ueno, H1
Fukuzumi, S; Kohno, N; Ohkubo, K; Yamada, Y1
Davis, CM; Fukuzumi, S; Kawashima, Y; Kim, DS; Lammer, AD; Ohkubo, K; Sessler, JL1
Fukuzumi, S; Hasobe, T; Kawashima, Y; Ohkubo, K; Sakai, H; Supur, M1
Fukuzumi, S; Hasegawa, T; Ohkubo, K; Rein, R; Solladié, N1

Other Studies

22 other study(ies) available for fullerene c60 and lithium

ArticleYear
DFT study of structural, electronic, and spectroscopic properties of D6d endohedral fullerenes: X@C24H12 (X=Li+, Na+, K+).
    Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 2009, Volume: 73, Issue:1

    Topics: Cations; Electrons; Fullerenes; Lithium; Models, Molecular; Molecular Conformation; Potassium; Sodium; Spectrophotometry, Infrared; Spectrum Analysis, Raman; Temperature

2009
A layered ionic crystal of polar Li@C(60) superatoms.
    Nature chemistry, 2010, Volume: 2, Issue:8

    Topics: Antimony; Crystallography, X-Ray; Fullerenes; Lithium; Magnetic Resonance Spectroscopy; Molecular Conformation

2010
Electronic and vibrational linear and nonlinear polarizabilities of Li@C60 and [Li@C60]+.
    Journal of computational chemistry, 2011, Apr-15, Volume: 32, Issue:5

    Topics: Electrons; Fullerenes; Lithium; Quantum Theory; Vibration

2011
Theoretical realization of cluster-assembled hydrogen storage materials based on terminated carbon atomic chains.
    The Journal of chemical physics, 2011, Jan-14, Volume: 134, Issue:2

    Topics: Adsorption; Fullerenes; Hydrogen; Lithium; Quantum Theory; Sodium; Surface Properties

2011
Ion-controlled on-off switch of electron transfer from tetrathiafulvalene calix[4]pyrroles to Li+@C60.
    Journal of the American Chemical Society, 2011, Oct-12, Volume: 133, Issue:40

    Topics: Calixarenes; Crystallography, X-Ray; Electron Transport; Fullerenes; Heterocyclic Compounds; Ions; Lithium; Models, Molecular; Porphyrins

2011
Modelling peptide nanotubes for artificial ion channels.
    Nanotechnology, 2011, Nov-04, Volume: 22, Issue:44

    Topics: Fullerenes; Ion Channels; Lithium; Models, Molecular; Nanotubes, Peptide; Water

2011
Synthesis and characterization of a lithium-doped fullerane (Li(x)-C60-H(y)) for reversible hydrogen storage.
    Nano letters, 2012, Feb-08, Volume: 12, Issue:2

    Topics: Energy-Generating Resources; Fullerenes; Hydrogen; Lithium; Temperature

2012
Structural and static electric response properties of highly symmetric lithiated silicon cages: theoretical predictions.
    Journal of computational chemistry, 2012, Apr-15, Volume: 33, Issue:10

    Topics: Fullerenes; Lithium; Models, Molecular; Quantum Theory; Silicon Compounds; Static Electricity

2012
Strong supramolecular binding of Li(+)@C60 with sulfonated meso-tetraphenylporphyrins and long-lived photoinduced charge separation.
    Chemical communications (Cambridge, England), 2012, May-07, Volume: 48, Issue:36

    Topics: Fullerenes; Lithium; Models, Molecular; Molecular Conformation; Photochemical Processes; Porphyrins; Sulfonic Acids

2012
Supramolecular electron transfer by anion binding.
    Chemical communications (Cambridge, England), 2012, Oct-11, Volume: 48, Issue:79

    Topics: Anions; Calixarenes; Coordination Complexes; Electron Transport; Electrons; Ferrous Compounds; Fullerenes; Lithium; Metallocenes; Porphyrins; Pyrenes

2012
Enhanced photoinduced electron-transfer reduction of Li(+)@C60 in comparison with C60.
    The journal of physical chemistry. A, 2012, Sep-13, Volume: 116, Issue:36

    Topics: Electron Transport; Fullerenes; Light; Lithium; Oxidation-Reduction; Photolysis; Quantum Theory

2012
Enhanced photoelectrochemical performance of composite photovoltaic cells of Li(+)@C60-sulphonated porphyrin supramolecular nanoclusters.
    Chemical communications (Cambridge, England), 2013, May-18, Volume: 49, Issue:40

