Produktbild: Mxene-Based Hybrid Nano-Architectures for Environmental Remediation and Sensor Applications

Mxene-Based Hybrid Nano-Architectures for Environmental Remediation and Sensor Applications From Design to Applications

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

19.01.2024

Herausgeber

Ram K. Gupta + weitere

Verlag

Elsevier

Seitenzahl

554

Maße (L/B)

23,5/19,1 cm

Gewicht

1130 g

Sprache

Englisch

ISBN

978-0-323-95515-7

Beschreibung

Portrait

Ram Gupta is a Professor in the Department of Chemistry at Pittsburg State University, Kansas, United States. His research focus is in green energy production and storage using nanomaterials, optoelectronics and photovoltaics devices, organic-inorganic heterojunctions for sensors, nanomagnetism, conducting polymers and composites as well as bio-based polymers, bio-compatible nanofibers for tissue regeneration, scaffold and antibacterial applications, and bio-degradable metallic implants.

Muhammad Bilal is working as an Associate Professor at the Faculty of Civil and Environmental Engineering, Gdansk University of Technology, Poland. Previously, he served as an assistant/associate Professor at Poznan University of Technology, Poland, and the School of Life Science and Food Engineering, Huaiyin Institute of Technology, Huaian, China. He earned his Ph.D. from Shanghai Jiao Tong University, specializing in bioengineering and applied biotechnology. His main research activities are oriented to Environmental biotechnology, nanotechnology, enzyme engineering, immobilization, chemical modifications, and industrial applications of microbial enzymes, liquid, and solid waste management. He has authored over 700 peer-reviewed articles, 150 book chapters, 25 edited books. Dr. Bilal is the associate editor of Frontiers in Chemical Engineering and Frontiers in Environmental Science (Frontiers), and an editorial board member for several journals. He was listed as a highly cited researcher (Clarivate) in 2021 and holds several "highly cited papers" in WOS.

Hafiz M.N. Iqbal is a Research Professor in the School of Engineering and Sciences at the Tecnológico de Monterrey, Mexico. His areas of research are biomaterials, bioengineering, biomedical engineering, environmental engineering, bioremediation, bio-catalysis, enzymes, immobilization, chemical engineering, green chemistry, algal biotechnology, and bioenergy.

Tuan Anh Nguyen is a Senior Principal Research Scientist at the Institute for Tropical Technology, Vietnam Academy of Science and Technology, Hanoi, Vietnam. He received a BS in physics from Hanoi University in 1992, a BS in economics from Hanoi National Economics University in 1997, and a PhD in chemistry from the Paris Diderot University, France, in 2003. He was a Visiting Scientist at Seoul National University, South Korea, in 2004, and the University of Wollongong, Australia, in 2005. He then worked as a Postdoctoral Research Associate and Research Scientist at Montana State University, United States in 2006-09. In 2012 he was appointed as the Head of the Microanalysis Department at the Institute for Tropical Technology. His research areas of interest include smart sensors, smart networks, smart hospitals, smart cities, complexiverse, and digital twins. He has edited more than 74 books for Elsevier, 12 books for CRC Press, 1 book for Springer, 1 book for RSC, and 2 books for IGI Global. He is the Editor-in-Chief of Kenkyu Journal of Nanotechnology & Nanoscience.

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

19.01.2024

Herausgeber

Verlag

Elsevier

Seitenzahl

554

Maße (L/B)

23,5/19,1 cm

Gewicht

1130 g

Sprache

Englisch

ISBN

978-0-323-95515-7

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Mxene-Based Hybrid Nano-Architectures for Environmental Remediation and Sensor Applications
  • Section 1: MXenes in environmental applications

    1. MXene-based hybrid nanoarchitectures: an introduction
    2. Synthesis of element-doped MXenes and MXene-based hybrid nanomaterials
    3. MXene-based hybrid nanomaterials for sequestration of radionuclides and toxic ions
    4. MXene-based hybrid nanomaterials for efficient removal of toxic heavy metals
    5. MXene-based nanomaterials for anticorrosion applications
    6. MXene-based nanomaterials to remove toxic heavy metals
    7. MXene-based hybrid nanomaterials for the removal of pharmaceutical-based pollutants
    8. MXene-based hybrid nanomaterials in photocatalysis
    9. MXene-based hybrid nanomaterials to remove toxic metals
    10. MXenes for removal of pharmaceutical compounds from wastewater
    11. MXenes for CO2 reduction: a promising choice
    12. Removal of inorganic pollutants using MXene-based hybrid nanomaterials

    Section 2: Mxenes in sensing applications

    13. MXenes for sensors
    14. MXenes based hybrid electrochemical sensors for cancer diagnostics
    15. MXene-based hybrid nanomaterials for gas sensing applications
    16. MXene-based hybrid biosensors
    17. MXene-based electrochemical sensors
    18. MXene-based hybrid nanostructures for strain sensors
    19. Mxenes-based hybrid electrochemical sensors

    Section 3: Mxenes in energy application

    20. MXene for green energy: an introduction
    21. MXene-based electrodes for hybrid supercapacitor devices
    22. MXene-based hybrid nanomaterials for nitrogen reduction reaction
    23. Challenges and future prospects of MXenes