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Lignin-derived Carbon As Rapid Charge-Transfer Bridge for Efficient Solar-Driven H2O2 Production over CN/Mxene Heterojunction

Jiashu Li,Jun Yu,Shengye Wu, Tianshang Shan, Xia Xu,Fengshan Zhang,Liulian Huang,Lihui Chen,He Xiao

JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING(2024)

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摘要
Graphitic carbon nitride (g-C3N4, 3 N 4 , CN) has been recognized as an environmentally friendly, and promising photocatalyst, particularly for solar-driven synthesis of hydrogen peroxide (H2O2). 2 O 2 ). Heterostructure engineering to decorated CN is an effective approach for boosting photocatalytic H2O2 2 O 2 production. However, the current challenge lies in the efficient transmission of interfacial charge carriers. Herein, we propose a breakthrough approach to synthesize g-C3N4/Mxene 3 N 4 /Mxene (CNM) M ) composites with lignin-derived carbon (L) as a bridge for electron transfer. The optimal ternary heterojunction (CNM,L) M,L ) demonstrated its impressive performance (0.75 mmol/L) for photocatalytic H2O2 2 O 2 production, which was three times higher than that of pristine CN. The significance of lignin-derived carbon in g-C3N4/Mxene 3 N 4 /Mxene composites not only improves light adsorption, but also promotes electron transfer between the interfacial g-C3N4 3 N 4 and Mxene during the oxygen reduction reaction (ORR) process for H2O2 2 O 2 evolution. This work provides an eco-friendly design of lignin-derived carbon, which efficiently tunes the photo-generated charge transfer of CN-based photocatalysts for H2O2 2 O 2 generation.
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关键词
Graphitic carbon nitride,Lignin-derived carbon,Mxene,Photocatalysis,Hydrogen peroxide
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