A reverse microemulsion is used to encapsulate monometallic or bimetallic early transition metal oxide nanoparticles in microporous silica shells. The silica-encapsulated metal oxide nanoparticles are then carburized in a methane/hydrogen atmosphere at temperatures over 800 °C to form silica-encapsulated early transition metal carbide nanoparticles. During the carburization process, the silica shells prevent the sintering of adjacent carbide nanoparticles while also preventing the deposition of excess surface carbon. Alternatively, the silica-encapsulated metal oxide nanoparticles can be nitridized in an ammonia atmosphere at temperatures over 800 °C to form silica-encapsulated early transition metal nitride nanoparticles. By adjusting the ...
Carbide-derived carbons are provided that have high dynamic loading capacity for high vapor pressure...
Nanoparticles have attracted much attention because of their unusual physical properties. This work ...
A new strategy to transform non-noble metal oxide nanoparticles (NPs) into highly active and selecti...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
We demonstrated the self-assembly of transition metal carbide nanoparticles coated with atomically t...
This paper describes a powerful and versatile approach that combines the benefits of sol-gel process...
This thesis describes how solution chemical based carbothermal syntheses can be used for the synthes...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Developing a safe, facile, clean, low-cost, and scalable new method to replace the conventional meth...
We have established a general method for the synthesis of two different stoichiometries of bimetalli...
At the elevated temperatures required for metal carbide synthesis, atomic diffusion across particle ...
Carbide-derived carbons are provided that have high dynamic loading capacity for high vapor pressure...
Owing to their unique properties, use of microemulsion‐based synthetic techniques for the generation...
Transition-metal carbides are important materials in heterogeneous catalysis. It remains challenging...
Rational design and synthesis of cheap, noble metal-free, thermal/hydrothermal stable and active cat...
Carbide-derived carbons are provided that have high dynamic loading capacity for high vapor pressure...
Nanoparticles have attracted much attention because of their unusual physical properties. This work ...
A new strategy to transform non-noble metal oxide nanoparticles (NPs) into highly active and selecti...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2018Catal...
We demonstrated the self-assembly of transition metal carbide nanoparticles coated with atomically t...
This paper describes a powerful and versatile approach that combines the benefits of sol-gel process...
This thesis describes how solution chemical based carbothermal syntheses can be used for the synthes...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Developing a safe, facile, clean, low-cost, and scalable new method to replace the conventional meth...
We have established a general method for the synthesis of two different stoichiometries of bimetalli...
At the elevated temperatures required for metal carbide synthesis, atomic diffusion across particle ...
Carbide-derived carbons are provided that have high dynamic loading capacity for high vapor pressure...
Owing to their unique properties, use of microemulsion‐based synthetic techniques for the generation...
Transition-metal carbides are important materials in heterogeneous catalysis. It remains challenging...
Rational design and synthesis of cheap, noble metal-free, thermal/hydrothermal stable and active cat...
Carbide-derived carbons are provided that have high dynamic loading capacity for high vapor pressure...
Nanoparticles have attracted much attention because of their unusual physical properties. This work ...
A new strategy to transform non-noble metal oxide nanoparticles (NPs) into highly active and selecti...