Eixenberger, D.; Kumar, A.; Klinger, S.; Scharnagl, N.; Dawood, A.W.H.; Liese, A.
Polymer-Grafted 3D-Printed Material for Enzyme Immobilization—Designing a Smart Enzyme Carrier. Catalysts 2023, 13, 1130.
https://doi.org/10.3390/catal13071130
AMA Style
Eixenberger D, Kumar A, Klinger S, Scharnagl N, Dawood AWH, Liese A.
Polymer-Grafted 3D-Printed Material for Enzyme Immobilization—Designing a Smart Enzyme Carrier. Catalysts. 2023; 13(7):1130.
https://doi.org/10.3390/catal13071130
Chicago/Turabian Style
Eixenberger, Daniela, Aditya Kumar, Saskia Klinger, Nico Scharnagl, Ayad W. H. Dawood, and Andreas Liese.
2023. "Polymer-Grafted 3D-Printed Material for Enzyme Immobilization—Designing a Smart Enzyme Carrier" Catalysts 13, no. 7: 1130.
https://doi.org/10.3390/catal13071130
APA Style
Eixenberger, D., Kumar, A., Klinger, S., Scharnagl, N., Dawood, A. W. H., & Liese, A.
(2023). Polymer-Grafted 3D-Printed Material for Enzyme Immobilization—Designing a Smart Enzyme Carrier. Catalysts, 13(7), 1130.
https://doi.org/10.3390/catal13071130