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Energy & environmental science, ISSN 1754-5706, 2015, Volume 8, Issue 1, pp. 177 - 181
The PtRu/C HOR catalyst weakens the metal–H interaction and boosts the cell performance of the APEFC to 1 W cm −2 . A current challenge to alkaline polymer... 
RUTHENIUM SURFACE-AREAS | OXYGEN-REDUCTION | ENERGY & FUELS | PERFORMANCE | PLATINUM | COPPER | CHEMISTRY, MULTIDISCIPLINARY | ELECTROCATALYSTS | ENGINEERING, CHEMICAL | ENVIRONMENTAL SCIENCES | FUEL-CELL APPLICATIONS | ANION-EXCHANGE MEMBRANES | POLYMER ELECTROLYTE | UNDERPOTENTIAL DEPOSITION | Stripping | Catalysts | Platinum | Media | Electronics | Oxidation | Carbon monoxide | Density
Journal Article
Journal of power sources, ISSN 0378-7753, 2019, Volume 410-411, pp. 10 - 14
...: that is, after cycling 180 times at 1 C, the discharge specific capacity remains at 630.7 mAh g . The excellent electrochemical properties are attributed to the synergistic effect of carbon and metal Bi in the ZnO@Bi/C sphere, which is conducive to decreasing the voltage polarization and promoting the battery reversibility. 
ZnO@Bi/C sphere | Synergistic effect | High specific capacity | Zn–Ni battery | ELECTROCHEMISTRY | ENERGY | ANODE MATERIAL | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | CYCLING PERFORMANCE | ZINC | Zn-Ni battery | ELECTROCHEMICAL PERFORMANCE
Journal Article
Journal of power sources, ISSN 0378-7753, 2009, Volume 193, Issue 2, pp. 400 - 407
High-temperature proton conductors are promising electrolytes for protonic solid oxide fuel cells (H -SOFCs). In this study, the relationship between the Zr... 
BaZr | Proton | TPD | Solid oxide fuel cells | ELECTROCHEMISTRY | ELECTROLYTE | ENERGY & FUELS | CO2-TPD | ELECTRICAL-CONDUCTIVITY | CHEMICAL-STABILITY | CATHODE | BaZryCe0.8-yY0.2O3-delta | TEMPERATURES | HYDROGEN-PRODUCTION | IT-SOFCS | WATER-CONTAINING ATMOSPHERES | ANODE | OXIDES
Journal Article
Journal of power sources, ISSN 0378-7753, 2015, Volume 284, pp. 409 - 415
Journal Article
Nature communications, ISSN 2041-1723, 2015, Volume 6, Issue 1, p. 7436
... in lithium-sulfur batteries. We show that a stable and uniform solid electrolyte interphase layer is formed due to a synergetic effect of both lithium polysulfide and lithium nitrate as additives in ether-based electrolyte... 
SULFUR BATTERIES | DEPOSITION | MULTIDISCIPLINARY SCIENCES | LIQUID | SURFACE | ENERGY-STORAGE | METAL BATTERIES | MECHANISMS | ANODES | POLYMER ELECTROLYTES | CHALLENGES
Journal Article
Journal of Power Sources, ISSN 0378-7753, 11/2015, Volume 295, pp. 212 - 220
... due to the ability of the IL to suppress the polysulfide shuttle effect, combined with advantageous... 
Ionic liquids | SEI layer | LiNO3 additive | Lithium–sulfur battery | CATHODE | ELECTROCHEMISTRY | ANION | ENERGY & FUELS | REVERSIBILITY | Lithium-sulfur battery | LI
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2015, Volume 287, pp. 139 - 149
Journal Article