The stability of nanoparticles is a major challenge in thermal and electrocatalysis. This is especially true for core-shell nanoparticles where only a few monolayers of noble metal protect the usually non-noble core material. In this work, we utilize the practical nobility concept to engineer stable core-shell nanoparticles with a self-passivating core material. Specifically, tantalum carbide as core material in combination with a 1–3 monolayer thick platinum shell exhibits exceptional stability in aqueous media. The core-shell catalyst shows no sign of structural changes after 10,000 degradation cycles up to 1.0 VRHE. Due to the efficient passivation of tantalum carbide at the solid/liquid interface, the dissolution reduces by a factor of ...
© 2022 The Authors. Published by American Chemical Society.Encapsulating platinum nanoparticles with...
Engineering the electronic coupling in platinum-based heterogeneous nanomaterials is an effective ...
A remaining challenge for deployment of proton-exchange membrane fuel cells is thelimited durability...
Core–shell particles with earth-abundant cores represent an effective design strategy for improving ...
In this study, platinum core–palladium shell nanoparticles have been synthesized by a chemical metho...
Today, the major challenges that have to be overcome for a massive production and commercialization ...
Reducing the Pt usage by improving the activity of Pt catalysts for oxygen reduction reaction is imp...
The commercialisation of polymer electrolyte fuel cells (PEFCs) has been hampered by the high cost o...
We demonstrated the self-assembly of transition metal carbide nanoparticles coated with atomically t...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Ultrathin metal layer-coated particles have potential applications in various fields, especially in ...
Ultrathin metal layer-coated particles have potential applications in various fields, especially in ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
Core@shell monolayer catalysts have dual advantages in electrocatalysis, cost of the catalyst is min...
We synthesized a new class of O 2 electrocatalysts with a high activity and very low noble metal con...
© 2022 The Authors. Published by American Chemical Society.Encapsulating platinum nanoparticles with...
Engineering the electronic coupling in platinum-based heterogeneous nanomaterials is an effective ...
A remaining challenge for deployment of proton-exchange membrane fuel cells is thelimited durability...
Core–shell particles with earth-abundant cores represent an effective design strategy for improving ...
In this study, platinum core–palladium shell nanoparticles have been synthesized by a chemical metho...
Today, the major challenges that have to be overcome for a massive production and commercialization ...
Reducing the Pt usage by improving the activity of Pt catalysts for oxygen reduction reaction is imp...
The commercialisation of polymer electrolyte fuel cells (PEFCs) has been hampered by the high cost o...
We demonstrated the self-assembly of transition metal carbide nanoparticles coated with atomically t...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Ultrathin metal layer-coated particles have potential applications in various fields, especially in ...
Ultrathin metal layer-coated particles have potential applications in various fields, especially in ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
Core@shell monolayer catalysts have dual advantages in electrocatalysis, cost of the catalyst is min...
We synthesized a new class of O 2 electrocatalysts with a high activity and very low noble metal con...
© 2022 The Authors. Published by American Chemical Society.Encapsulating platinum nanoparticles with...
Engineering the electronic coupling in platinum-based heterogeneous nanomaterials is an effective ...
A remaining challenge for deployment of proton-exchange membrane fuel cells is thelimited durability...