Close Menu
    Facebook X (Twitter) Instagram
    SciTechDaily
    • Biology
    • Chemistry
    • Earth
    • Health
    • Physics
    • Science
    • Space
    • Technology
    Facebook X (Twitter) Pinterest YouTube RSS
    SciTechDaily
    Home»Technology»The Dendrite Dilemma: New Research Could Overcome Limits of Lithium Batteries
    Technology

    The Dendrite Dilemma: New Research Could Overcome Limits of Lithium Batteries

    By Tata Institute of Fundamental ResearchMarch 29, 2024No Comments3 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn WhatsApp Email Reddit
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email Reddit
    Advanced Battery Artist Concept
    A new method developed by TIFRH researchers significantly improves lithium metal battery safety and longevity by modifying the separator membrane to suppress dendrite growth. This scalable, cost-effective approach faces challenges at high current densities, promising further advancements in battery technology.

    Lithium metal batteries (LMBs) can provide nearly 10 times higher energy density compared to the present Lithium-ion batteries (LIBs) and hence are identified as one of the potential future storage systems. However, LMBs pose certain safety concerns and cannot be used for fast-charging applications. Uncontrolled dendrite formation, leading to excessive heating and battery short circuit is one of the critical challenges of its advancement.

    Researchers have previously attempted to address the safety concerns in LMBs but with methods that were laboursome and money/time intensive. T. N. Narayanan’s lab at the Tata Institute of Fundamental Research, Hyderabad (TIFRH) reports a simple, scalable, cost-effective method to assemble a safer and more durable lithium metal battery.

    Preeti Yadav
    Preeti Yadav (author) holding a glowing red LED (3V) powered by the modified separator-based lithium metal battery. Credit: Dr. Pallavi Thakur and Prof. T. N. Narayanan

    A porous separator membrane lies between the electrodes in a battery, keeping them apart, and is crucial to prevent a short circuit. When a battery is used for some time, tree-like structures or whiskers called dendrites begin to form on one of the electrodes. If these dendrites grow uncontrollably, they may in some sense become a physical bridge between the two electrodes causing a short circuit. Preeti Yadav and Pallavi Thakur, graduate students and lead authors of the study, used a commonly available graphite derivative powder to modify the separator membrane used in a typical battery. This modification suppresses dendrite formation and improves the longevity of the battery to a large extent. The researchers propose that this method of separator modification holds immense potential to be scaled up for industrial usage.

    However, at a very high current density of 10 mA cm-2, the battery seems to be deteriorating slowly. This could be because of the electroplating of lithium on the carbon (a component of the deposited graphite derivative layer). The researchers aim to investigate these challenges further and understand the role of interfaces in improving the performance of a battery from a fundamental standpoint.

    Reference: “High Rate, Dendrite Free Lithium Metal Batteries of Extended Cyclability via a Scalable Separator Modification Approach” by Preeti Yadav, Pallavi Thakur, Dipak Maity and Tharangattu N. Narayanan, 12 December 2023, Small.
    DOI: 10.1002/smll.202308344

    The study was funded by the Tata Institute of Fundamental Research Hyderabad.

    Never miss a breakthrough: Join the SciTechDaily newsletter.
    Follow us on Google and Google News.

    Battery Technology Energy Tata Institute of Fundamental Research
    Share. Facebook Twitter Pinterest LinkedIn Email Reddit

    Related Articles

    Rival Emerges to Lithium-Ion Batteries: New Potassium Metal Technology

    New Battery Can Self-Charge Without Losing Energy

    Next-Generation Energy Storage Breakthrough: Fast-Charging, Long-Running, Flexible

    New Aqueous Lithium-Ion Battery – Low Cost & Improved Safety

    Iron-Air Batteries Promise Higher Energy Density Than Lithium-Ion Batteries

    New Aluminum Batteries Increase the Range of UUVs Tenfold

    MIT Engineers Look Toward All-Solid Lithium Batteries

    Engineers Design Calcium-Based Multi-Element for Liquid Batteries

    Power Conserving Chip May Increase Smartphone Battery Life

    Leave A Reply Cancel Reply

    • Facebook
    • Twitter
    • Pinterest
    • YouTube

    Don't Miss a Discovery

    Subscribe for the Latest in Science & Tech!

    Trending News

    A Star Near the Milky Way’s Black Hole Is Losing Mass at an Astonishing Rate

    Scientists Solve a Vitamin B12 Mystery With an Unexpected Culprit

    Has the Autism Spectrum Become Too Broad? Leading Scientist Warns of Hidden Consequences

    Rewriting History: Researchers Uncover a Forgotten Amazon Civilization That May Have Housed 3 Million People

    New Research May Change How We Think About Weight Loss Drugs Like Ozempic

    Coffee Drinkers Show Surprising Differences in Fat, Muscle, and Hormones

    New Treatment Targets Gum Disease Without Killing Good Bacteria

    Scientists Discover a 245-Million-Year-Old Reptile With Its Organs Still Preserved

    Follow SciTechDaily
    • Facebook
    • Twitter
    • YouTube
    • Pinterest
    • Newsletter
    • RSS
    SciTech News
    • Biology News
    • Chemistry News
    • Earth News
    • Health News
    • Physics News
    • Science News
    • Space News
    • Technology News
    Recent Posts
    • Why Is Colorectal Cancer Rising in People Under 50? New Clues Point to the Environment
    • Quantum Fluctuations Break a Crystal’s Symmetry Rules
    • Researchers Discover a Mysterious New Frog Species in the Amazon
    • Scientists Spotted This Mysterious Congo Monkey 18 Years Ago – Now They Finally Know What It Is
    • Why Does an Irregular Heartbeat Strike 40 Years Early in Some People?
    Copyright © 1998 - 2026 SciTechDaily. All Rights Reserved.
    • Science News
    • About
    • Contact
    • Editorial Board
    • Privacy Policy
    • Terms of Use

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