Details
Original language | English |
---|---|
Pages (from-to) | 777-781 |
Number of pages | 5 |
Journal | Reaction Chemistry & Engineering |
Volume | 9 |
Issue number | 4 |
Early online date | 4 Mar 2024 |
Publication status | Published - 1 Apr 2024 |
Abstract
Providing hydrogen peroxide (H 2O 2) for enzyme-catalyzed reactions requires a careful balance between sufficient reactivity and toxicity. Herein, we demonstrate the photocatalytic synthesis of H 2O 2 in a continuous operation set-up using nitrogen-doped carbon nanodots (N-CNDs) and simultaneous determination of this in situ synthesis by continuous measurement with a novel developed H 2O 2 sensor.
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In: Reaction Chemistry & Engineering, Vol. 9, No. 4, 01.04.2024, p. 777-781.
Research output: Contribution to journal › Article › Research › peer review
}
TY - JOUR
T1 - At-line monitoring of hydrogen peroxide released from its photocatalytic and continuous synthesis
AU - Tjell, Anders Ø.
AU - Meyer, Lars-Erik
AU - Jud, Barbara
AU - Kara, Selin
AU - Mayr, Torsten
N1 - Publisher Copyright: © The Royal Society of Chemistry 2024.
PY - 2024/4/1
Y1 - 2024/4/1
N2 - Providing hydrogen peroxide (H 2O 2) for enzyme-catalyzed reactions requires a careful balance between sufficient reactivity and toxicity. Herein, we demonstrate the photocatalytic synthesis of H 2O 2 in a continuous operation set-up using nitrogen-doped carbon nanodots (N-CNDs) and simultaneous determination of this in situ synthesis by continuous measurement with a novel developed H 2O 2 sensor.
AB - Providing hydrogen peroxide (H 2O 2) for enzyme-catalyzed reactions requires a careful balance between sufficient reactivity and toxicity. Herein, we demonstrate the photocatalytic synthesis of H 2O 2 in a continuous operation set-up using nitrogen-doped carbon nanodots (N-CNDs) and simultaneous determination of this in situ synthesis by continuous measurement with a novel developed H 2O 2 sensor.
UR - http://www.scopus.com/inward/record.url?scp=85187535343&partnerID=8YFLogxK
U2 - 10.1039/d3re00659j
DO - 10.1039/d3re00659j
M3 - Article
VL - 9
SP - 777
EP - 781
JO - Reaction Chemistry & Engineering
JF - Reaction Chemistry & Engineering
IS - 4
ER -