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Raphaële J. Clément

Université Claude Bernard Lyon 1 · FR
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Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Cathode, Materials science, Ion, Electrochemistry, Electrolyte, and Lithium (medication).
h-index
citations
3,987
works
22
NIH funding
primary concept
email

Recent publications

Surface molecular engineering to enable processing of sulfide solid electrolytes in humid ambient air
Nature Communications 2025cited by 64position: middledoi
Healable and conductive sulfur iodide for solid-state Li–S batteries
Nature 2024cited by 252position: middledoi
Overcoming low initial coulombic efficiencies of Si anodes through prelithiation in all-solid-state batteries
Nature Communications 2024cited by 123position: middledoi
Amorphous and nanocrystalline halide solid electrolytes with enhanced sodium-ion conductivity
Matter 2024cited by 52position: middledoi
In situ formed partially disordered phases as earth-abundant Mn-rich cathode materials
Nature Energy 2023cited by 119position: middledoi
Stacking Faults Assist Lithium-Ion Conduction in a Halide-Based Superionic Conductor
Journal of the American Chemical Society 2022cited by 128position: lastdoi
Synthetic control of structure and conduction properties in Na–Y–Zr–Cl solid electrolytes
Journal of Materials Chemistry A 2022cited by 48position: lastdoi
Lattice Dynamics in the NASICON NaZr<sub>2</sub>(PO<sub>4</sub>)<sub>3</sub> Solid Electrolyte from Temperature-Dependent Neutron Diffraction, NMR, and Ab Initio Computational Studies
Chemistry of Materials 2022cited by 19position: middledoi
A stable cathode-solid electrolyte composite for high-voltage, long-cycle-life solid-state sodium-ion batteries
Nature Communications 2021cited by 283position: middledoi
Realizing continuous cation order-to-disorder tuning in a class of high-energy spinel-type Li-ion cathodes
Matter 2021cited by 71position: middledoi
Design Principles for High-Capacity Mn-Based Cation-Disordered Rocksalt Cathodes
Chem 2019cited by 180position: middledoi
Computational Investigation and Experimental Realization of Disordered High-Capacity Li-Ion Cathodes Based on Ni Redox
Chemistry of Materials 2019cited by 70position: middledoi
Reversible Mn2+/Mn4+ double redox in lithium-excess cathode materials
Nature 2018cited by 714position: middledoi
Improved Cycling Performance of Li‐Excess Cation‐Disordered Cathode Materials upon Fluorine Substitution
Advanced Energy Materials 2018cited by 196position: middledoi
Design principles for high transition metal capacity in disordered rocksalt Li-ion cathodes
Energy & Environmental Science 2018cited by 165position: middledoi
Short-Range Order and Unusual Modes of Nickel Redox in a Fluorine-Substituted Disordered Rocksalt Oxide Lithium-Ion Cathode
Chemistry of Materials 2018cited by 114position: firstdoi
Exploring Oxygen Activity in the High Energy P2-Type Na<sub>0.78</sub>Ni<sub>0.23</sub>Mn<sub>0.69</sub>O<sub>2</sub> Cathode Material for Na-Ion Batteries
Journal of the American Chemical Society 2017cited by 496position: middledoi
Direct evidence for high Na<sup>+</sup>mobility and high voltage structural processes in P2-Na<sub>x</sub>[Li<sub>y</sub>Ni<sub>z</sub>Mn<sub>1−y−z</sub>]O<sub>2</sub>(x, y, z ≤ 1) cathodes from solid-state NMR and DFT calculations
Journal of Materials Chemistry A 2017cited by 133position: firstdoi
Insights into the Nature and Evolution upon Electrochemical Cycling of Planar Defects in the β-NaMnO<sub>2</sub> Na-Ion Battery Cathode: An NMR and First-Principles Density Functional Theory Approach
Chemistry of Materials 2016cited by 68position: firstdoi
Identifying the Critical Role of Li Substitution in P2–Na<sub><i>x</i></sub>[Li<sub><i>y</i></sub>Ni<sub><i>z</i></sub>Mn<sub>1–<i>y</i>–<i>z</i></sub>]O<sub>2</sub> (0 &lt; <i>x</i>, <i>y</i>, <i>z</i> &lt; 1) Intercalation Cathode Materials for High-Energy Na-Ion Batteries
Chemistry of Materials 2014cited by 508position: middledoi
Frequency-stepped acquisition in nuclear magnetic resonance spectroscopy under magic angle spinning
The Journal of Chemical Physics 2013cited by 44position: middledoi
Spin-Transfer Pathways in Paramagnetic Lithium Transition-Metal Phosphates from Combined Broadband Isotropic Solid-State MAS NMR Spectroscopy and DFT Calculations
Journal of the American Chemical Society 2012cited by 140position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Gerbrand Ceder · Lawrence Berkeley National Laboratory8 papers (2018–2023)Zhengyan Lun · University of California, Berkeley7 papers (2018–2023)Ying Shirley Meng · Capital University of Economics and Business7 papers (2014–2024)Clare P. Grey · University of Cambridge6 papers (2012–2017)Mahalingam Balasubramanian · University of Regensburg6 papers (2018–2021)Daniil A. Kitchaev · Massachusetts Institute of Technology6 papers (2018–2019)Elias Sebti · University of California, Santa Barbara6 papers (2021–2025)Deok‐Hwang Kwon · Massachusetts Institute of Technology5 papers (2018–2021)Bryan D. McCloskey · University of California, Berkeley5 papers (2018–2021)Huiwen Ji · University of Utah5 papers (2018–2023)Raynald Giovine · University of California, Berkeley4 papers (2021–2023)Zijian Cai · University of Science and Technology of China4 papers (2019–2023)Jinhyuk Lee · Massachusetts Institute of Technology4 papers (2018–2018)Joseph K. Papp · University of California, Berkeley4 papers (2018–2019)Wanli Yang · National University of Singapore3 papers (2018–2023)Grayson Deysher · Philadelphia University3 papers (2021–2024)Andrew J. Pell · Université Claude Bernard Lyon 13 papers (2012–2014)Guido Pintacuda · Université Claude Bernard Lyon 13 papers (2012–2014)Derek S. Middlemiss · University of Warwick3 papers (2012–2017)Yaosen Tian · University of California, Berkeley3 papers (2018–2019)
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