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Volker Hessel

Researcher at University of Adelaide

Publications -  616
Citations -  24861

Volker Hessel is an academic researcher from University of Adelaide. The author has contributed to research in topics: Microreactor & Catalysis. The author has an hindex of 68, co-authored 572 publications receiving 21707 citations. Previous affiliations of Volker Hessel include Mainz Institute of Microtechnology & Fraunhofer Society.

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A kinetic study on the Cu(0)-catalyzed Ullmann SArN-type C-O coupling of potassium phenolate and 4-chloropyridine

TL;DR: In this paper, a parametric study of the factors that influence C-O bond formation reactions has been carried out to elucidate the mechanism by which copper mediates the Ullmann-type nucleophilic aromatic substitution (SNAr) of 4-chloropyridine with potassium phenolate.
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Sustainability lessons from practice: how flow intensification can trigger sustainability and modular plant technology in EU projects

TL;DR: In this paper, a review of EU projects that have carried out LCA and cost analyses and used the results to aid decision-making in the context of process intensification, flow chemistry and modular plants.
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Metallic nanoparticles made in flow and their catalytic applications in micro-flow reactors for organic synthesis

TL;DR: In this article, a comparison of the main features of the nanoparticle synthesis for batch and flow is presented, where the authors show that mixing in flow systems is relatively well characterized in comparison to batch vessels and that scaling up the flow reactors is easier and faster.
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The influence of dielectric permittivity of water on the shape of PtNPs synthesized in high-pressure high-temperature microwave reactor.

TL;DR: In this article, a novel method for the synthesis of Pt nanoparticles (PtNPs) using a microwave autoclave reactor is proposed, which only brings advantage when the ionic strength of the system is enough low.
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Redispersions‐Mikroreaktorsystem für eine phasentransferkatalysierte Veresterung

TL;DR: In this article, an interdigital mixer-redispersion capillary assembly was applied to prevent the liquid-liquid bubbly flow coalescence in microreactors, which resulted in a better reproducibility compared to a capillary without the constrictions.