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Showing results (121-130 of 382) with videos related to

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Chemical Communications (Cambridge, England)|January 5, 2022
<i>In situ</i> bulk magnetization measurements reveal the state of charge of redox flow batteriesEvan Wenbo Zhao, Edward J K Shellard, Peter A A Klusener, et al.
Journal of the American Chemical Society|August 2, 2001
Kinetics and mechanism of the beta- to alpha-CuAlCl(4) phase transition: a time-resolved (63)Cu MAS NMR and powder X-ray diffraction studyH Liu, R M Sullivan, J C Hanson, et al.
Journal of the American Chemical Society|February 6, 2013
Dynamic nuclear polarization enhanced natural abundance 17O spectroscopyFrédéric Blanc, Luke Sperrin, David A Jefferson, et al.
Journal of the American Chemical Society|June 20, 2012
Structural modulation in the high capacity battery cathode material LiFeBO3Yuri Janssen, Derek S Middlemiss, Shou-Hang Bo, et al.
Annales De L'Institut Pasteur. Immunology|March 1, 1987
Primary sequence homology between the effector molecules that mediate complement and T-lymphocyte cytotoxicityD M Lowrey, F Rupp, T Aebischer, et al.
Solid State Nuclear Magnetic Resonance|March 3, 2012
In situ NMR of lithium ion batteries: bulk susceptibility effects and practical considerationsNicole M Trease, Lina Zhou, Hee Jung Chang, et al.
Physical Chemistry Chemical Physics : PCCP|December 6, 2016
A systematic study of <sup>25</sup>Mg NMR in paramagnetic transition metal oxides: applications to Mg-ion battery materialsJeongjae Lee, Ieuan D Seymour, Andrew J Pell, et al.
Chemical Communications (Cambridge, England)|October 11, 2016
Mechanistic insights into sodium storage in hard carbon anodes using local structure probesJoshua M Stratford, Phoebe K Allan, Oliver Pecher, et al.
Journal of the American Chemical Society|October 25, 2007
Watching nanoparticles grow: the mechanism and kinetics for the formation of TiO2-supported platinum nanoparticlesPeter J Chupas, Karena W Chapman, Guy Jennings, et al.
Nature|July 27, 2018
Niobium tungsten oxides for high-rate lithium-ion energy storageKent J Griffith, Kamila M Wiaderek, Giannantonio Cibin, et al.
Pageof 39

Showing results (121-130 of 382) with videos related to

Sort By:
Pageof 39
Chemical Communications (Cambridge, England)|January 5, 2022
<i>In situ</i> bulk magnetization measurements reveal the state of charge of redox flow batteriesEvan Wenbo Zhao, Edward J K Shellard, Peter A A Klusener, et al.
Journal of the American Chemical Society|August 2, 2001
Kinetics and mechanism of the beta- to alpha-CuAlCl(4) phase transition: a time-resolved (63)Cu MAS NMR and powder X-ray diffraction studyH Liu, R M Sullivan, J C Hanson, et al.
Journal of the American Chemical Society|February 6, 2013
Dynamic nuclear polarization enhanced natural abundance 17O spectroscopyFrédéric Blanc, Luke Sperrin, David A Jefferson, et al.
Journal of the American Chemical Society|June 20, 2012
Structural modulation in the high capacity battery cathode material LiFeBO3Yuri Janssen, Derek S Middlemiss, Shou-Hang Bo, et al.
Annales De L'Institut Pasteur. Immunology|March 1, 1987
Primary sequence homology between the effector molecules that mediate complement and T-lymphocyte cytotoxicityD M Lowrey, F Rupp, T Aebischer, et al.
Solid State Nuclear Magnetic Resonance|March 3, 2012
In situ NMR of lithium ion batteries: bulk susceptibility effects and practical considerationsNicole M Trease, Lina Zhou, Hee Jung Chang, et al.
Physical Chemistry Chemical Physics : PCCP|December 6, 2016
A systematic study of <sup>25</sup>Mg NMR in paramagnetic transition metal oxides: applications to Mg-ion battery materialsJeongjae Lee, Ieuan D Seymour, Andrew J Pell, et al.
Chemical Communications (Cambridge, England)|October 11, 2016
Mechanistic insights into sodium storage in hard carbon anodes using local structure probesJoshua M Stratford, Phoebe K Allan, Oliver Pecher, et al.
Journal of the American Chemical Society|October 25, 2007
Watching nanoparticles grow: the mechanism and kinetics for the formation of TiO2-supported platinum nanoparticlesPeter J Chupas, Karena W Chapman, Guy Jennings, et al.
Nature|July 27, 2018
Niobium tungsten oxides for high-rate lithium-ion energy storageKent J Griffith, Kamila M Wiaderek, Giannantonio Cibin, et al.
Pageof 39