Xiaoliang Wei

Affiliations: 
2010 Brown University, Providence, RI 
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"Xiaoliang Wei"

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Matthew B. Zimmt grad student 2010 Brown
 (Robust, physisorbed self -assembled monolayers on graphite and their applications in nanoscience.)
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Publications

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Huang J, Duan W, Zhang J, et al. (2018) Substituted thiadiazoles as energy-rich anolytes for nonaqueous redox flow cells Journal of Materials Chemistry A. 6: 6251-6254
Hollas A, Wei X, Murugesan V, et al. (2018) A biomimetic high-capacity phenazine-based anolyte for aqueous organic redox flow batteries Nature Energy. 3: 508-514
Huang J, Yang Z, Murugesan V, et al. (2018) Spatially Constrained Organic Diquat Anolyte for Stable Aqueous Flow Batteries Acs Energy Letters. 3: 2533-2538
Duan W, Li B, Lu D, et al. (2018) Towards an all-vanadium redox flow battery with higher theoretical volumetric capacities by utilizing the VO2+/V3+ couple Journal of Energy Chemistry. 27: 1381-1385
Duan W, Vemuri RS, Hu D, et al. (2017) A Protocol for Electrochemical Evaluations and State of Charge Diagnostics of a Symmetric Organic Redox Flow Battery. Journal of Visualized Experiments : Jove
Wei X, Pan W, Duan W, et al. (2017) Materials and Systems for Organic Redox Flow Batteries: Status and Challenges Acs Energy Letters. 2: 2187-2204
Duan W, Huang J, Kowalski JA, et al. (2017) “Wine-Dark Sea” in an Organic Flow Battery: Storing Negative Charge in 2,1,3-Benzothiadiazole Radicals Leads to Improved Cyclability Acs Energy Letters. 2: 1156-1161
Luo J, Sam A, Hu B, et al. (2017) Unraveling pH dependent cycling stability of ferricyanide/ferrocyanide in redox flow batteries Nano Energy. 42: 215-221
Zhang J, Yang Z, Shkrob IA, et al. (2017) Redox Flow Batteries: Annulated Dialkoxybenzenes as Catholyte Materials for Non-aqueous Redox Flow Batteries: Achieving High Chemical Stability through Bicyclic Substitution (Adv. Energy Mater. 21/2017) Advanced Energy Materials. 7
Zhang J, Yang Z, Shkrob IA, et al. (2017) Annulated Dialkoxybenzenes as Catholyte Materials for Non-aqueous Redox Flow Batteries: Achieving High Chemical Stability through Bicyclic Substitution Advanced Energy Materials. 7: 1701272
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