Surfaces based on amino acid functionalized polyelectrolyte films towards active surfaces for enzyme immobilization
Journal
Materials Science and Engineering: C
ISSN
0928-4931
Date Issued
2019
Author(s)
XIMENA GABRIELA BRIONES OLARAN
Valeria Villalobos
Yves Queneau
Caroline Silva Danna
Rodrigo Muñoz
Hernán E. Ríos
Jorge Pavez
Maritza Páez
Ricardo Cabrera
Laura Tamayo
Marcela D. Urzúa
Type
Resource Types::text::journal::journal article
URL Institutional Repository
Cite this document
Briones, X., Villalobos, V., Queneau, Y., Danna, C. S., Muñoz, R., Ríos, H. E., Pavez, J., Páez, M., Cabrera, R., Tamayo, L., & Urzúa, M. D. (2019). Surfaces based on amino acid functionalized polyelectrolyte films towards active surfaces for enzyme immobilization. Materials Science and Engineering: C, 104, 109938. https://doi.org/10.1016/j.msec.2019.109938
Subjects
polyelectrolytes
;
amino acid functionalization
;
enzyme adsorption
;
glucose 6-phosphate dehydrogenase
;
surfaces
;
adsorption
;
amino acids
;
carbon-13 magnetic resonance spectroscopy
;
enzymes, immobilized
;
glucosephosphate dehydrogenase
;
leuconostoc
;
nad
;
polyelectrolytes
;
spectroscopy, fourier transform infrared
;
wettability
;
adsorption
;
atomic force microscopy
;
catalyst activity
;
contact angle
;
enzyme activity
;
enzyme immobilization
;
film preparation
;
glucose
;
hydrophobicity
;
ionic strength
;
polyelectrolytes
;
polymer films
;
silicon wafers
;
surfaces
;
amino acid
;
glucose 6 phosphate dehydrogenase
;
immobilized enzyme
;
nicotinamide adenine dinucleotide
;
polyelectrolyte
;
chemical functionality
;
enzyme adsorption
;
functionalizations
;
high ionic strength
;
leuconostoc mesenteroides
;
low ionic strength
;
polyelectrolyte films
;
specific activity
;
adsorption
;
biosynthesis
;
carbon nuclear magnetic resonance
;
chemistry
;
enzymology
;
infrared spectroscopy
;
leuconostoc
;
metabolism
;
wettability
;
amino acids