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- Currently displaying 41 - 60 of 774 publications
Sodium Tetrakis(hexafluoroisopropyloxy)aluminates: Synthesis and Electrochemical Characterisation of a Room-Temperature Solvated Ionic Liquid
– ChemElectroChem
(2023)
11,
e202300381
(doi: 10.1002/celc.202300381)
Understanding the Catalytic Mechanism of Redox Mediators for Li-O2 Batteries Using Cyclic Voltammetry
– ECS Meeting Abstracts
(2023)
MA2023-01,
2579
Low Temperature Niobium Tungsten Oxides as Anodes for Fast Charging Li-Ion Batteries
– ECS Meeting Abstracts
(2023)
MA2023-01,
474
(doi: 10.1149/ma2023-012474mtgabs)
Identifying and preventing degradation in flavin mononucleotide-based redox flow batteries via NMR and EPR spectroscopy.
– Nature Communications
(2023)
14,
5207
(doi: 10.1038/s41467-023-40649-4)
Machine learning force fields for molecular liquids: Ethylene Carbonate/Ethyl Methyl Carbonate binary solvent
– npj Computational Materials
(2023)
9,
146
(doi: 10.1038/s41524-023-01100-w)
Machine Learning Force Fields for Molecular Liquids: Ethylene Carbonate / Ethyl Methyl Carbonate Binary Solvent
– npj Computational Materials
(2023)
9,
146
(doi: 10.1038/s41524-023-01100-w)
Li iontronics in single-crystalline T-Nb2O5 thin films with vertical ionic transport channels.
– Nature materials
(2023)
22,
1128
(doi: 10.1038/s41563-023-01612-2)
Understanding the Surface Regeneration and Reactivity of Garnet Solid-State Electrolytes.
– ACS Energy Lett
(2023)
8,
3476
Oxygen hole formation controls stability in LiNiO2 cathodes
– Joule
(2023)
7,
1623
(doi: 10.1016/j.joule.2023.06.017)
Low Temperature Epitaxial LiMn2O4 Cathodes Enabled by NiCo2O4 Current Collector for High-Performance Microbatteries
– ACS Energy Lett
(2023)
8,
3437
Graphite Anodes for Li-Ion Batteries: An Electron Paramagnetic Resonance Investigation
– Chemistry of Materials
(2023)
35,
5497
O3 to O1 Phase Transitions in Highly Delithiated NMC811 at Elevated Temperatures
– Chemistry of materials : a publication of the American Chemical Society
(2023)
35,
4979
Insights into soft short circuit-based degradation of lithium metal batteries
– Faraday Discuss
(2023)
248,
277
(doi: 10.1039/d3fd00101f)
Single-source formation and assessment of nitrogen-doped graphitic spheres for lithium- and sodium-ion batteries
– RSC Advances
(2023)
13,
15918
(doi: 10.1039/d3ra01409f)
Chemo-mechanical analysis of lithiation/delithiation of Ni-rich single crystals
– Journal of The Electrochemical Society
(2023)
170,
050531
(doi: 10.1149/1945-7111/acd47e)
Anion redox as a means to derive layered manganese oxychalcogenides with exotic intergrowth structures.
– Nature Communications
(2023)
14,
2917
(doi: 10.1038/s41467-023-38489-3)
NMR Methodology for Measuring Dissolved O2 and Transport in Lithium–Air Batteries
– The Journal of Physical Chemistry C
(2023)
127,
10001
(doi: 10.1021/acs.jpcc.3c00991)
NMR Methodology for Measuring Dissolved O2 and Transport in Lithium-Air Batteries.
– J Phys Chem C Nanomater Interfaces
(2023)
127,
10001
(doi: 10.1021/acs.jpcc.3c00991)
Quantifying dissolved transition metals in battery electrolyte solutions with NMR paramagnetic relaxation enhancement
– The Journal of Physical Chemistry C: Energy Conversion and Storage, Optical and Electronic Devices, Interfaces, Nanomaterials, and Hard Matter
(2023)
127,
9509
(doi: 10.1021/acs.jpcc.3c01396)
Triarylamines as Catholytes in Aqueous Organic Redox Flow Batteries
– ChemSusChem
(2023)
16,
e202300128
(doi: 10.1002/cssc.202300128)