Developing effective and robust novel electrocatalysts for direct alcohol fuel cells has been gaining much attention. However, the widely used Pt catalyst suffers from limitations including the sluggish kinetics, severe CO poisoning, and catalyst lost caused by aggregation and Ostwald ripening during alcohol oxidation reaction. Herein, dendritic intermetallic PtSnBi nanoalloys were synthesized via a facile hydrothermal approach with high electrocatalytic performance and enhanced CO resistance for methanol oxidation reaction (MOR) and ethanol oxidation reaction (EOR) owing to the synergism of the chosen three elements and unique three-dimensional morphology. Specifically, the PtSnBi nanoalloys display 4.6 and 6.7 times higher of mass activit...
Pt-based alloys denote promising catalysts for the methanol oxidation reaction (MOR) and the ethanol...
Direct ethanol fuel cells are one of the most promising electrochemical energy conversion devices fo...
The electrocatalytic activity of nanocrystals composed of Pt, Rh, and Sn suspended on glassy carbon ...
Developing effective and robust novel electrocatalysts for direct alcohol fuel cells has been gainin...
Ordered intermetallic compounds of Pt-based metal electrocatalysts have been recently proposed as ve...
Atomically ordered intermetallic nanomaterials represent one class of the most attractive catalysts ...
Nanocatalyst performance towards the ethanol oxidation reaction (EOR) for fuel cell applications can...
Highly branched Pt-Ni nanoalloys with varied chemical compositions were prepared by one-pot solvothe...
Combining the core-shell structure with the optimization of surface composition and structure in the...
In this article, we describe an effective method to tether Pt and PtSn nanoparticles (NPs) on polyel...
Multimetallic nanocatalysts with a controlled structure can provide enhanced catalytic activity and ...
The compositions and surface facets of platinum (Pt)-based electrocatalysts are of great significanc...
The development of highly efficient and durable anode materials for ethanol electro-oxidation remain...
Exploitation of highly active catalysts for alcohol electrooxidation is urgent for direct alcohol fu...
An effective method is developed for preparing highly dispersed and nano-sized PtSn/C electrocatalys...
Pt-based alloys denote promising catalysts for the methanol oxidation reaction (MOR) and the ethanol...
Direct ethanol fuel cells are one of the most promising electrochemical energy conversion devices fo...
The electrocatalytic activity of nanocrystals composed of Pt, Rh, and Sn suspended on glassy carbon ...
Developing effective and robust novel electrocatalysts for direct alcohol fuel cells has been gainin...
Ordered intermetallic compounds of Pt-based metal electrocatalysts have been recently proposed as ve...
Atomically ordered intermetallic nanomaterials represent one class of the most attractive catalysts ...
Nanocatalyst performance towards the ethanol oxidation reaction (EOR) for fuel cell applications can...
Highly branched Pt-Ni nanoalloys with varied chemical compositions were prepared by one-pot solvothe...
Combining the core-shell structure with the optimization of surface composition and structure in the...
In this article, we describe an effective method to tether Pt and PtSn nanoparticles (NPs) on polyel...
Multimetallic nanocatalysts with a controlled structure can provide enhanced catalytic activity and ...
The compositions and surface facets of platinum (Pt)-based electrocatalysts are of great significanc...
The development of highly efficient and durable anode materials for ethanol electro-oxidation remain...
Exploitation of highly active catalysts for alcohol electrooxidation is urgent for direct alcohol fu...
An effective method is developed for preparing highly dispersed and nano-sized PtSn/C electrocatalys...
Pt-based alloys denote promising catalysts for the methanol oxidation reaction (MOR) and the ethanol...
Direct ethanol fuel cells are one of the most promising electrochemical energy conversion devices fo...
The electrocatalytic activity of nanocrystals composed of Pt, Rh, and Sn suspended on glassy carbon ...