• Fri frakt över 249 kr
  • •
  • Snabba leveranser
  • •
  • Billiga böcker
Kundservice

Du är på sajten för privatpersoner.

Företag, bibliotek eller offentlig verksamhet?

Du handlar på classic.bokus.com, där alla dina funktioner finns intakta.
Till classic.bokus.com
Bokus logotyp. Gå till startsidan.
  • Erbjudanden
  • Nyheter
  • Student
  • Topplistor
  • Barn & ungdom
  • Bokus Play
  • E-böcker
  • Pocketböcker
  • Spel & pussel

10% rabatt på allt med kod NYSTART10 →

Sidfot

Mina sidor

    Hjälp

    • Kundservice
    • Vanliga frågor och svar
    • Frakt och leverans
    • Retur vid ångerrätt
    • Reklamera vara
    • Betalning
    • Köpvillkor
    • Allmänna villkor
    • Information om webbplatsens tillgänglighet

    Om Bokus

    • Om oss
    • Pressrum
    • För studenter
    • För företag
    • För bibliotek och offentlig verksamhet
    • För leverantörer
    • Hållbarhet

    Populärt

    • Aktuella erbjudanden
    • Presentkort
    • Studentlitteratur
    • Nya böcker
    • Topplistor
    • Signerade böcker
    • Engelska böcker

    Inspiration

    • Boktips
    • BookTok
    • Populära bokserier
    • Barnbokskaraktärer
    • Populära författare
    Logotyp för Bokus
    Följ oss på Facebook (extern länk)Följ oss på Instagram (extern länk)Följ oss på YouTube (extern länk)Följ oss på TikTok (extern länk)
    bokus @ CookiesAnpassa cookiesIntegritetspolicyKöpvillkor
    Till Citymail hemsida (extern länk)Till Budbee hemsida (extern länk)Till Postnord hemsida (extern länk)Till Schenker hemsida (extern länk)Till Early Bird hemsida (extern länk)Till Walleys hemsida (extern länk)
    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Kemi
    4. Fysikalisk kemi

    Hybrid Nanostructures for Advanced Supercapacitors

    AvKumar Raju,Charl J. Jafta

    Inbunden, Engelska, 2026

    Del 63 i serien Modern Aspects of Electrochemistry

    1 949 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    This contributed volume overviews the advancements in supercapacitor technology, highlighting the role of hybrid nanostructures in enhancing charge storage capabilities and their applications in transportation, electronics, and renewable energy. It addresses fundamental material design and hybrid architecture formation and explores critical challenges associated with these technologies. The book includes clear experimental procedures for synthesizing different nano-hybrid structures, and it also covers testing methods for various types of supercapacitors, including electrical double-layer capacitors and hybrid devices. Additionally, it discusses various charge storage mechanisms and configurations for capacitor assemblies, providing valuable insights for improving energy density. The intended audience includes researchers, graduate students, and professionals in materials science, energy storage, and related fields.

    Produktinformation

    • Utgivningsdatum:2026-01-08
    • Mått:155 x 235 x 28 mm
    • Vikt:887 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Modern Aspects of Electrochemistry
    • Antal sidor:422
    • Förlag:Springer Nature Switzerland AG
    • ISBN:9783032045928

    Utforska kategorier

    • Fysikalisk kemi inom Naturvetenskap och teknik
    • Teknik: allmänt inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Kumar Raju is a Faraday Institution Research Fellow at the Institute for Manufacturing, Department of Engineering, University of Cambridge, United Kingdom. His academic journey commenced with his doctoral research at the University of Madras, postdoctoral work at Hanyang University, South Korea, and subsequent tenure as a Senior Research Scientist at the Energy Centre, Council for Scientific and Industrial Research (CSIR), South Africa. His current research focuses on processing advanced cathode materials, encompassing the development of innovative methods for structuring electrode materials and studying their processing into advanced electrodes for batteries and supercapacitors.Charl J. Jafta is a Senior Electrochemist at BASF, Beachwood, Ohio, USA, specialising in cathode materials. He had previously a brief tenure at NOVONIX Anode Materials in Chattanooga, Tennessee, where he improved the manufacturing of anode materials. He has also been a Research and Development Associate in the Electrification and Energy Infrastructure Division at Oak Ridge National Laboratory, focussing on developing solid-state lithium-ion batteries. He has also done postdoctoral work at Helmholtz-Zentrum Berlin, where he developed cells to characterise lithium-sulfur batteries by small-angle neutron scattering. He obtained his PhD from the Physics Department at the University of Pretoria, South Africa, where he developed synthetic methods to control the manganese valence states of high-voltage and high-capacity cathodes. He also researched the conversion of locally mined electrolytic manganese dioxide to nano-sized MnO2 for supercapacitors. He has published over 100 publications, two book chapters, and filed two patents.Eric Lichtfouse is a Distinguished Talent Professor at the International Research Center for Renewable Energy, State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, China. He is teaching environmental chemistry and scientific writing and is the Chief Editor of the Journal Environmental Chemistry Letters. He graduated with a Bachelor and a Master of Science in Organic Chemistry from Claude Bernard University, Lyon, and a PhD Thesis in Organic Geochemistry from Louis Pasteur University, Strasbourg, in 1989. After post-doctoral positions at Indiana University, USA, in 1990, and the KFA Juelich Research Center, in 1992, he did molecular and isotopic research on carbon and contaminants in soils, waters, plants and the atmosphere at Pierre and Marie Curie University, Nancy University, Bourgogne University, and Aix-Marseille University. He invented carbon 13-relative dating and discovered molecular temporal pools in environmental media, thus opening the discipline of single-sample molecular chronology.

    Innehållsförteckning

    • Hybrid Supercapacitors.- Hybrid Nanostructures in High Energy Density Supercapacitors.- Hybrid Nanostructures with Conducting Polymers for High-Performance Supercapacitors.- Graphene-Metal Oxide Hybrid Nanostructures for High-Performance Supercapacitors.- Nanostructures in Hybrid Lithium and Sodium-Ion Capacitors.- Nanohybrid Materials in Flexible and Wearable Supercapacitors.- Polymer-based Hybrid Nanostructures for Supercapacitors.- Hybrid Nanocomposite Materials for Supercapacitor Applications.- Advanced Nanostructured Materials for Hybrid Lithium- and Sodium-Ion Capacitors.- Computational Modeling of Nanomaterials for Advanced Supercapacitors.