In this work, an advanced integrated electrode for high-performance electrocatalytic oxygen reduction is designed and fabricated directly by in-situ hybridization of binary non-precious metal (Fe-Co) ethylenediamine chelate complexes with multi-layered d-Ti3C2 MXene nanoflakes, in the formation of FeCo (3 : 1)-N-d-Ti3C2 MXene. The catalyst exhibits outstanding oxygen reduction reaction activity with more positive onset potential and half-wave potential than commercial 20 wt.% Pt/C and achieves a current density of 5.60 mA.cm(-2) in O-2-saturated 0.1 M KOH electrolyte solution. Furthermore, remarkable stability and methanol tolerance can be detected. The outstanding activity and stability can be attributed to the fact that the FeCoEDA chelat...
The rational design of affordable, efficient and robust electrocatalysts towards the oxygen reductio...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...
In this work, an advanced integrated electrode for high-performance electrocatalytic oxygen reductio...
The design of a new class of non-noble-metal catalysts with oxygen reduction reaction (ORR) activity...
International audienceThe development of reliable electrolyzers is closely related to the developmen...
One of the major challenges associated with fuel cells is exploring highly efficient and low-cost el...
In this work, the spontaneous and NaBH4-induced reduction of chloroplatinic acid on the surface of T...
One of the critical issues in the industrial development of fuel cells (e.g., proton exchange membra...
Rational design of cost-effective and efficient bifunctional oxygen electrocatalysts for sluggish ox...
The major technical obstacles in commercialization of microbial fuel cell technology are the sluggis...
The high cost and limited supply of platinum for Pt-based catalysts in proton exchange membrane fuel...
The rational design of affordable, efficient and robust electrocatalysts towards the oxygen reductio...
We have synthesized new electrocatalysts for the O2 reduction reaction that does not contain Pt. The...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...
The rational design of affordable, efficient and robust electrocatalysts towards the oxygen reductio...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...
In this work, an advanced integrated electrode for high-performance electrocatalytic oxygen reductio...
The design of a new class of non-noble-metal catalysts with oxygen reduction reaction (ORR) activity...
International audienceThe development of reliable electrolyzers is closely related to the developmen...
One of the major challenges associated with fuel cells is exploring highly efficient and low-cost el...
In this work, the spontaneous and NaBH4-induced reduction of chloroplatinic acid on the surface of T...
One of the critical issues in the industrial development of fuel cells (e.g., proton exchange membra...
Rational design of cost-effective and efficient bifunctional oxygen electrocatalysts for sluggish ox...
The major technical obstacles in commercialization of microbial fuel cell technology are the sluggis...
The high cost and limited supply of platinum for Pt-based catalysts in proton exchange membrane fuel...
The rational design of affordable, efficient and robust electrocatalysts towards the oxygen reductio...
We have synthesized new electrocatalysts for the O2 reduction reaction that does not contain Pt. The...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...
The rational design of affordable, efficient and robust electrocatalysts towards the oxygen reductio...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...
The large-scale and controllable synthesis of novel N-doped three-dimensional (3D) carbon nanocage-d...