The nanoarchitectonics design is very important for tuning the catalytic performance of the Pt-based catalysts. Herein, mesoporous Pt cage-bell nanostructures (Pt@mPt CBNs) are newly designed by a facile synthetic approach. The unique Pt@mPt CBNs are assembled by a mesoporous Pt nanocage with a Pt nanoparticle inside. Benefiting from its mesoporous cage-bell nanoarchitectonics, the Pt@mPt CBNs exhibit superior catalytic activity and durability for the oxygen reduction reaction. The present Pt nanoarchitectonics rationally integrates the structural advantages of mesoporous nanocages and nanoparticles, which is highly valuable for the design of Pt-based catalysts with desired performance
Engineering the architectures and compositions of noble metal-based nanocrystals is an effective str...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...
The design and synthesis of multicomponent Pt-based nanomaterials with highly controlled structures ...
Precisely tailoring the structure and fully making use of the components of nanoparticles are effect...
Mastery over the structure of nanoparticles might be an effective way to enhance their performance f...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Mastery over the structure of nanomaterials enables control of their properties and enhancement of t...
Currently, Pt-based nanomaterials with tailorable shapes, structures, and morphologies are the most ...
Publisher's PDFCatalysts for methanol oxidation reaction (MOR) are at the heart of key green-energy ...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Mesoporous Pt-containing nanocomposites with well-organized pores are desirable for fuel cells as we...
Mesoporous Pt-containing nanocomposites with well-organized pores are desirable for fuel cells as we...
The high cost of Pt-based membrane electrode assemblies (MEAs) is a critical hurdle for the commerci...
Tailoring the morphology and composition of Pt-based nanostructures is crucial to design high-perfor...
Engineering the architectures and compositions of noble metal-based nanocrystals is an effective str...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...
The design and synthesis of multicomponent Pt-based nanomaterials with highly controlled structures ...
Precisely tailoring the structure and fully making use of the components of nanoparticles are effect...
Mastery over the structure of nanoparticles might be an effective way to enhance their performance f...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Mastery over the structure of nanomaterials enables control of their properties and enhancement of t...
Currently, Pt-based nanomaterials with tailorable shapes, structures, and morphologies are the most ...
Publisher's PDFCatalysts for methanol oxidation reaction (MOR) are at the heart of key green-energy ...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Pt-based intermetallic nanostructures have demonstrated superior electrocatalytic performances compa...
Mesoporous Pt-containing nanocomposites with well-organized pores are desirable for fuel cells as we...
Mesoporous Pt-containing nanocomposites with well-organized pores are desirable for fuel cells as we...
The high cost of Pt-based membrane electrode assemblies (MEAs) is a critical hurdle for the commerci...
Tailoring the morphology and composition of Pt-based nanostructures is crucial to design high-perfor...
Engineering the architectures and compositions of noble metal-based nanocrystals is an effective str...
Development of highly active and durable electrocatalysts for oxygen reduction reaction (ORR) is of ...
The design and synthesis of multicomponent Pt-based nanomaterials with highly controlled structures ...