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Hydrogen Retention in Lithium and Lithium Compounds

2018 IEEE International Conference on Plasma Science (ICOPS), 2018
Lithium (Li) conditioning of plasma facing components (PFCs) in magnetic fusion devices has improved plasma performance and lowered hydrogen (H) recycling partially due to the efficiency of Li in binding H isotopes. In current fusion experiments [1], the presence of impurities inevitably creates Li-O and Li-C-O compounds.
L. Buzi, Y. Yang, A.O. Nelson, B.E. Koel
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Lithium Insertion Compounds

MRS Proceedings, 1988
AbstractThe topotactic insertion/extraction of lithium in layered oxides and sulfides is compared with that in the oxo- and thiospinel frameworks [M2]X4 for both the technical interest of tailoring secondary-battery cathode materials and the scientific interest of exploring narrow-band phenomena and magnetic interactions in compounds and/or phases not ...
J.B. Goodenough   +3 more
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A study on the structures of the substituted (aminomethyl)lithium and (thiomethyl)lithium compounds

Journal of Molecular Modeling, 2002
The structures of substituted (aminomethyl)lithium and (thiomethyl)lithium compounds have been examined. Geometric parameters, charge densities, bond orders, dipole moments and heats of formation for all the members of the two series of monomers and dimers of the units LiCN(R)2 and LiCSR where R=H, CH3(Me), C6H5(Ph) have been calculated. The structures
HATİPOĞLU, Arzu   +3 more
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The stereoregular polymerization of isoprene with lithium and organolithium compounds

Journal of Polymer Science, 1959
AbstractAll of the alkali metals catalyze the polymerization of dienes such as butadiene and isoprene. A stereoregular polymer is obtained when the polymerization of isoprene is catalyzed by lithium or organolithium compounds in the absence of oxygen contaning solvents. The polymer has molecular structure, configuration, and physical properties similar
R. S. Stearns, L. E. Forman
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Mutagenicity, carcinogenicity and teratogenicity of lithium compounds

Mutation Research/Reviews in Genetic Toxicology, 1995
This paper reviews the information available concerning the mutagenic, teratogenic and carcinogenic effects of lithium. Such effects would be highly unlikely in an occupational setting but might be a risk to the considerable percentage of the population treated for manic-depressive disorders.
A, Léonard, P, Hantson, G B, Gerber
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Structural Diversity of Lithium Neopentoxide Compounds

Inorganic Chemistry, 2001
The reaction of LiN(SiMe(3))(2) with 1 equiv of HOCH(2)CMe(3) (HONep) in toluene led to the formation of [Li(mu3-ONep)](8) (1). The complex adopts a novel dual-edge fused hexagon-square prismatic structure with a C(2v) axis of rotation that relates the top and bottom eight-membered rings.
T J, Boyle   +3 more
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Lithium—Oxygen Compounds

ChemInform, 2007
AbstractChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 200 leading journals. To access a ChemInform Abstract, please click on HTML or PDF.
openaire   +1 more source

Lithium analysis using reflection EELS for lithium compounds

Journal of Electron Spectroscopy and Related Phenomena, 2015
Abstract Analyses of Li has been performed by reflection electron energy-loss spectroscopy (REELS) technique, using a scanning electron microscopy (SEM) apparatus, where Li signals can be detected with high spatial resolution without severe requirements for sample shapes.
N. Taguchi   +4 more
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Lithium NMR in Lithium—Carbon Solid State Compounds

ChemInform, 2003
AbstractFor Abstract see ChemInform Abstract in Full Text.
J. Conard, P. Lauginie
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Lithium K‐edge XANES spectra for lithium compounds

X-Ray Spectrometry, 2002
Abstract Lithium K‐edge x‐ray absorption near‐edge structure (XANES) spectra of Li metal, Li 2 S, Li 2 O, LiOH·H 2 O, Li 2 CO 3
Junichi Tsuji   +5 more
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