The rise of continuous flow biocatalysis-fundamentals, very recent developments and future perspectives

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

Externe Organisationen

  • Aarhus University
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)2155-2184
Seitenumfang30
FachzeitschriftReaction Chemistry and Engineering
Jahrgang5
Ausgabenummer12
Frühes Online-Datum15 Okt. 2020
PublikationsstatusVeröffentlicht - Dez. 2020
Extern publiziertJa

Abstract

Biocatalysis community has witnessed a drastic increase in the number of studies for the use of enzymes in continuously operated flow reactors. This significant interest arose from the possibility of combining the strengths of the two worlds: enhanced mass transfer and resource efficient synthesis achieved in flow chemistry at micro-scales and excellent selectivities obtained in biocatalysis. Within this review, we present very recent (from 2018 to September 2020) developments in the field of biocatalysis in continuously operated systems. Briefly, we describe the fundamentals of continuously operated reactors with a special focus on enzyme-catalyzed reactions. We devoted special attention on future perspectives in this key emerging technological area ranging from process analytical technologies to digitalization. This journal is

ASJC Scopus Sachgebiete

Zitieren

The rise of continuous flow biocatalysis-fundamentals, very recent developments and future perspectives. / De Santis, Piera; Meyer, Lars-Erik; Kara, Selin.
in: Reaction Chemistry and Engineering, Jahrgang 5, Nr. 12, 12.2020, S. 2155-2184.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

De Santis P, Meyer LE, Kara S. The rise of continuous flow biocatalysis-fundamentals, very recent developments and future perspectives. Reaction Chemistry and Engineering. 2020 Dez;5(12):2155-2184. Epub 2020 Okt 15. doi: 10.1039/d0re00335b
De Santis, Piera ; Meyer, Lars-Erik ; Kara, Selin. / The rise of continuous flow biocatalysis-fundamentals, very recent developments and future perspectives. in: Reaction Chemistry and Engineering. 2020 ; Jahrgang 5, Nr. 12. S. 2155-2184.
Download
@article{9bd00a8960f74aaa9e14fa0064067da2,
title = "The rise of continuous flow biocatalysis-fundamentals, very recent developments and future perspectives",
abstract = "Biocatalysis community has witnessed a drastic increase in the number of studies for the use of enzymes in continuously operated flow reactors. This significant interest arose from the possibility of combining the strengths of the two worlds: enhanced mass transfer and resource efficient synthesis achieved in flow chemistry at micro-scales and excellent selectivities obtained in biocatalysis. Within this review, we present very recent (from 2018 to September 2020) developments in the field of biocatalysis in continuously operated systems. Briefly, we describe the fundamentals of continuously operated reactors with a special focus on enzyme-catalyzed reactions. We devoted special attention on future perspectives in this key emerging technological area ranging from process analytical technologies to digitalization. This journal is ",
author = "{De Santis}, Piera and Lars-Erik Meyer and Selin Kara",
note = "Funding Information: Authors thank to Danmarks Frie Forskningsfond (DFF), Independent Research Fund Denmark (IRFD), PHOTOX-f project, grant agreement No 9063-00031B. The authors also thank video telecommunications for the possibility to stay in contact with colleagues and friends during the 2019–2020 COVID-19 pandemic. An ongoing discussion is crucial developing such a review paper. ",
year = "2020",
month = dec,
doi = "10.1039/d0re00335b",
language = "English",
volume = "5",
pages = "2155--2184",
number = "12",

}

Download

TY - JOUR

T1 - The rise of continuous flow biocatalysis-fundamentals, very recent developments and future perspectives

AU - De Santis, Piera

AU - Meyer, Lars-Erik

AU - Kara, Selin

N1 - Funding Information: Authors thank to Danmarks Frie Forskningsfond (DFF), Independent Research Fund Denmark (IRFD), PHOTOX-f project, grant agreement No 9063-00031B. The authors also thank video telecommunications for the possibility to stay in contact with colleagues and friends during the 2019–2020 COVID-19 pandemic. An ongoing discussion is crucial developing such a review paper.

PY - 2020/12

Y1 - 2020/12

N2 - Biocatalysis community has witnessed a drastic increase in the number of studies for the use of enzymes in continuously operated flow reactors. This significant interest arose from the possibility of combining the strengths of the two worlds: enhanced mass transfer and resource efficient synthesis achieved in flow chemistry at micro-scales and excellent selectivities obtained in biocatalysis. Within this review, we present very recent (from 2018 to September 2020) developments in the field of biocatalysis in continuously operated systems. Briefly, we describe the fundamentals of continuously operated reactors with a special focus on enzyme-catalyzed reactions. We devoted special attention on future perspectives in this key emerging technological area ranging from process analytical technologies to digitalization. This journal is

AB - Biocatalysis community has witnessed a drastic increase in the number of studies for the use of enzymes in continuously operated flow reactors. This significant interest arose from the possibility of combining the strengths of the two worlds: enhanced mass transfer and resource efficient synthesis achieved in flow chemistry at micro-scales and excellent selectivities obtained in biocatalysis. Within this review, we present very recent (from 2018 to September 2020) developments in the field of biocatalysis in continuously operated systems. Briefly, we describe the fundamentals of continuously operated reactors with a special focus on enzyme-catalyzed reactions. We devoted special attention on future perspectives in this key emerging technological area ranging from process analytical technologies to digitalization. This journal is

UR - http://www.scopus.com/inward/record.url?scp=85097001950&partnerID=8YFLogxK

U2 - 10.1039/d0re00335b

DO - 10.1039/d0re00335b

M3 - Article

AN - SCOPUS:85097001950

VL - 5

SP - 2155

EP - 2184

JO - Reaction Chemistry and Engineering

JF - Reaction Chemistry and Engineering

IS - 12

ER -