1165 - 1170 |
Ni nanoparticles-graphene hybrid film: one-step electrodeposition preparation and application as highly efficient oxygen evolution reaction electrocatalyst Pu ZH, Liu Q, Asiri AM, Sun XP |
1171 - 1177 |
Effects of a graphene nanosheet conductive additive on the high-capacity lithium-excess manganese-nickel oxide cathodes of lithium-ion batteries Chen WC, Hsieh CY, Weng YT, Li FS, Wu HC, Wu NL |
1179 - 1184 |
Preparing a catalyst layer in magnetic field to improve the performance of proton exchange membrane fuel cells Sun X, Xu HF, Lu L, Xing WY, Zhao H |
1185 - 1191 |
Facile synthesis of NiO/MWCNT composites by a vacuum solution infiltration method for lithium-ion batteries Yin YH, Jia YJ, Zhang XT, Ma C, Sun ZX, Yang ST |
1193 - 1203 |
Nanostructured catalysts for oxygen electroreduction based on bimetallic monoethanolamine complexes of Co(III) and Ni(II) Pirskyy Y, Murafa N, Korduban OM, Subrt J |
1205 - 1218 |
Effects of anode orientation and flow channel design on performance of refuelable zinc-air fuel cells Jiratchayamaethasakul C, Srijaroenpramong N, Bunyangyuen T, Arpavate W, Wongyao N, Therdthianwong A, Therdthianwong S |
1219 - 1223 |
Enhanced electrocatalytic activity and stability of PdCo@Pt core-shell nanoparticles for oxygen reduction reaction Park AR, Lee YW, Kwak DH, Roh B, Hwang I, Park KW |
1225 - 1238 |
A novel pulse shortcut strategy for simulating nano-second pulse electrochemical micro-machining Hotoiu EL, Deconinck J |
1239 - 1251 |
Voltammetry of nanoparticle-coupled imine linkage-based receptors for sensing of Al(III) and Co(II) ions Mittal SK, Sharma R, Sharma M, Singh N, Singh J, Kaur N, Chhibber M |