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Science (New York, N.Y.)
|
March 13, 1987
Superconductivity at 40 K in the Oxygen-Defect Perovskites La2-xSrxCuO4-y
J M Tarascon, L H Greene, W R McKinnon, et al.
Nature Materials
|
December 1, 2009
A 3.6 V lithium-based fluorosulphate insertion positive electrode for lithium-ion batteries
N Recham, J-N Chotard, L Dupont, et al.
Dalton Transactions (Cambridge, England : 2003)
|
September 29, 2004
Various strategies to tune the ionic/electronic properties of electrode materials
J M Tarascon, C Delacourt, A S Prakash, et al.
Journal of the American Chemical Society
|
February 21, 2013
Low-potential sodium insertion in a NASICON-type structure through the Ti(III)/Ti(II) redox couple
P Senguttuvan, G Rousse, M E Arroyo y de Dompablo, et al.
Science (New York, N.Y.)
|
May 17, 1991
Epitaxial cuprate superconductor/ferroelectric heterostructures
R Ramesh, A Inam, W K Chan, et al.
Inorganic Chemistry
|
April 15, 2020
Structural Polymorphism in Na<sub>4</sub>Zn(PO<sub>4</sub>)<sub>2</sub> Driven by Rotational Order-Disorder Transitions and the Impact of Heterovalent Substitutions on Na-Ion Conductivity
Sujoy Saha, Gwenaëlle Rousse, Matthieu Courty, et al.
Chemical Communications (Cambridge, England)
|
October 30, 2013
Li(4)NiTeO(6) as a positive electrode for Li-ion batteries
M Sathiya, K Ramesha, G Rousse, et al.
Nature Materials
|
August 23, 2011
A 3.90 V iron-based fluorosulphate material for lithium-ion batteries crystallizing in the triplite structure
P Barpanda, M Ati, B C Melot, et al.
Nature Materials
|
December 2, 2014
Origin of voltage decay in high-capacity layered oxide electrodes
M Sathiya, A M Abakumov, D Foix, et al.
Nature Materials
|
July 16, 2013
Reversible anionic redox chemistry in high-capacity layered-oxide electrodes
M Sathiya, G Rousse, K Ramesha, et al.
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of 3
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Showing results (21-30 of 30) with videos related to
Sort By:
Page
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You have reached the last page of results.
This site can display upto 30 results.
Science (New York, N.Y.)
|
March 13, 1987
Superconductivity at 40 K in the Oxygen-Defect Perovskites La2-xSrxCuO4-y
J M Tarascon, L H Greene, W R McKinnon, et al.
Nature Materials
|
December 1, 2009
A 3.6 V lithium-based fluorosulphate insertion positive electrode for lithium-ion batteries
N Recham, J-N Chotard, L Dupont, et al.
Dalton Transactions (Cambridge, England : 2003)
|
September 29, 2004
Various strategies to tune the ionic/electronic properties of electrode materials
J M Tarascon, C Delacourt, A S Prakash, et al.
Journal of the American Chemical Society
|
February 21, 2013
Low-potential sodium insertion in a NASICON-type structure through the Ti(III)/Ti(II) redox couple
P Senguttuvan, G Rousse, M E Arroyo y de Dompablo, et al.
Science (New York, N.Y.)
|
May 17, 1991
Epitaxial cuprate superconductor/ferroelectric heterostructures
R Ramesh, A Inam, W K Chan, et al.
Inorganic Chemistry
|
April 15, 2020
Structural Polymorphism in Na<sub>4</sub>Zn(PO<sub>4</sub>)<sub>2</sub> Driven by Rotational Order-Disorder Transitions and the Impact of Heterovalent Substitutions on Na-Ion Conductivity
Sujoy Saha, Gwenaëlle Rousse, Matthieu Courty, et al.
Chemical Communications (Cambridge, England)
|
October 30, 2013
Li(4)NiTeO(6) as a positive electrode for Li-ion batteries
M Sathiya, K Ramesha, G Rousse, et al.
Nature Materials
|
August 23, 2011
A 3.90 V iron-based fluorosulphate material for lithium-ion batteries crystallizing in the triplite structure
P Barpanda, M Ati, B C Melot, et al.
Nature Materials
|
December 2, 2014
Origin of voltage decay in high-capacity layered oxide electrodes
M Sathiya, A M Abakumov, D Foix, et al.
Nature Materials
|
July 16, 2013
Reversible anionic redox chemistry in high-capacity layered-oxide electrodes
M Sathiya, G Rousse, K Ramesha, et al.
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of 3