Advances in biotechnological synthetic applications of carbon nanostructured systems
Author:
Affiliation:
1. Department of Biological and Ecological Sciences (DEB)
2. University of Tuscia
3. 01100 Viterbo
4. Italy
5. Department of Physical and Chemical Sciences
6. University of L'Aquila
7. I-67100 Coppito (AQ)
Abstract
Immobilization of carbonic anhydrase on SWCNTs by application of the CNT binding peptide (CBP) strategy.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Materials Science,Biomedical Engineering,General Chemistry,General Medicine
Link
http://pubs.rsc.org/en/content/articlepdf/2017/TB/C7TB00764G
Reference201 articles.
1. Nanostructures for enzyme stabilization
2. Fabrication of Protein/Silica Core-Shell Nanoparticles by Microemulsion-Based Molecular Wrapping
3. Single enzyme nanoparticles in nanoporous silica: A hierarchical approach to enzyme stabilization and immobilization
4. Simple Synthesis of Hierarchically Ordered Mesocellular Mesoporous Silica Materials Hosting Crosslinked Enzyme Aggregates
5. Improving Biocatalytic Activity of Enzyme-Loaded Nanofibers by Dispersing Entangled Nanofiber Structure
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