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Updated: May 5, 2026

Harvesting Solar Energy by Means of Charge-Separating Nanocrystals and Their Solids
Published on: August 23, 2012
Vapor-Assisted In Situ Synthesis of the Nb2CTNS/NbO2F MXene Heterostructure for Enhanced Solar-Driven
Ying-Chih Pu1, Yi-Chen Yu2, Jen-An Shih2
1Department of Materials Science, National University of Tainan, Tainan 70005, Taiwan.
Abstract:
Photocatalytic water splitting holds great potential for transforming solar energy into valuable chemical products. However, obstacles such as the rapid recombination of electron-hole pairs and insufficiently active surface areas of photocatalysts remain significant challenges. In this study, we present the first demonstration that lithium bis(trifluoromethanesulfonyl)imide vapor successfully etches aluminum from Nb2AlC MAX phase powders while concurrently forming NbO2F anchors on Nb2CT nanosheet (Nb2CTNS) MXene, leading to the in situ formation of a Nb2CTNS/NbO2F heterostructure composite. This novel material exhibits a remarkable photoelectrochemical performance, achieving a current density of 252 μA cm-2, which is 1000 and 10 times greater than those of Nb2AlC MAX and Nb2C nanosheet MXene, respectively. These findings shed light on innovative approaches for developing photocatalytic materials via vapor-assisted synthesis, offering a promising pathway for advancing material discovery in both photo- and energy-related fields.
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