Close Menu
    Facebook X (Twitter) Instagram Pinterest YouTube LinkedIn TikTok
    TopBuzzMagazine.com
    Facebook X (Twitter) Instagram Pinterest YouTube LinkedIn TikTok
    • Home
    • Movies
    • Television
    • Music
    • Fashion
    • Books
    • Science
    • Technology
    • Cover Story
    • Contact
      • About
      • Amazon Disclaimer
      • Terms and Conditions
      • Privacy Policy
      • DMCA / Copyrights Disclaimer
    TopBuzzMagazine.com
    Home»Science»Facile and scalable production of a fuel-cell nanocatalyst for the
    Science

    Facile and scalable production of a fuel-cell nanocatalyst for the

    By AdminFebruary 25, 2023
    Facebook Twitter Pinterest LinkedIn Tumblr Email
    Facile and scalable production of a fuel-cell nanocatalyst for the

    Microscopic (STEM and TEM) images of the developed catalyst and its PEMFC power performance. Compared to the state-of-the-art fuel cell catalysts, the catalyst developed by the CNR-IBS team showed almost twice the power performance per platinum use. Credit: Institute for Basic Science

    A fuel cell is an electric power generator that is capable of producing electricity from hydrogen gas while discharging only water as a waste product. It is hoped that this highly efficient clean energy system will play a key role in the adoption of the hydrogen economy, replacing the combustion engines and batteries in automobiles and trucks, as well as power plants.

    However, the cost of platinum, which can be up to ~30,000 USD per kg, has been a major limitation, making fuel cell catalysts prohibitively expensive. The production methods of highly-performing catalysts have also been complicated and largely limited. Accordingly, the development of a facile and scalable production method for platinum-based fuel cell catalysts is an urgent challenge, together with enhancing catalytic performance and stability while using a minimum amount of platinum.

    To tackle this issue, a research team led by Prof. Sung Yung-Eun and Prof. Hyeon Taeghwan at the Center for Nanoparticle Research (CNR) within the Institute for Basic Science (IBS), South Korea has discovered a novel method for the production of nanocatalysts.

    The researchers demonstrated that these uniformly sized (3-4 nanometers) cobalt-platinum (Co-Pt) alloy nanoparticles can be produced by simple heat treatment. This method has combined features of the ease of the synthesis of the impregnation method, along with the precise control over the size and shape of the nanocrystals similar to the colloidal method.

    The novel Co-Pt alloy nanocatalysts developed by the CNR-IBS team consist of two oppositely-charged metal complexes, specifically Co and Pt ions surrounded by bipyridine and chlorine ligands, respectively.

    The research team hypothesized that a simple heat treatment would cause the bipyridine ligand to thermally decompose into a carbon shell that can protect the growing Co-Pt alloy nanoparticles. After optimizing the heat treatment condition, they succeeded in obtaining a highly uniform nanocatalyst with nanoparticles of only 3-4 nanometer sizes.

    Schematic illustration of the growth process of the Co-Pt alloy nanocatalyst. Simple heat treatment at 900 °C could produce atomically ordered Co-Pt nanoparticles on a carbon support. Credit: Institute for Basic Science

    In the nanocatalyst developed by the group, Co and Pt atoms were arranged in a regular way called the ‘intermetallic phase’, where the unstable Co atoms are stabilized by the surrounding Pt atoms. Additionally, when nitrogen was effectively doped onto the carbon support, ionomers (proton conductors) were homogeneously dispersed over the entire catalyst layer in the fuel cell, which better facilitated the supply of oxygen gas to the surface of the Co-Pt nanocatalyst.

    These structural features added up to a much-enhanced power performance in the proton-exchange-membrane fuel cell, exhibiting high specific rated power of 5.9 kW/gPt, which is about twice that of the current performance in a commercial hydrogen vehicle. The catalyst produced by the team has achieved most of the 2025 targets set by the U.S. Department of Energy (DOE) with the goal of stable long-term operation of the fuel cell.

    The CNR-IBS team strongly believes that this study would stimulate the development of next-generation fuel cell catalysts. These findings would also contribute to the improvements in the catalytic performance and durability of alloy nanocatalysts for various other electrocatalytic applications.

    Prof. Hyeon said, “Design of a novel bimetallic compound as a precursor material has been the critical starting point in this study. We have developed a platform technology to produce a complicated form of alloy nanocatalysts through a simple and scalable method, and finally achieved an enhanced fuel cell power performance with less amount of platinum used.”

    Prof. Sung said, “A world-class level of fuel cell performance has been achieved in this research, surpassing most of the 2025 targets of U.S. DOE by lessening the amount of platinum that can contribute up to around 40% of the cost of fuel cells.” He added, “We expect that this study, together with some follow-up studies, would greatly impact the growth of the hydrogen vehicle industry and the realization of hydrogen economy in the near future.”

