• Register
  • Login

European Journal of Molecular & Clinical Medicine

  • Home
  • Browse
    • Current Issue
    • By Issue
    • By Subject
    • Keyword Index
    • Author Index
    • Indexing Databases XML
  • Journal Info
    • About Journal
    • Aims and Scope
    • Editorial Board
    • Publication Ethics
    • Indexing and Abstracting
    • Peer Review Process
    • News
  • Guide for Authors
  • Submit Manuscript
  • Contact Us
Advanced Search

Notice

As part of Open Journals’ initiatives, we create website for scholarly open access journals. If you are responsible for this journal and would like to know more about how to use the editorial system, please visit our website at https://ejournalplus.com or
send us an email to info@ejournalplus.com

We will contact you soon

  1. Home
  2. Volume 9, Issue 8
  3. Author

Online ISSN: 2515-8260

Volume9, Issue8

Employment of Nanolignin in Energy Storage Devices

    Reeya Agarwal, Eatedal Alabdulkreem, Romany F. Mansour .

European Journal of Molecular & Clinical Medicine, 2022, Volume 9, Issue 8, Pages 2986-3019

  • Show Article
  • Download
  • Cite
  • Statistics
  • Share

Abstract

 In recent years, there has been a lot of focus on renewable energy storage devices as scientists attempt to optimize their performance. This paper delves into how research into nanolignin materials over the past few decades has aided in advancing energy storage devices because of nanolignin's good qualities (cheap cost, high availability, and lack of toxicity). This paper discusses the advantages and disadvantages of using nanolignin as a battery material. This paper begins with a review of state of the art in energy storage, lithium-ion battery fundamentals (including anodes, cathodes, and electrolytes), and nanolignin materials. A modification to increase the stability of energy storage and a case study of the Kraft nanolignin-carbon composite as a green cathode material is offered to illustrate the concept. In the following section, we discussed how oxidizing Kraft nanolignin yields cathode materials. Lastly, the study provides a high-level summary of the current state of the field, an analysis of the most urgent difficulties, and recommendations for future research into nanolignin-based energy storage devices.
Keywords:
  • PDF (1056 K)
  • XML
(2023). Employment of Nanolignin in Energy Storage Devices. European Journal of Molecular & Clinical Medicine, 9(8), 2986-3019.
Reeya Agarwal, Eatedal Alabdulkreem, Romany F. Mansour .. "Employment of Nanolignin in Energy Storage Devices". European Journal of Molecular & Clinical Medicine, 9, 8, 2023, 2986-3019.
(2023). 'Employment of Nanolignin in Energy Storage Devices', European Journal of Molecular & Clinical Medicine, 9(8), pp. 2986-3019.
Employment of Nanolignin in Energy Storage Devices. European Journal of Molecular & Clinical Medicine, 2023; 9(8): 2986-3019.
  • RIS
  • EndNote
  • BibTeX
  • APA
  • MLA
  • Harvard
  • Vancouver
  • Article View: 10
  • PDF Download: 13
  • LinkedIn
  • Twitter
  • Facebook
  • Google
  • Telegram
Journal Information

Publisher:

Email:  editor.ejmcm21@gmail.com

  • Home
  • Glossary
  • News
  • Aims and Scope
  • Privacy Policy
  • Sitemap

 

For Special Issue Proposal : editor.ejmcm21@gmail.com

This journal is licensed under a Creative Commons Attribution 4.0 International (CC-BY 4.0)

Powered by eJournalPlus