Optofluidic Force Induction: A Workbench for Nanoparticle Characterization and Material Analytics DOI Creative Commons
Marko Šimić,

Christian Neuper,

Raphael Hauer

и другие.

Nano Letters, Год журнала: 2025, Номер unknown

Опубликована: Май 21, 2025

Nanoparticle characterization in dispersion lies at the heart of modern research and industry, which is transitioning from batch-wise to continuous production. In many cases, manufacturers nanoparticle-based products must comply with prescribed regulations rely on precise knowledge control critical process parameters that directly affect quality a final product. this Mini Review, we present Optofluidic Force Induction (OF2i) as workbench for real-time nanoparticle single-particle sensitivity high throughput. We discuss its underlying physical principles demonstrate capability online analytics correlative particle analysis based industrially relevant complex samples. elaborate recent achievements ongoing developments challenges possible directions future research. Our results prove OF2i approach paves way broad range applications opens up new avenues both industry

Язык: Английский

Optofluidic Force Induction: A Workbench for Nanoparticle Characterization and Material Analytics DOI Creative Commons
Marko Šimić,

Christian Neuper,

Raphael Hauer

и другие.

Nano Letters, Год журнала: 2025, Номер unknown

Опубликована: Май 21, 2025

Nanoparticle characterization in dispersion lies at the heart of modern research and industry, which is transitioning from batch-wise to continuous production. In many cases, manufacturers nanoparticle-based products must comply with prescribed regulations rely on precise knowledge control critical process parameters that directly affect quality a final product. this Mini Review, we present Optofluidic Force Induction (OF2i) as workbench for real-time nanoparticle single-particle sensitivity high throughput. We discuss its underlying physical principles demonstrate capability online analytics correlative particle analysis based industrially relevant complex samples. elaborate recent achievements ongoing developments challenges possible directions future research. Our results prove OF2i approach paves way broad range applications opens up new avenues both industry

Язык: Английский

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