Fullerenes encaging metal clusters--clusterfullerenes.
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Summary
It is concluded that clusterfullerenes appear to be the fastest growing family of endohedral fullerene up to now, and the importance of exploring new structures and chemical functionalizations of clusterfulrerenes is emphasized.
- Type
- article
- Published
- 2011-10-25
- Cited by
- 114
- References
- 112
- OpenAlex
- https://openalex.org/W21720619
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24655879
Keywords
Humanities, Political science, Philosophy
References
- Electronic structure and redox properties of the open-shell metal-carbide endofullerene Sc3C2@C80: a density functional theory investigation.
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- Electronic Properties and 13C NMR Structural Study of Y3N@C88
- Materials science: A stable non-classical metallofullerene family
- An isomer of the endohedral metallofullerene Sc3N@C80 with D5h symmetry
- Small-bandgap endohedral metallofullerenes in high yield and purity
- Materials science: C66 fullerene encaging a scandium dimer
- Lanthanum nitride endohedral fullerenes La3N@C2n (43 <or= n <or= 55): preferential formation of La3N@C96.
- Preparation and structure of CeSc2N@C80: an icosahedral carbon cage enclosing an acentric CeSc2N unit with buried f electron spin.
- Plasma Coupled Radio Frequency Furnace: The Synthesis, Separation, and Elucidation of the Elusive Sc4C82 Fullerene
- Rapid removal of D(5)(h) isomer using the "stir and filter approach" and isolation of large quantities of isomerically pure Sc(3)N@C(80) metallic nitride fullerenes.
- Detection of a family of gadolinium-containing endohedral fullerenes and the isolation and crystallographic characterization of one member as a metal-carbide encapsulated inside a large fullerene cage.
- Temperature dependent metal cluster position inside a C82 cage: Sc3@C82
- Structure and stability of endohedral fullerene Sc3N@C80: A Raman, infrared, and theoretical analysis
- A simple isomeric separation of D5h and Ih Sc3N@C80 by selective chemical oxidation.
- Understanding the stabilization of metal carbide endohedral fullerenes M2C2@C82 and related systems.
- Chemically adjusting plasma temperature, energy, and reactivity (CAPTEAR) method using NOx and combustion for selective synthesis of Sc3N@C80 metallic nitride fullerenes.
- Spectroscopic and structural study of Y2C2 carbide encapsulating endohedral metallofullerene: (Y2C2)@C82
- Internal and external factors in the structural organization in cocrystals of the mixed-metal endohedrals (GdSc2N@Ih-C80, Gd2ScN@Ih-C80, and TbSc2N@Ih-C80) and nickel(II) octaethylporphyrin.
- Fullerene quantum gyroscope.
Cited by
- Coordination Modes and Different Hapticities for Fullerene Organometallic Complexes
- Metallofullerenes encaging mixed-metal clusters: synthesis and structural studies of Gdx Ho3-x N@C80 and Gdx Lu3-x N@C80.
- Isolation and Crystallographic Characterization of Tm3N@D2 (35)-C88
- Azide addition to Sc2@C66: favorable activity on unsaturated linear triquinanes and dramatic reactivity difference compared with the free C66 cage.
- Stability Computationsfor Isomersof La@Cn (n = 72, 74, 76)
- An Improbable Monometallic Cluster Entrapped in a Popular Fullerene Cage: YCN@Cs(6)-C82
- Encapsulation of Mo₂C in MoS₂ inorganic fullerene-like nanoparticles and nanotubes.
- Ultrasonication-switched formation of dice- and cubic-shaped fullerene crystals and their applications as catalyst supports for methanol oxidation
- Endohedral fullerene with μ3-carbido ligand and titanium-carbon double bond stabilized inside a carbon cage
- Carbon atoms trapped in cages: Metal carbide clusterfullerenes
- Theoretical study on aluminum carbide endohedral fullerene-Al4C@C80
- Carbene additions to fullerenes.
- Sm@C2v(3)-C80: site-hopping motion of endohedral Sm atom and metal-induced effect on redox profile.
- Capturing the long-sought small-bandgap endohedral fullerene Sc3N@C82 with low kinetic stability.
- Molecular magnetic switch for a metallofullerene
- Calculated Temperature Development of the Relative Stabilities of Yb@C82 Isomers
- Towards Relative Populations of Non-Isomeric Metallofullerenes: La@C76( ) vs. La2@C76( ,17490)
- Sm@C74: Computed Relative Isomeric Populations
- Carbide clusterfullerenes with odd number of carbon atoms: molecular and electronic structures of Sc4C@C80, Sc4C@C82, and Sc4C3@C80
- A Bent Tb2C2 Cluster Encaged in a CS (6)-C82 Cage: Synthesis, Isolation and X-ray Crystallographic Study
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