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Breaking the Limitation of Elevated Coulomb Interaction in Crystalline Carbon Nitride for Visible and Near-Infrared Light Photoactivity

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Journal Adv Sci (Weinh)
Date 2022 Jun 2
PMID 35652268
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Abstract

Most near-infrared (NIR) light-responsive photocatalysts inevitably suffer from low charge separation due to the elevated Coulomb interaction between electrons and holes. Here, an n-type doping strategy of alkaline earth metal ions is proposed in crystalline K implanted polymeric carbon nitride (KCN) for visible and NIR photoactivity. The n-type doping significantly increases the electron densities and activates the n→π* electron transitions, producing NIR light absorption. In addition, the more localized valence band (VB) and the regulation of carrier effective mass and band decomposed charge density, as well as the improved conductivity by 1-2 orders of magnitude facilitate the charge transfer and separation. The proposed n-type doping strategy improves the carrier mobility and conductivity, activates the n→π* electron transitions for NIR light absorption, and breaks the limitation of poor charge separation caused by the elevated Coulomb interaction.

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Breaking the Limitation of Elevated Coulomb Interaction in Crystalline Carbon Nitride for Visible and Near-Infrared Light Photoactivity.

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References
1.
Shi R, Ye H, Liang F, Wang Z, Li K, Weng Y . Interstitial P-Doped CdS with Long-Lived Photogenerated Electrons for Photocatalytic Water Splitting without Sacrificial Agents. Adv Mater. 2017; 30(6). DOI: 10.1002/adma.201705941. View

2.
He J, Hu L, Shao C, Jiang S, Sun C, Song S . Photocatalytic HO Overall Splitting into H Bubbles by Single Atomic Sulfur Vacancy CdS with Spin Polarization Electric Field. ACS Nano. 2021; 15(11):18006-18013. DOI: 10.1021/acsnano.1c06524. View

3.
Samanta A, Arovas D, Auerbach A . Hall Coefficient of Semimetals. Phys Rev Lett. 2021; 126(7):076603. DOI: 10.1103/PhysRevLett.126.076603. View

4.
Ou H, Lin L, Zheng Y, Yang P, Fang Y, Wang X . Tri-s-triazine-Based Crystalline Carbon Nitride Nanosheets for an Improved Hydrogen Evolution. Adv Mater. 2017; 29(22). DOI: 10.1002/adma.201700008. View

5.
Yousaf A, Imran M, Zaidi S, Kasak P . Highly Efficient Photocatalytic Z-Scheme Hydrogen Production over Oxygen-Deficient WO Nanorods supported ZnCdS Heterostructure. Sci Rep. 2017; 7(1):6574. PMC: 5529397. DOI: 10.1038/s41598-017-06808-6. View