Developing a large-scale method to produce platinum (Pt)-based electrocatalysts for the oxygen reduction reaction (ORR) is highly desirable to propel the commercialization of the membrane electrode assembly (MEA). Here, we successfully report the large-scale production of surfactant-free ruthenium-doped Pt-cobalt octahedra grown on carbon (Ru-Pt3Co/C), which display a much higher ORR activity and stability and MEA stability than Pt3Co/C and Pt/C. Significantly, the in-situ X-ray absorption fine structure result reveals that Ru can drive the reduced Pt atoms to reverse to their initial state after the ORR by transferring a redundant electron from Pt to Ru, preventing the over-reduction of Pt active sites and boosting the chemical stability. ...
The sluggish rate of the oxygen reduction reaction (ORR) in proton exchange membrane (PEM) fuel cell...
Carbon-supported Pt–Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...
Ordered intermetallic Pt-M alloys are promising as next-generation low-Pt catalysts for oxygen reduc...
Improving the performance of oxygen reduction reaction (ORR) electrocatalysts is essential for the c...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
International audienceThis feature article concerns Pt surfaces modified (decorated) by ruthenium as...
To accelerate the kinetics of the oxygen reduction reaction (orr) in proton exchange membrane fuel c...
To accelerate the kinetics of the oxygen reduction reaction (ORR) in proton exchange membrane fuel c...
A major hurdle for the wide spread commercialization of proton exchange membrane based fuel cells (P...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
Catalyst is a substance that can increase or decrease the rate of reaction without modifying the ove...
Pt3Co/C is known as an active catalyst for the oxygen reduction reaction (ORR). The stability of thi...
Carbon-supported Pt-Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...
Environmental issues have attracted more and more public attention. Fuel cell, which is an energy co...
Ruthenium oxide/titanium oxide, with a Ru:Ti atomic ratio of 7:3 was synthesized by modified sol-gel...
The sluggish rate of the oxygen reduction reaction (ORR) in proton exchange membrane (PEM) fuel cell...
Carbon-supported Pt–Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...
Ordered intermetallic Pt-M alloys are promising as next-generation low-Pt catalysts for oxygen reduc...
Improving the performance of oxygen reduction reaction (ORR) electrocatalysts is essential for the c...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
International audienceThis feature article concerns Pt surfaces modified (decorated) by ruthenium as...
To accelerate the kinetics of the oxygen reduction reaction (orr) in proton exchange membrane fuel c...
To accelerate the kinetics of the oxygen reduction reaction (ORR) in proton exchange membrane fuel c...
A major hurdle for the wide spread commercialization of proton exchange membrane based fuel cells (P...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
Catalyst is a substance that can increase or decrease the rate of reaction without modifying the ove...
Pt3Co/C is known as an active catalyst for the oxygen reduction reaction (ORR). The stability of thi...
Carbon-supported Pt-Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...
Environmental issues have attracted more and more public attention. Fuel cell, which is an energy co...
Ruthenium oxide/titanium oxide, with a Ru:Ti atomic ratio of 7:3 was synthesized by modified sol-gel...
The sluggish rate of the oxygen reduction reaction (ORR) in proton exchange membrane (PEM) fuel cell...
Carbon-supported Pt–Ru alloys with a Pt/Ru ratio of 1:1 were prepared by NaBH4 reduction at room tem...
Ordered intermetallic Pt-M alloys are promising as next-generation low-Pt catalysts for oxygen reduc...