The precise and comprehensive manipulation of the component, size, and geometric nano-architecture of platinum-based electrocatalysts into porous and hollow structure can effectively impart the catalysts with substantially improved electrochemical performance, yet remain formidably challenging. Herein, a straightforward fabrication of porous platinum-copper alloyed nanobowls (abbreviated as Pt3Cu NBs hereafter) assembled by ultrafine nanoparticles (approximate to 2.9 nm) via a one-pot hydrothermal approach with the assistance of a structure-directing agent of N,N '-methylenebisacrylamide (MBAA) is reported. The involvement of MBAA plays a decisive role in the formation of Pt-MBAA complex solid nanospheres, which serve as the self-sacrificia...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Atomically ordered intermetallic nanomaterials represent one class of the most attractive catalysts ...
The precise and comprehensive manipulation of the component, size, and geometric nano-architecture o...
Simultaneously engineering a bowl-like and ultrafine nano-size structure offers an attractive route ...
Noble metals such as platinum (Pt) are widely used as catalysts in fuel cells and other heterogeneou...
Pt-based bimetallic nanostructures have attracted a great deal of attention due to their unique nano...
Developing electrocatalysts with ultrathin nanostructures and high mesoporosity is a relevant high-p...
Three-dimensional (3D) cubic superstructures of PtPd nanocubes were achieved by spontaneous adjustme...
The ability to impart Pt-based catalysts with high catalytic activity and low cost is essential for ...
Well-defined noble metal nanomaterials are attractive as catalysts for various applications because ...
We report a simple approach to fabricate aligned bimetallic Pt–Cu microwires with a three-dimensiona...
The applicability of Direct-Methanol Fuel Cells (DMFC) for small electronic devices, such as cell ph...
Improving the catalytic activity of Pt-based bimetallic nanoparticles is a key challenge in the appl...
Boosting the durability of Pt nanoparticles by controlling the composition and morphology is extreme...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Atomically ordered intermetallic nanomaterials represent one class of the most attractive catalysts ...
The precise and comprehensive manipulation of the component, size, and geometric nano-architecture o...
Simultaneously engineering a bowl-like and ultrafine nano-size structure offers an attractive route ...
Noble metals such as platinum (Pt) are widely used as catalysts in fuel cells and other heterogeneou...
Pt-based bimetallic nanostructures have attracted a great deal of attention due to their unique nano...
Developing electrocatalysts with ultrathin nanostructures and high mesoporosity is a relevant high-p...
Three-dimensional (3D) cubic superstructures of PtPd nanocubes were achieved by spontaneous adjustme...
The ability to impart Pt-based catalysts with high catalytic activity and low cost is essential for ...
Well-defined noble metal nanomaterials are attractive as catalysts for various applications because ...
We report a simple approach to fabricate aligned bimetallic Pt–Cu microwires with a three-dimensiona...
The applicability of Direct-Methanol Fuel Cells (DMFC) for small electronic devices, such as cell ph...
Improving the catalytic activity of Pt-based bimetallic nanoparticles is a key challenge in the appl...
Boosting the durability of Pt nanoparticles by controlling the composition and morphology is extreme...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Atomically ordered intermetallic nanomaterials represent one class of the most attractive catalysts ...