    The study is published in the journal Energy & Environmental Science.

    More information: Tae Yong Yoo et al, Scalable production of an intermetallic Pt–Co electrocatalyst for high-power proton-exchange-membrane fuel cells, Energy & Environmental Science (2023). DOI: 10.1039/D2EE04211H

    Provided by Institute for Basic Science

    Citation: Facile and scalable production of a fuel-cell nanocatalyst for the hydrogen economy (2023, February 16) retrieved 25 February 2023 from https://phys.org/news/2023-02-facile-scalable-production-fuel-cell-nanocatalyst.html

    This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.

    Read The Full Article Here

    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

    Related Posts

    Mystery fireball spotted plummeting to Earth over the US

    June 27, 2025

    New IQ research shows why smarter people make better decisions

    June 26, 2025

    ‘God-king’ born from incest in ancient Ireland wasn’t a god or a king, new study finds

    June 26, 2025

    Generation Alpha’s coded language makes online bullying hard to detect

    June 25, 2025

    Pulsars could have tiny mountains

    June 25, 2025

    New ‘breathalyzer’ could detect signs of disease in human breath, scientists say

    June 24, 2025
    popular posts

    TikTok’s Black Box Obscures Its Role in Russia’s War

    Richard Holliday on Conquering Cancer & Major League Wrestling Return

    ‘Married at First Sight’: 5 Key Moments From the Season

    3 Audiobooks Featuring Journeys, Internal and External

    Forget Cone Bras — Cardi B’s Swimsuit Has Whipped-Cream Nipple

    Ashley Williams, Ryan Paevey to Star in Hallmark’s Two Tickets

    Machine Head Cancel Spring 2023 US Tour

    Categories
    • Books (3,251)
    • Cover Story (2)
    • Events (18)
    • Fashion (2,420)
    • Interviews (43)
    • Movies (2,551)
    • Music (2,829)
    • News (154)
    • Science (4,401)
    • Technology (2,544)
    • Television (3,273)
    • Uncategorized (932)
    Archives
    Facebook X (Twitter) Instagram Pinterest YouTube Reddit TikTok
    © 2025 Top Buzz Magazine. All rights reserved. All articles, images, product names, logos, and brands are property of their respective owners. All company, product and service names used in this website are for identification purposes only. Use of these names, logos, and brands does not imply endorsement unless specified. By using this site, you agree to the Terms of Use and Privacy Policy.

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

    We use cookies on our website to give you the most relevant experience by remembering your preferences and repeat visits. By clicking “Accept”, you consent to the use of ALL the cookies.
    Do not sell my personal information.
    Cookie SettingsAccept
    Manage consent

    Privacy Overview

    This website uses cookies to improve your experience while you navigate through the website. Out of these, the cookies that are categorized as necessary are stored on your browser as they are essential for the working of basic functionalities of the website. We also use third-party cookies that help us analyze and understand how you use this website. These cookies will be stored in your browser only with your consent. You also have the option to opt-out of these cookies. But opting out of some of these cookies may affect your browsing experience.
    Necessary
    Always Enabled
    Necessary cookies are absolutely essential for the website to function properly. These cookies ensure basic functionalities and security features of the website, anonymously.
    CookieDurationDescription
    cookielawinfo-checkbox-analytics11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Analytics".
    cookielawinfo-checkbox-functional11 monthsThe cookie is set by GDPR cookie consent to record the user consent for the cookies in the category "Functional".
    cookielawinfo-checkbox-necessary11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookies is used to store the user consent for the cookies in the category "Necessary".
    cookielawinfo-checkbox-others11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Other.
    cookielawinfo-checkbox-performance11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Performance".
    viewed_cookie_policy11 monthsThe cookie is set by the GDPR Cookie Consent plugin and is used to store whether or not user has consented to the use of cookies. It does not store any personal data.
    Functional
    Functional cookies help to perform certain functionalities like sharing the content of the website on social media platforms, collect feedbacks, and other third-party features.
    Performance
    Performance cookies are used to understand and analyze the key performance indexes of the website which helps in delivering a better user experience for the visitors.
    Analytics
    Analytical cookies are used to understand how visitors interact with the website. These cookies help provide information on metrics the number of visitors, bounce rate, traffic source, etc.
    Advertisement
    Advertisement cookies are used to provide visitors with relevant ads and marketing campaigns. These cookies track visitors across websites and collect information to provide customized ads.
    Others
    Other uncategorized cookies are those that are being analyzed and have not been classified into a category as yet.
    SAVE & ACCEPT