Enzyme Nanoarchitectures: Enzymes Armored with Graphene | Buch | 978-0-12-815240-9 | sack.de

Buch, Englisch, 419 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 910 g

Enzyme Nanoarchitectures: Enzymes Armored with Graphene


Erscheinungsjahr 2018
ISBN: 978-0-12-815240-9
Verlag: William Andrew Publishing

Buch, Englisch, 419 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 910 g

ISBN: 978-0-12-815240-9
Verlag: William Andrew Publishing


Enzymes Conjugated to Graphene, Volume 609 in the Methods in Enzymology series, highlights new advances in the field, with this new volume presenting interesting chapters on Enzyme immobilization, Detection of Urea, Enzyme immobilization Enzyme immobilization, PAMAM dendrimer modified reduced graphene oxide post functionalized by horseradish peroxidase for biosensing H2O2, HRP immobilized for LEV detection, Enzyme immobilization, Graphene biocatalysts, Enzyme immobilization, Interactions, Enzyme immobilization, GQD, Enzyme Immobilization, and Enzyme immobilization on functionalized graphene oxide nanosheets.
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Zielgruppe


Addressed at all specialists in the field of Enzymology.

Weitere Infos & Material


1. Interlocking Enzymes in Graphene-Coated Cellulose Paper for Increased Enzymatic Efficiency Melissa R. Limbacher, Megan K. Puglia, Caterina M. Riccardi and Challa V. Kumar 2. Enzyme Multilayers on Graphene-Based FETs for Biosensing Applications Christina Bliem, Esteban Piccinini, Wolfgang Knoll and Omar Azzaroni 3. Stabilization of Laccase Through Immobilization on Functionalized GO-Derivatives Alexandra V. Chatzikonstantinou, Elena Gkantzou, Dimitrios Gournis, Michaela Patila and Haralambos Stamatis 4. Synthesis, Characterization, and Applications of Nanographene-Armored Enzymes Maryam Khan, Qayyum Husain and Shamoon Asmat 5. PAMAM Dendrimer Modified Reduced Graphene Oxide Postfunctionalized by Horseradish Peroxidase for Biosensing H2O2 Sheela Berchmans, Manju Venkatesan, Chirnajeevi Srinivasa Rao Vusa and Palaniappan Arumugam 6. Preparation, Characterization, and Application of Enzyme Nanoparticles Neelam Yadav, Jagriti Narang, Anil Kumar Chhillar and Chandra S. Pundir 7. Encapsulation of Microorganisms, Enzymes, and Redox Mediators in Graphene Oxide and Reduced Graphene Oxide Orr Schlesinger and Lital Alfonta 8. Chemical and Biochemical Approach to Make a Perfect Biocatalytic System on Carbonaceous Matrices Paulina Bolibok, Katarzyna Roszek and Marek Wisniewski 9. Immobilization of a Mesophilic Lipase on Graphene Oxide: Stability, Activity, and Reusability Insights Nalok Dutta and Malay K. Saha 10. A Simple Flow Reactor for Continuous Synthesis of Biographene for Enzymology Studies Megan K. Puglia, Murali Anuganti, Yao Lin and Challa V. Kumar 11. Enzymes-Graphene Platforms for Electrochemical Biosensors Design With Biomedical Applications Luminita Fritea, Mihaela Tertis, Robert Sandulescu and Cecilia Cristea 12. Graphene Quantum Dots: Synthesis and Applications Ankarao Kalluri, Debika Debnath, Bhushan Dharmadhikari and Prabir Patra 13. Shielding of Enzyme on the Surface of Graphene-Based Composite Cellular Foams Through Bioinspired Mineralization Yiying Sun, Jingjing Zhao, Jiafu Shi, Shaohua Zhang and Zhongyi Jiang 14. Enzyme Immobilization on Functionalized Graphene Oxide Nanosheets: Efficient and Robust Biocatalysts Asieh Soozanipour and Asghar Taheri-Kafrani


Kumar, Challa Vijaya
Challa Vijaya Kumar, PhD is a senior professor at the University of Connecticut and has more than 40 years of research experience in interdisciplinary research areas including biological chemistry, physical chemistry, organic chemistry, photochemistry, biochemistry and material chemistry. He has more than 158 peer-reviewed publications and several book chapters in internationally reputed journals. He has been actively working in the area of bio-related two-dimensional materials for nearly 25 years and has published 10 papers on graphene related topics in the last 3 years. More importantly, his research lab pioneered the synthesis of graphene in aqueous conditions using proteins as exfoliating agents.


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