Close Menu
  • Home
  • AI
  • Big Data
  • Cloud Computing
  • iOS Development
  • IoT
  • IT/ Cybersecurity
  • Tech
    • Nanotechnology
    • Green Technology
    • Apple
    • Software Development
    • Software Engineering

Subscribe to Updates

Get the latest technology news from Bigteetechhub about IT, Cybersecurity and Big Data.

    What's Hot

    android – Can’t show or schedule notification with flutter workmanager

    January 26, 2026

    How Teams Using Multi-Model AI Reduced Risk Without Slowing Innovation

    January 26, 2026

    A deep dive into Apple’s AI strategy reset, as it prepares to announce a Gemini-powered personalized Siri next month and a reimagined chatbot-like Siri at WWDC (Mark Gurman/Bloomberg)

    January 25, 2026
    Facebook X (Twitter) Instagram
    Facebook X (Twitter) Instagram
    Big Tee Tech Hub
    • Home
    • AI
    • Big Data
    • Cloud Computing
    • iOS Development
    • IoT
    • IT/ Cybersecurity
    • Tech
      • Nanotechnology
      • Green Technology
      • Apple
      • Software Development
      • Software Engineering
    Big Tee Tech Hub
    Home»Nanotechnology»Complementary Chemical Adsorption of Iodine Species on MXene/Carboxylated CNTs for High Loading Zinc-Iodine Batteries
    Nanotechnology

    Complementary Chemical Adsorption of Iodine Species on MXene/Carboxylated CNTs for High Loading Zinc-Iodine Batteries

    big tee tech hubBy big tee tech hubNovember 9, 2025012 Mins Read
    Share Facebook Twitter Pinterest Copy Link LinkedIn Tumblr Email Telegram WhatsApp
    Follow Us
    Google News Flipboard
    Complementary Chemical Adsorption of Iodine Species on MXene/Carboxylated CNTs for High Loading Zinc-Iodine Batteries
    Share
    Facebook Twitter LinkedIn Pinterest Email Copy Link


    Zinc-iodine rechargeable batteries offer inherent safety and abundant reserves, making them promising for energy storage applications. However, the poor interfacial stability of the zinc anode and the shuttle effect, both caused by the diffusion of soluble polyiodides in aqueous media, significantly compromise device stability, especially at high mass loadings. This work proposes a complementary chemical adsorption strategy to achieve high-loading zinc-iodine batteries, utilizing a composite material of Ti3C2Tx MXene and carboxylated multi-walled carbon nanotubes (c-MCNTs) as an iodine carrier. Carboxylated multi-walled carbon nanotubes (c-MCNTs) form C-I bonds with initial I- ions through chemical interactions, while Ti3C2Tx MXene effectively chemically adsorbs the byproduct I3- ions formed during charging and discharging, enabling the adsorption of a substantial amount of iodine species. Therefore, even at a high areal mass loading of 33.27 mg cm-2, the prepared zinc-iodine battery delivers a high areal capacity of 2.82 mAh cm-2 at a current density of 5 mA cm-2, surpassing most previously reported zinc-iodine batteries, while maintaining excellent cycling stability with a capacity retention of 99.04% after 300 cycles. Moreover, it exhibits outstanding rate performance, retaining an areal capacity of 1.52 mAh cm-2 even at a high current density of 50 mA cm-2. This strategy is also potentially extendable to the design of other high-loading metal-iodine batteries.


    You have access to this article


    Complementary Chemical Adsorption of Iodine Species on MXene/Carboxylated CNTs for High Loading Zinc-Iodine Batteries
    Please wait while we load your content…


    Something went wrong. Try again?



    Source link

    Adsorption Batteries Chemical CNTs complementary High Iodine loading MXeneCarboxylated Species ZincIodine
    Follow on Google News Follow on Flipboard
    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email Copy Link
    tonirufai
    big tee tech hub
    • Website

    Related Posts

    Non-Abelian anyons: anything but easy

    January 25, 2026

    Nanomaterials Transformed by Engineering Shape, Not Chemistry

    January 24, 2026

    Surface-enhanced thermal dissipation in 3D vertical resistive memory arrays with top selector transistors

    January 23, 2026
    Add A Comment
    Leave A Reply Cancel Reply

    Editors Picks

    android – Can’t show or schedule notification with flutter workmanager

    January 26, 2026

    How Teams Using Multi-Model AI Reduced Risk Without Slowing Innovation

    January 26, 2026

    A deep dive into Apple’s AI strategy reset, as it prepares to announce a Gemini-powered personalized Siri next month and a reimagined chatbot-like Siri at WWDC (Mark Gurman/Bloomberg)

    January 25, 2026

    European Space Agency’s cybersecurity in freefall as yet another breach exposes spacecraft and mission data

    January 25, 2026
    About Us
    About Us

    Welcome To big tee tech hub. Big tee tech hub is a Professional seo tools Platform. Here we will provide you only interesting content, which you will like very much. We’re dedicated to providing you the best of seo tools, with a focus on dependability and tools. We’re working to turn our passion for seo tools into a booming online website. We hope you enjoy our seo tools as much as we enjoy offering them to you.

    Don't Miss!

    android – Can’t show or schedule notification with flutter workmanager

    January 26, 2026

    How Teams Using Multi-Model AI Reduced Risk Without Slowing Innovation

    January 26, 2026

    Subscribe to Updates

    Get the latest technology news from Bigteetechhub about IT, Cybersecurity and Big Data.

      • About Us
      • Contact Us
      • Disclaimer
      • Privacy Policy
      • Terms and Conditions
      © 2026 bigteetechhub.All Right Reserved

      Type above and press Enter to search. Press Esc to cancel.