Coprecipitation is by far the most common synthesis method for iron oxide nanoparticles (IONPs). However, reproducibility and scalability represent a major challenge. Therefore, innovative processes for scalable production of IONPs are highly sought after. Here, we explored the combination of microwave heating with a flow reactor producing IONPs through coprecipitation. The synthesis was initially studied in a well-characterised microwave-heated flow system, enabling the synthesis of multicore IONPs, with control over both the single core size and the multicore hydrodynamic diameter. The effect of residence time and microwave power was investigated, enabling the synthesis of multicore nanostructures with hydrodynamic diameter between ∼35 an...
A new scale-up concept for microwave assisted flow processing is presented where modular scale-up is...
Iron oxide nanoparticle synthesis in microwave plasma is studied by optical diagnostics. The arrange...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from March 24, 201...
Coprecipitation is by far the most common synthesis method for iron oxide nanoparticles (IONPs). How...
Liquid-liquid segmentation is a common method to prevent reactor fouling when synthesising nanoparti...
The synthesis of silver nanoparticles with small average size and narrow size distribution is a requ...
Microwave-promoted continuous flow systems have emerged as a game-changer in nanoparticle synthesis....
Many studies have been conducted on organic and inorganic synthesis by microwave heating owing to it...
Traditional hot-injection (HI) syntheses of colloidal nanoparticles (NPs) allows good separation of ...
Microwave Solvothermal Synthesis (MSS) is a chemical technology, where apart from possible effects o...
From all of the iron oxide nanoparticle (IONP) syntheses, thermal decomposition methods are the most...
Microwaves, MW, applications in synthesis of nanoparticles is a large and dynamically growing resear...
Co-precipitation is by far the most common synthesis for magnetic iron oxide nanoparticles (IONPs), ...
Hot-injection techniques are currently the state-of-the-art method for the synthesis of high-quality...
Solvothermal syntheses are one of the most applied methods for the preparation of monodisperseand cr...
A new scale-up concept for microwave assisted flow processing is presented where modular scale-up is...
Iron oxide nanoparticle synthesis in microwave plasma is studied by optical diagnostics. The arrange...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from March 24, 201...
Coprecipitation is by far the most common synthesis method for iron oxide nanoparticles (IONPs). How...
Liquid-liquid segmentation is a common method to prevent reactor fouling when synthesising nanoparti...
The synthesis of silver nanoparticles with small average size and narrow size distribution is a requ...
Microwave-promoted continuous flow systems have emerged as a game-changer in nanoparticle synthesis....
Many studies have been conducted on organic and inorganic synthesis by microwave heating owing to it...
Traditional hot-injection (HI) syntheses of colloidal nanoparticles (NPs) allows good separation of ...
Microwave Solvothermal Synthesis (MSS) is a chemical technology, where apart from possible effects o...
From all of the iron oxide nanoparticle (IONP) syntheses, thermal decomposition methods are the most...
Microwaves, MW, applications in synthesis of nanoparticles is a large and dynamically growing resear...
Co-precipitation is by far the most common synthesis for magnetic iron oxide nanoparticles (IONPs), ...
Hot-injection techniques are currently the state-of-the-art method for the synthesis of high-quality...
Solvothermal syntheses are one of the most applied methods for the preparation of monodisperseand cr...
A new scale-up concept for microwave assisted flow processing is presented where modular scale-up is...
Iron oxide nanoparticle synthesis in microwave plasma is studied by optical diagnostics. The arrange...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from March 24, 201...