Bryan D. McCloskey
Bryan D. McCloskey
Chemical & Biomolecular Engineering, UC, Berkeley; Energy Storage & Distributed Resources, LBNL
Geverifieerd e-mailadres voor berkeley.edu - Homepage
Geciteerd door
Geciteerd door
Lithium− air battery: Promise and challenges
G Girishkumar, B McCloskey, AC Luntz, S Swanson, W Wilcke
The Journal of Physical Chemistry Letters 1 (14), 2193-2203, 2010
Advances in understanding mechanisms underpinning lithium–air batteries
D Aurbach, BD McCloskey, LF Nazar, PG Bruce
Nature Energy 1 (9), 1-11, 2016
Twin Problems of Interfacial Carbonate Formation in Nonaqueous Li–O2 Batteries
BD McCloskey, A Speidel, R Scheffler, DC Miller, V Viswanathan, ...
The Journal of Physical Chemistry Letters 3 (8), 997-1001, 2012
Solvents’ Critical Role in Nonaqueous Lithium–Oxygen Battery Electrochemistry
BD McCloskey, DS Bethune, RM Shelby, G Girishkumar, AC Luntz
The Journal of Physical Chemistry Letters 2, 1161-1166, 2011
Nonaqueous Li–air batteries: a status report
AC Luntz, BD McCloskey
Chemical reviews 114 (23), 11721-11750, 2014
Solvating additives drive solution-mediated electrochemistry and enhance toroid growth in non-aqueous Li–O2 batteries
NB Aetukuri, BD McCloskey, JM García, LE Krupp, V Viswanathan, ...
Nature chemistry 7 (1), 50-56, 2015
Efficient hydrogen peroxide generation using reduced graphene oxide-based oxygen reduction electrocatalysts
HW Kim, MB Ross, N Kornienko, L Zhang, J Guo, P Yang, BD McCloskey
Nature Catalysis 1 (4), 282-290, 2018
On the efficacy of electrocatalysis in non-aqueous Li-O2 batteries
BD McCloskey, R Scheffler, A Speidel, DS Bethune, RM Shelby, AC Luntz
Journal of the American Chemical Society 133 (45), 18038-18041, 2011
Promising Routes to a High Li+ Transference Number Electrolyte for Lithium Ion Batteries
KM Diederichsen, EJ McShane, BD McCloskey
ACS Energy Letters 2 (11), 2563-2575, 2017
Electrical conductivity in Li2O2 and its role in determining capacity limitations in non-aqueous Li-O2 batteries
V Viswanathan, KS Thygesen, JS Hummelsho-j, JK No-rskov, ...
Journal of Chemical Physics 135 (21), 214704, 2011
Reversible Mn2+/Mn4+ double redox in lithium-excess cathode materials
J Lee, DA Kitchaev, DH Kwon, CW Lee, JK Papp, YS Liu, Z Lun, ...
Nature 556 (7700), 185-190, 2018
Recyclable, strong thermosets and organogels via paraformaldehyde condensation with diamines
JM García, GO Jones, K Virwani, BD McCloskey, DJ Boday, ...
Science 344 (6185), 732-735, 2014
Limitations in Rechargeability of Li-O2 Batteries and Possible Origins
BD McCloskey, DS Bethune, RM Shelby, T Mori, R Scheffler, A Speidel, ...
The journal of physical chemistry letters 3 (20), 3043-3047, 2012
Combining Accurate O2 and Li2O2 Assays to Separate Discharge and Charge Stability Limitations in Nonaqueous Li–O2 Batteries
BD McCloskey, A Valery, AC Luntz, SR Gowda, GM Wallraff, JM Garcia, ...
The journal of physical chemistry letters 4 (17), 2989-2993, 2013
Influence of polydopamine deposition conditions on pure water flux and foulant adhesion resistance of reverse osmosis, ultrafiltration, and microfiltration membranes
BD McCloskey, HB Park, H Ju, BW Rowe, DJ Miller, BJ Chun, K Kin, ...
Polymer 51 (15), 3472-3485, 2010
On the Mechanism of Nonaqueous Li–O2 Electrochemistry on C and Its Kinetic Overpotentials: Some Implications for Li–Air Batteries
BD McCloskey, R Scheffler, A Speidel, G Girishkumar, AC Luntz
The Journal of Physical Chemistry C 116 (45), 23897-23905, 2012
Cation-disordered rocksalt-type high-entropy cathodes for Li-ion batteries
Z Lun, B Ouyang, DH Kwon, Y Ha, EE Foley, TY Huang, Z Cai, H Kim, ...
Nature materials 20 (2), 214-221, 2021
Surface modification of thin film composite membrane support layers with polydopamine: Enabling use of reverse osmosis membranes in pressure retarded osmosis
JT Arena, B McCloskey, BD Freeman, JR McCutcheon
Journal of Membrane Science 375 (1-2), 55-62, 2011
A Bioinspired Fouling-Resistant Surface Modification for Water Purification Membranes
BD McCloskey, HB Park, H Ju, BW Rowe, DJ Miller, BD Freeman
Journal of Membrane Science, 2012
Enhancing electrochemical intermediate solvation through electrolyte anion selection to increase nonaqueous Li-O2 battery capacity
CM Burke, V Pande, A Khetan, V Viswanathan, BD McCloskey
Proceedings of the National Academy of Sciences 112 (30), 9293-9298, 2015
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