For over a century, gas-phase (aerosol) technology has enabled manufacture of nanostructured commodities (i.e. carbon black, fumed oxides and metals) at high temperatures. As such this technology impacts consumer products like tires, paints, optical fibers, photocatalysts, pharmaceutics and microelectronics. Even though its early development was largely Edisonian, today is on a firm scientific basis through multiscale process design and sophisticated diagnostics. As a result, it's attractive for its undisputable scale-up to tons/h and, most importantly, for its capacity to form novel materials with closely controlled size, morphology and composition that are inaccessible by solid state or wet chemistry processes. Coagulation, sintering and ...
Development of fabrication technologies for three-dimensional structuring and integration of nanomat...
A novel flame-based process, termed combustion aerosol synthesis, for production of ceramic oxide na...
In search of highly active nanoparticles for catalytic applications, flame aerosol technology turns ...
There is an increasing interest in the generation of well-defined nanoparticles (NPs) not only becau...
Gas-phase routes have emerged as a promising method for synthesizing functional nanomaterials. A rev...
The enhanced properties of nanoscale metal and salt nanoparticles has triggered a wealth of research...
Flame aerosol synthesis (FAS) has been in industrial use for mass production of nanoparticle commodi...
The main objective of the NanoDome project is to develop a robust model-based design and engineering...
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollu...
Among the diversity of the soft chemical approaches for nanomaterials processing, synthesis through ...
Aerosols are facile and convenient methods for preparing many types of materials. Ultrasonic spray p...
Aerosols are facile and convenient methods for preparing many types of materials. Ultrasonic spray p...
Resumen del trabajo presentado en el 31st Imternational Materials Research Congress 2023, celebrado ...
Materials in the nanometer range have been produced for several decades. Carbon Black, for example, ...
Nanotechnology, the manipulation of matter at the scale of 1–100 nm, is present in everyday life and...
Development of fabrication technologies for three-dimensional structuring and integration of nanomat...
A novel flame-based process, termed combustion aerosol synthesis, for production of ceramic oxide na...
In search of highly active nanoparticles for catalytic applications, flame aerosol technology turns ...
There is an increasing interest in the generation of well-defined nanoparticles (NPs) not only becau...
Gas-phase routes have emerged as a promising method for synthesizing functional nanomaterials. A rev...
The enhanced properties of nanoscale metal and salt nanoparticles has triggered a wealth of research...
Flame aerosol synthesis (FAS) has been in industrial use for mass production of nanoparticle commodi...
The main objective of the NanoDome project is to develop a robust model-based design and engineering...
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollu...
Among the diversity of the soft chemical approaches for nanomaterials processing, synthesis through ...
Aerosols are facile and convenient methods for preparing many types of materials. Ultrasonic spray p...
Aerosols are facile and convenient methods for preparing many types of materials. Ultrasonic spray p...
Resumen del trabajo presentado en el 31st Imternational Materials Research Congress 2023, celebrado ...
Materials in the nanometer range have been produced for several decades. Carbon Black, for example, ...
Nanotechnology, the manipulation of matter at the scale of 1–100 nm, is present in everyday life and...
Development of fabrication technologies for three-dimensional structuring and integration of nanomat...
A novel flame-based process, termed combustion aerosol synthesis, for production of ceramic oxide na...
In search of highly active nanoparticles for catalytic applications, flame aerosol technology turns ...