Related Experiment Video
Updated: Sep 15, 2025

Harvesting Solar Energy by Means of Charge-Separating Nanocrystals and Their Solids
Published on: August 23, 2012
Efficient Assembly of a Rare Earth-Indium Bimetallic Vanadate/g-C3N4 Heterojunction for Enhanced Uranium(VI)
Keding Li1, Ting Xiong1, Zhibing He1
1Research Center of Laser Fusion, China Academy of Engineering Physics, P.O. Box 919-987, Mianyang 621900, P. R. China.
Abstract:
A ternary rare earth-indium bimetallic vanadate/g-C3N4 heterojunction (MVG) was constructed by using a simple in situ self-assembly technique to solve the increasingly serious problem of uranium(VI)-containing wastewater pollution. MVG, especially MVG-IN, exhibited good photocatalytic U(VI) reduction separation activity, which demonstrated its good potential for U(VI)-containing wastewater remediation. MVG-IN obtained by using a combination of NdVO4, InVO4, and g-C3N4 to construct multiple heterojunctions exhibited a uniform porous structure and good visible-light response. The good interfacial U(VI) adsorption activity of MVG-IN gave it a high adsorption capacity (693.6 mg·g-1) in a dark environment. MVG-IN with high equilibrium U(VI) separation efficiency (98.9%) could separate over 90% of U(VI) after 30 min of illumination. Moreover, MVG-IN also had good resistance to ion interference and could maintain a separation efficiency of over 85% after four cycles. The photocatalytic U(VI) reduction separation mechanism of MVG-IN indicated that the synergistic effect of the high interfacial U(VI) adsorption activity and visible-light response brought by the formation of multiple heterostructures endowed MVG-IN with good photocatalytic U(VI) reduction separation activity. This work might be expected to provide assistance for the development of photocatalyst materials with high photoresponsive and U(VI) reduction separation performance.
More Related Videos
11:26Integrating a Triplet-triplet Annihilation Up-conversion System to Enhance Dye-sensitized Solar Cell Response to Sub-bandgap Light
Published on: September 12, 2014
12:21Close-Space Sublimation-Deposited Ultra-Thin CdSeTe/CdTe Solar Cells for Enhanced Short-Circuit Current Density and Photoluminescence
Published on: March 6, 2020