Optimization of Particle Synthesis

Embedded in an interdisciplinary research project, the present work investigates the modeling, simulation, and optimization of specific processes for the production of functional nanoparticles. The examined material systems represent a selection of important core building blocks for future nanotechn...

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Príomhchruthaitheoir: Gröschel, Michael
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Foilsithe / Cruthaithe: FAU University Press 2025
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Rochtain ar líne:ONIX_20251215T160703_9783944057125_11
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author Gröschel, Michael
author_browse Gröschel, Michael
author_facet Gröschel, Michael
author_sort Gröschel, Michael
collection Directory of Open Access Books
description Embedded in an interdisciplinary research project, the present work investigates the modeling, simulation, and optimization of specific processes for the production of functional nanoparticles. The examined material systems represent a selection of important core building blocks for future nanotechnologies. Depending on the application, a well-defined particle size distribution of the final product is required. The involved mechanisms (e.g. reaction, growth, ripening, and agglomeration) are described in the modeling by a hyperbolic partial integro-differential equation coupled to one or more ordinary differential equations. The successful validation against experimental data combined with the techniques of optimal control theory thereby allow for a targeted manipulation of the underlying processes. The developed methods establish in many cases for the first time a systematic approach for the production of tailor-made nanoparticles.
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spelling doab-20.500.12854ir-1702242025-12-16T05:28:07Z Optimization of Particle Synthesis Gröschel, Michael Bilineares System Funktionale Nanopartikel Adjungierte Differentialgleichung thema EDItEUR::P Mathematics and Science::PB Mathematics Embedded in an interdisciplinary research project, the present work investigates the modeling, simulation, and optimization of specific processes for the production of functional nanoparticles. The examined material systems represent a selection of important core building blocks for future nanotechnologies. Depending on the application, a well-defined particle size distribution of the final product is required. The involved mechanisms (e.g. reaction, growth, ripening, and agglomeration) are described in the modeling by a hyperbolic partial integro-differential equation coupled to one or more ordinary differential equations. The successful validation against experimental data combined with the techniques of optimal control theory thereby allow for a targeted manipulation of the underlying processes. The developed methods establish in many cases for the first time a systematic approach for the production of tailor-made nanoparticles. 2025-12-16T05:28:06Z 2025-12-16T05:28:06Z 2025-12-15T15:09:04Z 2014 book ONIX_20251215T160703_9783944057125_11 https://library.oapen.org/handle/20.500.12657/109180 9783944057125 https://directory.doabooks.org/handle/20.500.12854/170224 eng FAU Studies Mathematics & Physics open access image/jpeg n/a https://library.oapen.org/bitstream/20.500.12657/109180/1/9783944057125.pdf FAU University Press 2c600dea-eece-4066-87be-da335e323fdb 9783944057125 211 Erlangen open access
spellingShingle Bilineares System
Funktionale Nanopartikel
Adjungierte Differentialgleichung
thema EDItEUR::P Mathematics and Science::PB Mathematics
Gröschel, Michael
Optimization of Particle Synthesis
title Optimization of Particle Synthesis
title_full Optimization of Particle Synthesis
title_fullStr Optimization of Particle Synthesis
title_full_unstemmed Optimization of Particle Synthesis
title_short Optimization of Particle Synthesis
title_sort optimization of particle synthesis
topic Bilineares System
Funktionale Nanopartikel
Adjungierte Differentialgleichung
thema EDItEUR::P Mathematics and Science::PB Mathematics
topic_facet Bilineares System
Funktionale Nanopartikel
Adjungierte Differentialgleichung
thema EDItEUR::P Mathematics and Science::PB Mathematics
url ONIX_20251215T160703_9783944057125_11
work_keys_str_mv AT groschelmichael optimizationofparticlesynthesis