Platinum catalysts are extensively used in the chemical industry and as electrocatalysts in fuel cells. Pt is notorious for its sensitivity to poisoning by strong CO adsorption. Here we demonstrate that the single-atom alloy (SAA) strategy applied to Pt reduces the binding strength of CO while maintaining catalytic performance. By using surface sensitive studies, we determined the binding strength of CO to different Pt ensembles, and this in turn guided the preparation of PtCu alloy nanoparticles (NPs). The atomic ratio Pt:Cu = 1:125 yielded a SAA which exhibited excellent CO tolerance in H<sub>2</sub> activation, the key elementary step for hydrogenation and hydrogen electro-oxidation. As a probe reaction, the selective hydrogenation of ac...
Hydrogen has been considered as a clean renewable energy system. Pt has been the universal choice fo...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
One major challenge of PEM fuel cells development is to overcome the activity and durability issues ...
Pt-based materials are used extensively in heterogeneous catalytic processes, but they are notorious...
In this work, we employ Pt-Cu alloy nanoparticles supported on reduced-SrTiO3 (RSTO) to obtain a poi...
The recent availability of shale gas has led to a renewed interest in C–H bond activation as the fir...
Here we show, combining CO stripping voltammograms on different PtCu nanoparticle (NP) low-temperatu...
The development and commercialization of direct ethanol fuel cells requires active and durable elect...
The ability of substitutional atoms in the (11 1)Pt surface to attract a water molecule and activate...
A complete solution for CO poisoning of Pt catalysts requiries a design that entirely prevents CO ad...
Improving the CO tolerance of Pt-based catalysts is very meaningful for the application in proton ex...
The performance of single-atom catalysts strongly depends on their particular coordination environme...
The preparation of oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) catalysts w...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
The performance of single-atom catalysts strongly depends on their particular coordination environme...
Hydrogen has been considered as a clean renewable energy system. Pt has been the universal choice fo...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
One major challenge of PEM fuel cells development is to overcome the activity and durability issues ...
Pt-based materials are used extensively in heterogeneous catalytic processes, but they are notorious...
In this work, we employ Pt-Cu alloy nanoparticles supported on reduced-SrTiO3 (RSTO) to obtain a poi...
The recent availability of shale gas has led to a renewed interest in C–H bond activation as the fir...
Here we show, combining CO stripping voltammograms on different PtCu nanoparticle (NP) low-temperatu...
The development and commercialization of direct ethanol fuel cells requires active and durable elect...
The ability of substitutional atoms in the (11 1)Pt surface to attract a water molecule and activate...
A complete solution for CO poisoning of Pt catalysts requiries a design that entirely prevents CO ad...
Improving the CO tolerance of Pt-based catalysts is very meaningful for the application in proton ex...
The performance of single-atom catalysts strongly depends on their particular coordination environme...
The preparation of oxygen reduction reaction (ORR) and hydrogen evolution reaction (HER) catalysts w...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
The performance of single-atom catalysts strongly depends on their particular coordination environme...
Hydrogen has been considered as a clean renewable energy system. Pt has been the universal choice fo...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
One major challenge of PEM fuel cells development is to overcome the activity and durability issues ...