Synthesis of aerosol gels comprising macro-aggregates in a buoyancy-opposed flame reactor by a diffusion-limiting cluster aggregating process
A process for gas-phase synthesis of titanium dioxide aerosol gels with controlled monomer size and crystalline phase using a diffusion flame aerosol reactor operated in a buoyancy-opposed configuration is disclosed. The process includes introducing a precursor stream into a diffusion flame aerosol reactor, introducing a fuel stream into the reactor, combusting the precursor stream and the fuel stream in a flame to form at least one nanoparticle, and operating the reactor in a down-fired buoyancy-opposed configuration to produce the aerosol gel.
1. A process for synthesizing an aerosol gel comprising aggregates, the process comprising:
diffusion-limiting cluster aggregating (DLCA) of at least one nanoparticle to produce an aggregate of nanoparticles;
percolating the aggregate of nanoparticles to create a percolate of the aggregated nanoparticles; and,
DLCA of the percolate of aggregated nanoparticles to create an aerosol gel comprising macro-aggregates comprising particles having a diameter of from about 30 μm to about 5 mm.
2. The process of claim 1 , wherein the synthesizing of the aerosol gel comprising aggregates occurs in a diffusion flame aerosol reactor.
3. The process of claim 2 , wherein the reactor operates in a down-fired buoyancy-opposed configuration.
4. The process of claim 1 , wherein the aggregate of nanoparticles comprises nanoparticles having a diameter of from about 30 nm to about 100 nm.
5. The process of claim 1 , wherein the percolate of aggregated nanoparticles comprises nanoparticles having a diameter of from about 100 nm to about 30 μm.