© 2020 Elsevier Ltd The rational design and preparation of efficient Pt-based electrocatalysts towards the oxygen reduction reaction (ORR) is a key issue for the widespread application of hydrogen fuel cells. Despite many Pt/support hybrid materials that have been reported as promising electrocatalysts for the ORR, precisely controlling the contact facet between the Pt and the support has never been demonstrated to mediate the ORR. Herein, based on theoretical calculations, we constructed an interesting Pt/support electrocatalyst by chemically coupling Pt nanoparticles (NPs) with single crystal (Sc) LiTiO2 nano-octahedra (Pt NPs/Sc-LiTiO2) for the first time. Specifically, the Pt {111} atomic crystal planes are in contact with the highly la...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
Electrochemical processes play a central role in clean energy generation, storage, and utilization. ...
Atomically and electronically coupled Pt and CoO hybrid nanocatalysts are fabricated for electrocata...
Developing highly efficient and stable platinum (Pt)-based electrocatalysts for oxygen reduction rea...
As a new generation of power sources, fuel cells have shown great promise for application in transpo...
Environmental issues have attracted more and more public attention. Fuel cell, which is an energy co...
The oxygen reduction reaction (ORR) is a performance-dictating cathodic reaction in polymer electrol...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...
The rational synthesis of single-layer noble metal directly anchored on support materials is an elus...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Ultrathin Pt nanostructures exposing controlled crystal facets are highly desirable for their superi...
Platinum (Pt) is a highly efficient electrocatalyst for both the cathodic oxygen reduction reaction ...
International audienceThe electrochemical activation of oxygen is the cornerstone of electrochemical...
Manipulating the surface structure of electrocatalysts at the atomic level is of primary importance ...
International audienceDue to strain and ligand effects, the simultaneous presence of concave and con...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
Electrochemical processes play a central role in clean energy generation, storage, and utilization. ...
Atomically and electronically coupled Pt and CoO hybrid nanocatalysts are fabricated for electrocata...
Developing highly efficient and stable platinum (Pt)-based electrocatalysts for oxygen reduction rea...
As a new generation of power sources, fuel cells have shown great promise for application in transpo...
Environmental issues have attracted more and more public attention. Fuel cell, which is an energy co...
The oxygen reduction reaction (ORR) is a performance-dictating cathodic reaction in polymer electrol...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...
The rational synthesis of single-layer noble metal directly anchored on support materials is an elus...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Ultrathin Pt nanostructures exposing controlled crystal facets are highly desirable for their superi...
Platinum (Pt) is a highly efficient electrocatalyst for both the cathodic oxygen reduction reaction ...
International audienceThe electrochemical activation of oxygen is the cornerstone of electrochemical...
Manipulating the surface structure of electrocatalysts at the atomic level is of primary importance ...
International audienceDue to strain and ligand effects, the simultaneous presence of concave and con...
Increasing the electrochemically active surface area (ECSA) and alloying Pt with transition metals (...
Electrochemical processes play a central role in clean energy generation, storage, and utilization. ...
Atomically and electronically coupled Pt and CoO hybrid nanocatalysts are fabricated for electrocata...