    Topics: Electric Power Supplies; Fullerenes; Lithium; Macromolecular Substances; Nanoparticles; Photochemical Processes; Porphyrins; Solar Energy; Sulfonic Acids

2013
Structures and nonlinear optical properties of the endohedral metallofullerene-superhalogen compounds Li@C60-BX4 (X = F, Cl, Br).
    Physical chemistry chemical physics : PCCP, 2013, Aug-21, Volume: 15, Issue:31

    Topics: Boron Compounds; Fullerenes; Halogens; Lithium; Molecular Structure; Optical Phenomena; Quantum Theory

2013
Ionic conductivity of [Li+@C60](PF6(-)) in organic solvents and its electrochemical reduction to Li+@C60(·-).
    Chemical communications (Cambridge, England), 2013, Aug-28, Volume: 49, Issue:67

    Topics: Chlorobenzenes; Electrochemical Techniques; Electrolytes; Equipment Design; Fullerenes; Ions; Lithium; Models, Molecular; Oxidation-Reduction; Phosphorus Compounds

2013
Robust inclusion complexes of crown ether fused tetrathiafulvalenes with Li⁺@C₆₀ to afford efficient photodriven charge separation.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2014, Oct-20, Volume: 20, Issue:43

    Topics: Crown Ethers; Electron Transport; Fullerenes; Heterocyclic Compounds; Lithium; Models, Molecular; Photochemical Processes

2014
Long-lived charge separation in a rigid pentiptycene bis(crown ether)-Li(+)@C60 host-guest complex.
    Chemical communications (Cambridge, England), 2014, Dec-25, Volume: 50, Issue:99

    Topics: Anthracenes; Coordination Complexes; Crown Ethers; Electron Spin Resonance Spectroscopy; Electron Transport; Fullerenes; Light; Lithium; Molecular Conformation; Quantum Theory

2014
Near-Infrared Photoelectrochemical Conversion via Photoinduced Charge Separation in Supramolecular Complexes of Anionic Phthalocyanines with Li(+)@C60.
    The journal of physical chemistry. B, 2015, Jun-18, Volume: 119, Issue:24

    Topics: Anions; Electrochemical Techniques; Electrodes; Fullerenes; Indoles; Infrared Rays; Isoindoles; Lithium; Molecular Structure; Organometallic Compounds; Photochemical Processes

2015
Cycloparaphenylene-based ionic donor-acceptor supramolecule: isolation and characterization of Li⁺@C60⊂[10]CPP.
    Angewandte Chemie (International ed. in English), 2015, Mar-16, Volume: 54, Issue:12

    Topics: Crystallography, X-Ray; Cycloparaffins; Electrochemical Techniques; Fullerenes; Ions; Lithium; Molecular Conformation; Spectrophotometry, Ultraviolet

2015
Singlet oxygen generation from Li⁺@C⁺₆₀ nano-aggregates dispersed by laser irradiation in aqueous solution.
    Chemical communications (Cambridge, England), 2015, May-11, Volume: 51, Issue:38

    Topics: Deuterium Oxide; DNA; DNA Cleavage; Fullerenes; Lasers; Lithium; Nanostructures; Plasmids; Singlet Oxygen; Solutions; Water

2015
Photoinduced electron transfer in a supramolecular triad produced by porphyrin anion-induced electron transfer from tetrathiafulvalene calix[4]pyrrole to Li(+)@C60.
    Chemical communications (Cambridge, England), 2015, Jun-18, Volume: 51, Issue:48

    Topics: Calixarenes; Fullerenes; Lithium; Porphyrins

2015
Graphene oxide-Li(+)@C60 donor-acceptor composites for photoenergy conversion.
    Physical chemistry chemical physics : PCCP, 2015, Jun-28, Volume: 17, Issue:24

    Topics: Electrodes; Fullerenes; Graphite; Lithium; Oxides; Particle Size; Quantum Theory; Solar Energy; Surface Properties

2015
Multiple photosynthetic reaction centres of porphyrinic polypeptide-Li(+)@C60 supramolecular complexes.
    Chemical communications (Cambridge, England), 2015, Dec-25, Volume: 51, Issue:99

    Topics: Fullerenes; Lithium; Peptides; Photosynthetic Reaction Center Complex Proteins; Porphyrins; Spectrometry, Fluorescence; Spectrophotometry, Ultraviolet

2015