Vai al contenuto principale della pagina

Nanosensor Technologies for Environmental Monitoring [[electronic resource] /] / edited by Inamuddin, Abdullah M. Asiri



(Visualizza in formato marc)    (Visualizza in BIBFRAME)

Titolo: Nanosensor Technologies for Environmental Monitoring [[electronic resource] /] / edited by Inamuddin, Abdullah M. Asiri Visualizza cluster
Pubblicazione: Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Edizione: 1st ed. 2020.
Descrizione fisica: 1 online resource (X, 529 p. 141 illus., 91 illus. in color.)
Disciplina: 621.381536
Soggetto topico: Plant breeding
Nanotechnology
Environmental engineering
Biotechnology
Agriculture
Green chemistry
Plant Breeding/Biotechnology
Environmental Engineering/Biotechnology
Green Chemistry
Nanotecnologia
Enginyeria ambiental
Soggetto genere / forma: Llibres electrònics
Persona (resp. second.): Inamuddin
AsiriAbdullah M
Note generali: Includes index.
Nota di contenuto: Preface -- Recent Advances in Electrochemical Sensor and Biosensors for Environmental Contaminants -- Research Insights on the Development of Biosensors -- Toxic Gas Sensors and Biosensors -- Biosensors Used for Monitoring Environmental Contaminants -- Screen Printed Electrochemical Sensors for Environmental Contaminants -- Sensors and Biosensors for Environmental Contaminants -- Green Synthesis of (Nano)Materials for (Bio)Sensing -- Green Synthesis of Plasmonic Metal Nanoparticles and Their Application of Environmental Contaminants -- Ionic Liquids Modified Sensors and Biosensors for Detection of Environmental Contaminants -- Nano-Biosensors for Detection of Phenolic Compounds -- Noble Metal: Metal Oxide Hybrid Nanoparticles for SERS-Based Sensors -- Molecularly Imprinted Nanosensors for Microbial Contaminants -- Nanomaterials as Toxic Gas Sensors and Biosensors -- Flexible Substrate-Based Sensors in Healthcare and Biosensing Applications -- Lab-On-A-Chip Devises for Water Quality Monitoring -- Advanced Nanostructure-Based Electrochemical Sensors for Pharmaceutical Drug Detection -- Green Sensors for Environmental Contaminants -- Bibliography -- Index.
Sommario/riassunto: Advanced materials and nanotechnology is a promising, emerging field involving the use of nanoparticles to facilitate the detection of various physical and chemical parameters, including temperature, humidity, pH, metal ion, anion, small organic or inorganic molecules, gases, and biomolecules responsible for environmental issues that can lead to diseases like cancer, diabetes, osteoarthritis, bacterial infections, and brain, retinal, and cardiovascular diseases. By monitoring environmental samples and detecting these environmental issues, advanced nanotechnology in this type of sensory technology is able to improve daily quality of life. Although these sensors are commercially available for the detection of monovalent cations, anions, gases, volatile organic molecules, heavy metal ions, and toxic metal ions, many existing models require significant power and lack advanced technology for more quality selectivity and sensitivity. There is room in these sensors to optimize their selectivity, reversibility, on/off ratio, response time, and their environmental stability in real-world operating conditions. This book explores the methods for the development and design of environmentally-friendly, simple, reliable, and cost effective electrochemical nanosensors using powerful nanostructured materials. More specifically, it highlights the use of various electrochemical-based biosensor sensors involved in the detection of monovalent cations, anions, gases, volatile organic molecules, heavy metal ions, and toxic metal ions, with the ultimate goal of seeing these technologies reach market.
Titolo autorizzato: Nanosensor Technologies for Environmental Monitoring  Visualizza cluster
ISBN: 3-030-45116-X
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910416107803321
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Serie: Nanotechnology in the Life Sciences, . 2523-8027