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Dario Cambié

Researcher at Eindhoven University of Technology

Publications -  19
Citations -  1514

Dario Cambié is an academic researcher from Eindhoven University of Technology. The author has contributed to research in topics: Luminescent solar concentrator & Solar energy. The author has an hindex of 8, co-authored 17 publications receiving 1124 citations. Previous affiliations of Dario Cambié include Max Planck Society.

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Journal ArticleDOI

Applications of Continuous-Flow Photochemistry in Organic Synthesis, Material Science, and Water Treatment

TL;DR: In this review, an up-to-date overview is given of photochemical transformations in continuous-flow reactors, including applications in organic synthesis, material science, and water treatment.
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A leaf-inspired luminescent solar concentrator for energy-efficient continuous-flow photochemistry

TL;DR: A leaf-inspired photomicroreactor is reported that constitutes a merger between luminescent solar concentrators (LSCs) and flow photochemistry to enable green and efficient reactions powered by solar irradiation.
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Energy-Efficient Solar Photochemistry with Luminescent Solar Concentrator Based Photomicroreactors.

TL;DR: It is demonstrated here, for the first time, that a diverse set of photon‐driven transformations can be efficiently powered by solar irradiation with the use of solvent‐resistant and cheap luminescent solar concentrator based photomicroreactors.
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A Fully Automated Continuous-Flow Platform for Fluorescence Quenching Studies and Stern–Volmer Analysis

TL;DR: The first fully automated continuous‐flow platform for fluorescence quenching studies and Stern–Volmer analysis is reported, which affords a time and labor reduction over batch methods while increasing the accuracy and reproducibility of the data produced.
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Scale-up of a Luminescent Solar Concentrator-Based Photomicroreactor via Numbering-up.

TL;DR: This work reports on the scalability of luminescent solar concentrator photomicroreactors via a numbering-up strategy, and finds that interchannel spacing is an important and unique design parameter for numbered-up LSC-PMs, which influences greatly the photon flux experienced within the reaction channels.