2D epitaxy of lithium carbonate inducing growth mechanism transition on (00.1)-K and (01.8)-S forms of calcite crystals
Linda Pastero
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2D epitaxy of lithium carbonate inducing growth mechanism transitions on {0 0 0 1}-K and { 0 1 1 ¯ 8 } -S forms of calcite crystals
Linda Pastero, Dino Aquilano
Journal of Crystal Growth, 2005
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Morphology of calcite (CaCO3) crystals growing from aqueous solutions in the presence of Li+ ions. Surface behavior of the {0001} form
Linda Pastero, Dino Aquilano
Crystal growth & …, 2004
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Single and Twinned Li 2 CO 3 Crystals (Zabuyelite) Epitaxially Grown on {0001} and {101̅4} Forms of CaCO 3 (Calcite) Crystals
Dino Aquilano
Crystal Growth & Design, 2008
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Adsorption/Absorption of Lithium Affecting the Growth Morphology of Aragonite. The Two-Dimensional Epitaxy of Li2CO3 (Zabuyelite) on the {001} Form of Aragonite (CaCO3)
Dino Aquilano
Crystal Growth & Design, 2019
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Influence of Inorganic Solution Components on Lithium Carbonate Crystal Growth
Alistair Salisbury
Crystal Growth & Design, 2019
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Experimental and Theoretical Morphology of Single and Twinned Crystals of Li 2 CO 3 (Zabuyelite
Linda Pastero, Dino Aquilano
Crystal Growth & Design, 2007
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Growth of calcite crystals with non-singular faces
Juan Manuel Garcia-Ruiz
Journal of Crystal Growth, 1981
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Epitaxial Growth of Calcite Crystals on Dolomite and Kutnahorite (104) Surfaces
Enrico Gnecco
Crystal Growth & Design, 2013
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Growth of Li2CO3 Single Crystals by Zone Melting Technique
P. Ramasamy
Crystal Research and Technology, 1982
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Phase transitions and structural mechanisms of the formation of LiCoO2 polymorphic modifications
V. Torgashev
Glass Physics and Chemistry, 2007
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Habit Modification In Calcite Crystals Induced By Random And Epitaxial Adsorption Of Inorganic And Organic Compounds
Emanuele Costa UnivTo, Linda Pastero, Dino Aquilano
2007
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Surface reconstructions and relaxation effects in a centre-symmetrical crystal: the {00.1} form of calcite (CaCO3)
Dino Aquilano
CrystEngComm, 2010
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New kinetical and thermodynamical data concerning the intercalation of lithium and calcium into graphite
Philippe H Lagrange
Journal of Physics and Chemistry of Solids, 2006
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Effect of particle size on lithium intercalation rates in natural graphite
Karim Zaghib, Abdelbast Guerfi
Journal of Power Sources, 2001
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Effect of Graphite Crystal Structure on Lithium Electrochemical Intercalation
Michel Couzi
Journal of The Electrochemical Society, 1999
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X-ray diffraction analysis of the structure of the new lithium rich graphite intercalation compound Li2C6O0.5
Laurent Thevenot
Carbon, 1999
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Effect of particle morphology on lithium intercalation rates in natural graphite
Robert Kostecki
Journal of Power Sources, 2003
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Effects of Carbonate Solvents and Lithium Salts on Morphology and Coulombic Efficiency of Lithium Electrode
Mark Engelhard
Journal of the Electrochemical Society, 2013
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Structure and Solution Dynamics of Lithium Methyl Carbonate as a Protective Layer For Lithium Metal
Hee-Dae Lim
ACS Applied Energy Materials, 2018
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The importance of the active surface area of graphite materials in the first lithium intercalation
Roger Gadiou
Journal of Power Sources, 2007
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Transition of lithium growth mechanisms in liquid electrolytes
Martin Bazant
Energy Environ. Sci., 2016
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Formation of Lithium Titanate Hydrate Nanosheets: Insight into a Two-Dimension Growth Mechanism by in Situ Raman
George Demopoulos
Crystal Growth & Design, 2016
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Nanoscale phenomena during the growth of solid solutions on calcite {101¯4} surfaces
Manuel Prieto
Chemical Geology, 2006
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Influence of the Initial Li/Co Ratio in LiCoO2 on the High-Voltage Phase-Transitions Mechanisms
claude Delmas
The Journal of Physical Chemistry Letters, 2018
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Electrochemical lithium intercalation in Li2Ti3O7-Ramsdellite structure
Alejandro Varez
Materials Research Bulletin
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New crystals in the lithium sulfate family
Javier Ellena
Acta crystallographica. Section C, Crystal structure communications, 2003
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Intrinsic Electrochemical Characteristics in the Individual Needle-like LiCoO2 Crystals Synthesized by Flux Growth
Nobuyuki Zettsu
Electrochemistry, 2017
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Positive {hk.l} and negative {hk.l̄} forms of calcite (CaCO3) crystal. New open questions from the evaluation of their surface energies
Dino Aquilano
CrystEngComm, 2013
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The Crystal Growth of Calcite Crystals in the Presence of a Cyclic Polycarboxylic Acid, KOUTSOUKOS, P.G. and REDDY, M.M presented “The Crystal Growth of Calcite Crystals in the Presence of a Cyclic Polycarboxylic Acid” at the 19 th International Symposium on Industrial Crystallization (ISIC), in ...
PETROS KOUTSOUKOS
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A mechanistic model for calcite crystal growth using surface speciation
John Sternbeck
Geochimica et Cosmochimica Acta, 1999
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Revisited: Decomposition or Melting? Formation Mechanism Investigation of LiCoO 2 via In-Situ Time-Resolved X-ray Diffraction
Scott Wicker
Inorganic Chemistry, 2013
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New Investigations on the Surface Reactivity of Layered Lithium Oxides
Hervé Martinez
The Journal of Physical Chemistry C, 2012
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Comprehensive elucidation of crystal structures of lithium-intercalated graphite
Keiji Shimoda
Carbon, 2019
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Influence of Silicate Anions on the Morphology of Calcite Crystals
Suresh Valiyaveettil
Crystal Growth & Design, 2003
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