1 - 9 |
Electrochemical synthesis and characterization of single-walled carbon nanotubes/polypyrrole films on transparent substrates Hernandez-Ferrer J, Anson-Casaos A, Martinez MT |
10 - 16 |
Electro-deoxidation of hafnium dioxide and niobia-doped hafnium dioxide in molten calcium chloride Abdelkader AM, Fray DJ |
17 - 22 |
Self-doped polyaniline on functionalized carbon cloth as electroactive materials for supercapacitor Bian LJ, Luan F, Liu SS, Liu XX |
23 - 28 |
Reduced graphene oxide and nanosheet-based nickel oxide microsphere composite as an anode material for lithium ion battery Zhu XJ, Hu J, Dai HL, Ding L, Jiang L |
29 - 34 |
Investigation of oxygen reduction chemistry in ether and carbonate based electrolytes for Li-O-2 batteries Wang H, Xie K |
35 - 45 |
Atomic resolution structural insights into PdPt nanoparticle-carbon interactions for the design of highly active and stable electrocatalysts Slanac DA, Li L, Mayoral A, Yacaman MJ, Manthiram A, Stevenson KJ, Johnston KP |
46 - 64 |
3-D pore-scale resolved model for coupled species/charge/fluid transport in a vanadium redox flow battery Qiu G, Joshi AS, Dennison CR, Knehr KW, Kumbur EC, Sun Y |
65 - 70 |
High tap-density Li3V2(PO4)(3)/C composite material synthesized by sol spray-drying and post-calcining method Zhang XP, Guo HJ, Li XH, Wang ZX, Wu L |
71 - 80 |
Theoretical treatment of high-frequency, large-amplitude ac voltammetry applied to ideal surface-confined redox systems Bell CG, Anastassiou CA, O'Hare D, Parker KH, Siggers JH |
81 - 86 |
Three-dimensional porous Fe0.1V2O5.15 thin film as a cathode material for lithium ion batteries Li SR, Ge SY, Qiao Y, Chen YM, Feng XY, Zhu JF, Chen CH |
87 - 93 |
Aqueous electrocatalytic hydrogenation of furfural using a sacrificial anode Li ZL, Kelkar S, Lam CH, Luczek K, Jackson JE, Miller DJ, Saffron CM |
94 - 99 |
Role of magnetic forces in pulse electrochemical deposition of Ni-nanoAl(2)O(3) composites Mohan S, Saravanan G, Bund A |
100 - 109 |
Boron-doped diamond anodic oxidation of ethidium bromide: Process optimization by response surface methodology Zhang CY, Yang LJ, Rong F, Fu DG, Gu ZZ |
110 - 117 |
Protic ionic liquid as electrolyte for high-densities electrochemical double layer capacitors with activated carbon electrode material Anouti M, Couadou E, Timperman L, Galiano H |
118 - 129 |
Three-dimensional particle-resolved models of Li-ion batteries to assist the evaluation of empirical parameters in one-dimensional models Goldin GM, Colclasure AM, Wiedemann AH, Kee RJ |
130 - 139 |
Physical interpretation of cyclic voltammetry for measuring electric double layer capacitances Wang HN, Pilon L |
140 - 146 |
Catalysis of oxygen reduction on Au modified by Pd nanoislands in perchloric acid solution Srejic I, Smiljanic M, Grgur B, Rakocevic Z, Strbac S |
147 - 153 |
Co-alloying effect of Co and Cr with Pt for oxygen electro-reduction reaction Jeon MK, McGinn PJ |
154 - 161 |
Hierarchically porous Co3O4 film prepared by hydrothermal synthesis method based on colloidal crystal template for supercapacitor application Duan BR, Cao Q |
162 - 170 |
Highly efficient platinum nanocatalysts synthesized by an open-loop reduction system with a controlled temperature loop Wu YS, Gong SM, Wang CH, Yeh TK, Tsai MC, Tsai CH, Su YC, Tseng FG |
171 - 176 |
Flower-like Bi2Se3 nanostructures: Synthesis and their application for the direct electrochemistry of hemoglobin and H2O2 detection Fan H, Zhang SX, Ju P, Su HC, Ai SY |
177 - 182 |
Fabrication of flower-like platinum clusters onto graphene sheets by pulse electrochemical deposition Hsieh CT, Wei JM, Hsiao HT, Chen WY |
183 - 189 |
Electrochemical myoglobin biosensor based on graphene-ionic liquid-chitosan bionanocomposites: Direct electrochemistry and electrocatalysis Ruan CX, Li TT, Niu QJ, Lu M, Lou J, Gao WM, Sun W |
190 - 195 |
A novel LiFePO4/graphene/carbon composite as a performance-improved cathode material for lithium-ion batteries Su C, Bu XD, Xu LH, Liu JL, Zhang C |
196 - 204 |
Characterization of ferrate ion electrogeneration in acidic media by voltammetry and scanning electrochemical microscopy. Assessment of its reactivity on 2,4-dichlorophenoxyacetic acid degradation Villanueva-Rodriguez M, Sanchez-Sanchez CM, Montiel V, Brillas E, Peralta-Hernandez JM, Hernandez-Ramirez A |
205 - 210 |
Pulse electrocleposited Pd nanoclusters on graphene-based electrodes for proton exchange membrane fuel cells Hsieh CT, Liu YY, Roy AK |
211 - 220 |
The electrochemical behaviour of 2205 duplex stainless steel in alkaline solutions with different pH in the presence of chloride Luo H, Dong CF, Li XG, Xiao K |