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Advanced Applications of Ionic Liquids

Langue : Anglais

Coordonnateurs : Akhter Siddique Jamal, Ansari Shahid Pervez, Khan Aftab Aslam Parwaz, Asiri Abdullah M.

Couverture de l’ouvrage Advanced Applications of Ionic Liquids

Advanced Applications of Ionic Liquids discusses the intersection of nanotechnology with ionic liquids (ILs) and materials, along with opportunities for advanced engineering applications in various research fields. Novel materials at nano scales with ILs creates an upsurge in the thermal and electrochemical constancy of the nano scale particles, making them ideal for industrial applications. The implementation of ILs at nano scale includes an interaction of constituents, which is beneficial for electron transfer reactions. These new composites can be implemented as sensors, electronics, catalysts and photonics. Including ILs in polymer composites enhance electrochemical consistency, govern particle size, upsurge conductivity, reduce toxicity, and more.

This book is a comprehensive reference for researchers working with IL based technologies for environmental and energy applications.

Catalysis and Electrochemistry 1. Progression of Ionic liquids in the field of Electrochemical Research 2. Enhanced and suppressed impact of ionic liquid in catalysis/Photo-catalysis reactions 3. Current trends of ionic liquids in electrochemical devices and its application 4. Green Chemistry of Ionic liquids in surface electrochemistry

Synthesis Applications 5. An evolution in electrochemical and chemical synthesis applications in prospects of ionic liquids 6. Recent Changes by ionic liquids in synthesis of inorganic nanocomposites and Applications 7. Advancement of synthesis of metal-organic frameworks applications with ionic liquids 8. An Ionic Liquids: Boon in synthesis and applications of carbon-based materials

Separation Technology 9. Ionic liquids a valuable assets in extraction techniques 10. An involvement of Ionic Liquids in recent advancement of technologies in chemical industries 11. Role of Ionic liquid in bioactive compounds extraction and Application

Sensors and Biosensors 12. Developments in gas sensing applications before and after Ionic Liquids 13. Ionic liquids A tool for CO2 capture and reduced emission 14. Advances study in ionic liquid-based Sensors and Biosensors

Electronic Applications 15. Applications of ionic liquids in fuel cells and super-capacitors 16. Role of polymeric ionic liquids in rechargeable batteries 17. Role and importance of ionic liquids in energy storage and conservation 18. Progress in optoelectronic applications of ionic liquids Miscellaneous Applications19. Importance of ionic liquids in chemical engineering 20. Ionic liquids in metrological analysis and applications 21. Biotechnology and Biochemistry Applications of in the frame of Ionic Liquids

Future Applications and Studies 22. Current and future prospects of ionic liquid and space technologies 23. Progressive function of Ionic Liquids in Polymer Chemistry 24. Current and future aspects of Ionic liquids in Advance applications 25. Potential hazards of ionic liquids: A word of caution

Jamal Akhter Siddique is an Associate Professor at the School of Basic and Applied Sciences (SBAS), Lingayas University, India. He successfully completed multiple Postdoctoral Research tenures around the globe in renowned universities. He earned his Ph.D on “Physico-chemical studies of biological/biochemical systems” in 2007 from the Department of Chemistry, Aligarh Muslim University. Apart from direct involvement in research he has also contributed his experience to multiple journals as editorial member and worked as a Guest-Editor for a Special Issue entitled “Nanostructure Materials as a Promising Route for Efficient Renewable Energy Production, Storage, and Conversion”, Journal of Nanomaterials; as a Guest-Editor for a Special Issue entitled “Academic Research for Multidiscipline” in International Journal of Science Technology and Society; and as an Assistant-Editor for Journal of Medical Imaging and Health Informatics.
Prior to joining AMU, Dr. Ansari worked as researcher at the Umm Al Qura University, Makkah, Kingdom of Saudi Arabia. He co-authored one textbook “Faiz’s Polymer Chemistry: A problem solving approach”. He has contributed several chapters in books published by Elsevier, Springer, Wiley. He has also published several research papers in the field of conducting polymers, nanocomposites, and photocatalysis in journals of high repute. He has been granted one patent in India. Dr. Ansari obtained his PhD in Applied Chemistry in 2011 and presently, he is engaged in teaching of M.Sc (Polymer Science and Technology) and B.Tech. students.
Dr. Aftab Aslam Parwaz Khan is presently working as an Assistant Professor in the Center of Excellence for Advanced Materials Research, King Abdulaziz University, Jeddah, Kingdom of Saudi Arabia. He earned his Ph.D. in Chemistry from Aligarh Muslim University, Aligarh, India in 2011. He has authored 3 books, 15 chapters and more than 130 research papers published in journals of international repute. He is also an Edi
  • Covers all industrial aspects and advanced applications of ionic liquids (ILs)
  • Discusses the advanced applications of ILs across multiple fields, including industrial chemistry and chemical engineering
  • Includes a discussion of the use of ionic liquids in functional polymers, with applications for catalysis, energy conservation, sensors, and more

Date de parution :

Ouvrage de 568 p.

15.2x22.8 cm

Disponible chez l'éditeur (délai d'approvisionnement : 14 jours).

220,63 €

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Thème d’Advanced Applications of Ionic Liquids :

Mots-clés :

?Absorption; Adsorption; Aluminum; Ammonia sensor; Antimicrobial activities; Applications; Aprotic ionic liquids; Aqueous amines; Aqueous biphasic system; Bioactive natural products; Biomolecules; CO2 capture; Carbon dioxide sensors; Carbon ionic liquid electrode; Chemical synthesis; Chemical warfare agents; Conductivity; Copper; Corrosion; DSSCs; Deep eutectic solvents; Doping; Electrochemical analysis; Electrochemical devices; Electrochemical sensors; Electrochemical synthesis; Electrochemistry; Electrodeposition; Electrolyte; Electropolymerization; Electroredox; Energy storage; Environmental protection; Extraction; Extraction technique; Flammable; Food materials; Fuel cell; Functional polymer; Gas sensors; Gram-negative; Gram-positive; Green chemistry; Green solvents; Green synthesis; Hazardous; Heavy metals; Herbals; Hybrid materials; ILs application; Imidazolium; Inhibitors; Inorganic nanomaterials; Ionic conductivity; Ionic liquid; Ionic liquid-polymer composite; Ionic liquids; Li-ion battery; Media; Membranes; Metrological parameters; Nanomaterials; Nanoparticles; Natural products; Optical gas sensors; Optoelectronic; Organic pollutants; Organic solvents; Oxygen sensors; Pharmaceuticals; Poly (ILs); Polymer; Polymer electrolyte; Protectors; Protein stability; Pyrrolidinium; Quartz crystal microbalance; Rare earth metals; Reaction mechanism; Room-temperature ionic liquids; Sensor; Separation and purification; Silver nanoparticles; Soil organic matters; Solubility; Stability; Supercapacitor; Surface electrochemistry; Sustainability; Synthesis methods; Tetraalkyl ammonium; Toxicity; VOC sensors; Volatility