Close Menu
Energy NewsEnergy News
  • NEWS
    • Breaking News
    • Hydrogen
    • Energy Storage
    • Grid
    • SMR
    • Projects
    • Production
    • Transport
    • Research
  • SPOTLIGHT
    • Interviews
    • Face 2 Face
    • Podcast
    • Webinars
    • Analysis
    • Columnists
    • Reviews
    • Events
  • REGIONAL
    • Africa
    • Americas
    • Asia
    • Europe
    • Middle east
    • Pacific
  • COMMUNITY
  • ABOUT
    • Advisory Board
    • Contact us
    • Report Your News
    • Advertize
    • Subscribe
LinkedIn X (Twitter) YouTube Facebook
Trending
  • UK BESS Market Contracts 28% Amid Planning Pipeline Slowdown Despite 7GWh Milestone
  • Vanadium Ion Breakthrough: 98% Efficiency, 12,000-Cycle Battery Challenges Lithium Dominance in Grid Storage
  • Hydrogen Storage’s Hidden Environmental Costs: Scale and Production Methods Drive Lifecycle Impacts
  • German Steel Giants Abandon €3.3 Billion Hydrogen Projects Despite Record Subsidies
  • Arizona’s 1 GWh Beehive BESS Acquisition Highlights $12B Fund’s Grid Storage Strategy
  • Beyond the Green Transition: Simon Michaux’s Case for a Resource-Balanced Energy Future
  • ACWA Power Targets Multi-Gigawatt Green Hydrogen in Sarawak
  • EU Greenlights Mitsubishi-Bosch JV to Bolster EV Battery Services
LinkedIn X (Twitter) YouTube Facebook
Energy NewsEnergy News
  • NEWS
    • Breaking News
    • Hydrogen
    • Energy Storage
    • Grid
    • SMR
    • Projects
    • Production
    • Transport
    • Research
  • SPOTLIGHT
    • Interviews
    • Face 2 Face
    • Podcast
    • Webinars
    • Analysis
    • Columnists
    • Reviews
    • Events
  • REGIONAL
    • Africa
    • Americas
    • Asia
    • Europe
    • Middle east
    • Pacific
  • COMMUNITY
  • ABOUT
    • Advisory Board
    • Contact us
    • Report Your News
    • Advertize
    • Subscribe
Energy NewsEnergy News
Home Home - Research
Green Hydrogen H2 News

Ample hydrogen fuel might be produced using 2D Janus materials

Anela DoksoBy Anela Dokso28/02/20232 Mins Read
Share
LinkedIn Twitter Facebook Email WhatsApp Telegram

Several investigations have suggested that particular groups of 2D materials, each only a few atoms thick, may be able to catalyze the water-splitting reaction. The so-called 2D Janus materials, whose two sides differ in their molecular make-up, are a particularly intriguing class.

Junfeng Ren and colleagues from Shandong Normal University in China introduce a new set of four 2D Janus materials using new calculations described in EPJ B that may be particularly well suited to this endeavor.

It is now well acknowledged that burning hydrogen produces an enormous amount of energy, with the only byproduct being water, making it a superior option to fossil fuels. A “redox reaction” called the splitting of water molecules involves both electrons and holes in reduction and oxidation processes. The 2D Janus materials are ideal catalysts for this process because they are excellent semiconductors. A positively charged hole is left behind when an electron in a semiconductor’s insulating “valence band” absorbs a photon and is stimulated into the “conduction band” of the substance. Redox reactions can take place more readily because of the dual roles played by these materials as an electron generator and a receiver.

Ren’s team analyzed a set of four of these materials in their theoretical study: one surface is made of selenium or tellurium, the other of bromine or iodine, and both sides are encircled by a layer of astatine in the centre. The energies of the valence and conduction bands in these semiconductors were sufficiently different to prohibit electrons and holes from readily recombining, allowing them to combine to produce hydrogen and oxygen.

The researchers think that all four materials could be exceptionally interesting candidates for accelerating the water-splitting reaction because they exhibit great stability and light absorption.

Share. LinkedIn Twitter Facebook Email

Related Posts

Vanadium

Vanadium Ion Breakthrough: 98% Efficiency, 12,000-Cycle Battery Challenges Lithium Dominance in Grid Storage

18/08/2025
hydrogen

Hydrogen Storage’s Hidden Environmental Costs: Scale and Production Methods Drive Lifecycle Impacts

18/08/2025
Hydrogen

ACWA Power Targets Multi-Gigawatt Green Hydrogen in Sarawak

15/08/2025
Energy

Gentari Breaks Ground on Maryvale Solar and Energy Storage Project in NSW

15/08/2025
hydrogen

Indonesia Targets Maritime Decarbonization with Green Hydrogen Ferry Feasibility Study

14/08/2025
hydrogen

POSCO Future M Expands LFP Cathode Capacity Through Strategic Partnership

13/08/2025
Battery BESS

UK BESS Market Contracts 28% Amid Planning Pipeline Slowdown Despite 7GWh Milestone

18/08/2025
Vanadium

Vanadium Ion Breakthrough: 98% Efficiency, 12,000-Cycle Battery Challenges Lithium Dominance in Grid Storage

18/08/2025
hydrogen

Hydrogen Storage’s Hidden Environmental Costs: Scale and Production Methods Drive Lifecycle Impacts

18/08/2025
hydrogen

German Steel Giants Abandon €3.3 Billion Hydrogen Projects Despite Record Subsidies

18/08/2025

Subscribe to Updates

Get the latest news from the hydrogen market subscribe to our newsletter.

LinkedIn X (Twitter) Facebook YouTube

News

  • Inteviews
  • Webinars
  • Hydrogen
  • Spotlight
  • Regional

Company

  • Advertising
  • Media Kits
  • Contact Info
  • GDPR Policy

Subscriptions

  • Subscribe
  • Newsletters
  • Sponsored News

Subscribe to Updates

Get the latest news from EnergyNewsBiz about hydrogen.

© 2025 EnergyNews.biz
  • Privacy Policy
  • Terms
  • Accessibility

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