51 |
Mass transfer in fibrous media with varying anisotropy for flow battery electrodes: Direct numerical simulations with 3D X-ray computed tomography Kok MDR, Jervis R, Trantet TG, Sadeghi MA, Brett DJL, Shearing PR, Gostick JT Chemical Engineering Science, 196, 104, 2019 |
52 |
Self-healing anion exchange membrane for pH 7 redox flow batteries Hou JQ, Liu YH, Liu YZ, Wu L, Yang ZJ, Xu TW Chemical Engineering Science, 201, 167, 2019 |
53 |
Low-Cost-Membranen fur die Vanadium-Redox-Flow-BatterieLow-Cost Membranes for Vanadium Redox-Flow Batteries Duerkop D, Widdecke H, Schmiemann A, Kunz U, Schilde C Chemie Ingenieur Technik, 91(8), 1192, 2019 |
54 |
Thin Reinforced Poly(2,6-dimethyl-1,4-phenylene oxide)-based Anion-exchange Membranes with High Mechanical and Chemical Stabilities Song HB, Kim DH, Kang MS Chemistry Letters, 48(12), 1500, 2019 |
55 |
Modification of a carbon paper electrode by three-dimensional reduced graphene oxide in a MV/4-HO-TEMPO flow battery Li XY, Li JS, Huang CD, Zhang W Electrochimica Acta, 301, 240, 2019 |
56 |
First-principle investigations of nitrogen-, boron-, phosphorus-doped graphite electrodes for vanadium redox flow batteries Xu A, Shi L, Zeng L, Zhao TS Electrochimica Acta, 300, 389, 2019 |
57 |
Electrodeposited reduced graphene oxide as a highly efficient and low-cost electrocatalyst for vanadium redox flow batteries Nia PM, Abouzari-Lotf E, Woi PM, Alias Y, Ting TM, Ahmad A, Jusoh NWC Electrochimica Acta, 297, 31, 2019 |
58 |
Water crossover phenomena in all-vanadium redox flow batteries Oh K, Moazzam M, Gwak G, Ju H Electrochimica Acta, 297, 101, 2019 |
59 |
Direct addition of sulfur and nitrogen functional groups to graphite felt electrodes for improving all-vanadium redox flow battery performance Shah AB, Wu YH, Joo YL Electrochimica Acta, 297, 905, 2019 |
60 |
Polybenzimidazole membranes embedded with ionic liquids for use in high proton selectivity vanadium redox flow batteries Song XP, Ding LM, Wang LH, He M, Han XT Electrochimica Acta, 295, 1034, 2019 |