News News
Contact us
  • Customer service number:64321087
  • Commercial service telephone:13918059423
  • Technical service telephone:13918059423
  • Contact person: Mr. Cui 
  • Service email:shxtb@163.com
  • Address: room 107, building 8, no. 100, guilin road, xuhui district, Shanghai

Researchers reveal in-situ dynamic carbonization of Mo oxide in reverse water-gas shift reaction

The date of: 2024-09-13
viewed: 5

source:phys.org

The synthesis of molybdenum carbide catalysts typically requires high temperature, leading to inevitable passivation in an oxygen-containing atmosphere. Developing a new route to produce molybdenum carbide at low temperatures is challenging but essential to increase the density of surface active sites.

In a recent study published in Angewandte Chemie International Edition, a research group led by Prof. BAO Xinhe and Prof. FU Qiang from the Dalian Institute of Chemical Physics (DICP) of the Chinese Academy of Sciences (CAS) developed an in-situ dynamic carbonization method to synthesize molybdenum carbide in reverse water-gas shift (RWGS) reaction.

The researchers discovered that introducing intercalated hydrogen into MoO3 to form HxMoOy promoted its reduction, enabling in-situ carburization at 500 ℃ during the RWGS reaction. This carbonization process produced highly active molybdenum carbide, which exhibited enhanced activity in the RWGS reaction.

Then, the researchers showed that both the surface properties of the catalysts and the reaction microenvironment affected the carbonization process. Specifically, a low O/Mo ratio of the catalyst was more favorable to carbonization, while a high CO2 conversion rate, or a high CO partial pressure, further enhanced the carbonization process.

Moreover, the researchers demonstrated that carbonization significantly improved CO2 adsorption and activation, thereby enhancing the activity of the RWGS reaction. 

This in-situ carburization strategy provides insights into the synthesis of metal carbides in a carbon-containing reaction atmosphere.

"The structural evolution of the catalyst plays an important role during the reaction, which can be used to enhance the catalytic performance by the rational control strategy," said Prof. FU.


Hot News / Related to recommend
  • 2025 - 12 - 09
    Click on the number of times: 1
    Magnetic NaA Zeolites Synthesized from Dual Solid Wastes Enables Selective Efficient Recovery of Rare Earth Ions from Neodymium Iron Boron Electroplating Wastewater来源:ACS PublicationsThis research lev...
  • 2025 - 12 - 09
    Click on the number of times: 1
    Defect Structure and Anion Conduction in Lanthanum Oxychloride Solid Solutions Revealed by X-ray Excited Optical Luminescence and Auger Emission来源:ACS PublicationsIon transport in crystalline solids i...
  • 2025 - 12 - 08
    Click on the number of times: 2
    来源:ACS PublicationsMetal cation doping in hybrid perovskite semiconductors is one of the most effective approaches for tailoring their optoelectronic properties. However, their location-dependent func...
  • 2025 - 12 - 05
    Click on the number of times: 1
    Crystalline Order Yet Glass-Like Heat Transport Driven by Hidden Local Distortions as the Structural Origin of Ultralow Thermal Conductivity in AgErTe2来源:ACS PublicationsGiven their rich chemical dive...
  • Copyright ©Copyright 2018 2020 Shanghai rare earth association All Rights Reserved Shanghai ICP NO.2020034223
    the host:Shanghai Association of Rare Earth the guide:Shanghai Development and Application Office of Rare Earth the organizer:Shanghai rare earth industry promotion center
    犀牛云提供云计算服务