Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report one-dimensional bunched platinum-nickel (Pt-Ni) alloy nanocages with a Pt-skin structure for the oxygen reduction reaction that display high mass activity (3.52 amperes per milligram platinum) and specific activity (5.16 milliamperes per square centimeter platinum), or nearly 17 and 14 times higher as compared with a commercial platinum on carbon (Pt/C) catalyst. The catalyst exhibits high stability with negligible activity decay after 50,000 cycles. Both the experimental results and theoretical calculations reveal the existence of fewer strongly bonded platinum-oxygen (Pt-O) sites induced by the strain and ligand effects. Moreover, the fuel...
A series of PtxNi/C (x = 1-3) nanoparticle catalysts were prepared using a chemical reduction method...
The oxygen reduction reaction (ORR) on the cathode of a polymer electrolyte fuel cell requires the u...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
\u3cp\u3eDevelopment of efficient and robust electrocatalysts is critical for practical fuel cells. ...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
In order to fill the research gap of high metal loading of high performance PtNi alloy catalysts, a ...
A series of PtxNi/C (x = 1-3) nanoparticle catalysts were prepared using a chemical reduction method...
The oxygen reduction reaction (ORR) on the cathode of a polymer electrolyte fuel cell requires the u...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
Development of efficient and robust electrocatalysts is critical for practical fuel cells. We report...
\u3cp\u3eDevelopment of efficient and robust electrocatalysts is critical for practical fuel cells. ...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
In order to fill the research gap of high metal loading of high performance PtNi alloy catalysts, a ...
A series of PtxNi/C (x = 1-3) nanoparticle catalysts were prepared using a chemical reduction method...
The oxygen reduction reaction (ORR) on the cathode of a polymer electrolyte fuel cell requires the u...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...