We report a robust, universal "soft" nitriding method to grow in situ ligand-free ultrasmall noble metal nanocatalysts (UNMN; e.g., Au, Pd, and Pt) onto carbon. Using low-temperature urea pretreatment at 300 degrees C, soft nitriding enriches nitrogen-containing species on the surface of carbon supports and enhances the affinity of noble metal precursors onto these supports. We demonstrated sub-2-nm, ligand-free UNMNs grown in situ on seven different types of nitrided carbons with no organic ligands via chemical reduction or thermolysis. Ligand-free UNMNs supported on carbon showed superior electrocatalytic activity for methanol oxidation compared to counterparts with surface capping agents or larger nanocrystals on the sa...
The catalytic performance of metal particles is closely related to the particle size. In this articl...
Electrocatalytic properties of ligand-free gold nanoclusters (AuNCs, <2nm) grown on nitrided ...
A new synthesis protocol aimed at the preparation of palladium-based, platinum-free carbon nitride e...
We report a robust, universal "soft" nitriding method to grow in situ ligand-free ...
Although single-atomically dispersed metal-Nx on carbon support (M-NC) has great potential in hetero...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
This report describes two new synthesis protocols for the preparation of \u2...
Supported ultrasmall noble metal nanocluster-based (UNMN-based) catalysts are one of the most import...
Noble metal nanoparticles with hollow interiors and customizable shell compositions have immense pot...
Immobilization of Electrocatalytically Active Gold Nanoparticles on Nitrogen-Doped Carbon Fiber Elec...
P latinum-based catalysts represent a state of the art in the electrocatalysis of oxygen reduction r...
Developing highly active, durable, and low-cost electrocatalysts is of crucial importance to making ...
We have demonstrated a facile and green strategy to synthesize ultrafine silver nanoparticles monodi...
Graphene-like nitrogen-doped carbon nanosheets (NCN) have become a fascinating carbon-based material...
An iron-nitrogen-containing non-noble metal electrocatalyst, supported on interconnected graphitic s...
The catalytic performance of metal particles is closely related to the particle size. In this articl...
Electrocatalytic properties of ligand-free gold nanoclusters (AuNCs, <2nm) grown on nitrided ...
A new synthesis protocol aimed at the preparation of palladium-based, platinum-free carbon nitride e...
We report a robust, universal "soft" nitriding method to grow in situ ligand-free ...
Although single-atomically dispersed metal-Nx on carbon support (M-NC) has great potential in hetero...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
This report describes two new synthesis protocols for the preparation of \u2...
Supported ultrasmall noble metal nanocluster-based (UNMN-based) catalysts are one of the most import...
Noble metal nanoparticles with hollow interiors and customizable shell compositions have immense pot...
Immobilization of Electrocatalytically Active Gold Nanoparticles on Nitrogen-Doped Carbon Fiber Elec...
P latinum-based catalysts represent a state of the art in the electrocatalysis of oxygen reduction r...
Developing highly active, durable, and low-cost electrocatalysts is of crucial importance to making ...
We have demonstrated a facile and green strategy to synthesize ultrafine silver nanoparticles monodi...
Graphene-like nitrogen-doped carbon nanosheets (NCN) have become a fascinating carbon-based material...
An iron-nitrogen-containing non-noble metal electrocatalyst, supported on interconnected graphitic s...
The catalytic performance of metal particles is closely related to the particle size. In this articl...
Electrocatalytic properties of ligand-free gold nanoclusters (AuNCs, <2nm) grown on nitrided ...
A new synthesis protocol aimed at the preparation of palladium-based, platinum-free carbon nitride e...