John Bannister Goodenough
Texas Materials Institute
4 papers in the Anchorcite directory, published between 1997 and 2013, cited 34,474 times in total.
ORCID profileResearch topics
- Advancements in Battery Materials · 3 papers
- Advanced Battery Materials and Technologies · 2 papers
- Advanced Battery Technologies Research · 2 papers
- Advanced battery technologies research · 2 papers
- Extraction and Separation Processes · 1 paper
- Electrocatalysts for Energy Conversion · 1 paper
Frequent co-authors
- Youngsik Kim · 1 paper
- Kyu‐Sung Park · 1 paper
- Akshaya K. Padhi · 1 paper
- K.S. Nanjundaswamy · 1 paper
- Jin Suntivich · 1 paper
- Kevin J. May · 1 paper
- Hubert Andreas Gasteiger · 1 paper
- Yang Shao‐Horn · 1 paper
Papers
- Challenges for Rechargeable Li BatteriesChemistry of Materials · 2009 · 11,008 citations
The challenges for further development of Li rechargeable batteries for electric vehicles are reviewed. Most important is safety, which requires development of a nonflammable electrolyte with either a larger window between its lowest unoccupied molecular orbital (LUMO) and highest occupied…
- The Li-Ion Rechargeable Battery: A PerspectiveJournal of the American Chemical Society · 2013 · 10,045 citations
Each cell of a battery stores electrical energy as chemical energy in two electrodes, a reductant (anode) and an oxidant (cathode), separated by an electrolyte that transfers the ionic component of the chemical reaction inside the cell and forces the…
- Phospho‐olivines as Positive‐Electrode Materials for Rechargeable Lithium BatteriesJournal of The Electrochemical Society · 1997 · 7,960 citations
Reversible extraction of lithium from (triphylite) and insertion of lithium into at 3.5 V vs. lithium at 0.05 mA/cm 2 shows this material to be an excellent candidate for the cathode of a low‐power, rechargeable lithium battery that is inexpensive,…
- A Perovskite Oxide Optimized for Oxygen Evolution Catalysis from Molecular Orbital PrinciplesScience · 2011 · 5,461 citations
The efficiency of many energy storage technologies, such as rechargeable metal-air batteries and hydrogen production from water splitting, is limited by the slow kinetics of the oxygen evolution reaction (OER). We found that Ba(0.5)Sr(0.5)Co(0.8)Fe(0.2)O(3-δ) (BSCF) catalyzes the OER with intrinsic…
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