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Enhanced photocatalytic performance of K/O-co-doped crystalline carbon nitride for sulfamerazine degradation and CO2 reduction
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- Title
- Enhanced photocatalytic performance of K/O-co-doped crystalline carbon nitride for sulfamerazine degradation and CO2 reduction
- Issued Date
- 2026-05
- Citation
- Chemosphere, v.400
- Type
- Article
- Author Keywords
- CO2 reduction ; Crystalline carbon nitride ; Photocatalytic ; Potassium/oxygen co-doping ; Sulfamerazine
- ISSN
- 0045-6535
- Abstract
-
Development of efficient photocatalysts for organic pollutant degradation and CO2 resource utilization holds significant importance for environmental governance and carbon neutrality. In this study, potassium/oxygen co-doped crystalline carbon nitride (K/O–CCN) was synthesized via a LiCl/KCl molten salt method for sulfamerazine (SMR) degradation and CO2 reduction. K/O–CCN photocatalyst exhibited a great improvement in visible-light response (visible-light response red-shifted from 478 to 492 nm) and electron–hole pair separation/migration due to the synergistic effect of K/O co-doping and crystallization. Under simulated solar light irradiation, K/O–CCN exhibited a SMR degradation rate (98.7%, 0.0312 min−1) 5.9 times higher than that of pristine g-C3N4 and a CO2 reduction rate to CO (1.6 μmol g−1·h−1) 3.3 times greater than that of pristine g-C3N4. Capture experiments confirmed that e− was the primary reactive species for SMR degradation. This study presents a synergistic strategy for element doping engineering and band structure modulation in designing carbon nitride-based photocatalysts, exhibiting their potential in environmental remediation and carbon cycle applications.
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- Publisher
- Elsevier Ltd
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