Modulating Band Structure of G-C3n4 by Doping Oxygen to Transform Feco2o4/G-C3n4 Heterojunction from Type-Ii to S-Scheme for Enhancing Photo-Fenton-Like Reaction

37 Pages Posted: 5 Jan 2024

See all articles by Donglong Shi

Donglong Shi

Jilin University (JLU)

Jingjing Jiang

Jilin University (JLU)

Deyu Wang

Jilin University (JLU)

Mingxin Huo

Northeast Normal University

Shuangshi Dong

Jilin University (JLU)

Abstract

Constructing S-scheme heterojunctions is a highly prevalent approach in enhancing the activation efficiency of peroxymonosulfate (PMS). However, the two semiconductors that have the potential to form S-scheme heterojunction (such as FeCo2O4 and carbon nitride) typically tend to form type-II heterojunction. In this study, through oxalic acid assisted oxygen atom doping in carbon nitride, followed by the utilization of oxygen-doped carbon nitride (O-CN) as precursors in combination with cobalt chloride and iron chloride, the final synthesis of a novel composite catalyst is achieved. The introduction of oxygen atoms into the graphite carbon nitride can lead to an overall reduction in the band structure, facilitating the controlled transformation of a type-II heterojunction to an S-scheme heterojunction. This transformation is confirmed through density functional theory (DFT) calculations and electron spin resonance (ESR) tests. In the photo-Fenton-like system, the 15% FeCo2O4/Oxygen doped-C3N4 (FCOCN) catalyst demonstrated a remarkable degradation efficiency of 93.5% for tetracycline hydrochloride (TCH). This efficiency surpassed that of O-CN (47.8%) and FeCo2O4 (60.3%). Furthermore, the degradation efficiency of the 15% FCOCN catalyst was significantly higher than that of photocatalysis (2.04 times greater) and Fenton-like treatment (1.11 times greater). Remarkably, within a short period of 14 min, the emerging contaminants, including sulfamethoxazole (SMX), bisphenol A (BPA), and carbamazepine (CBZ), were completely degraded. Atrazine (ATZ) showed a remarkable degradation rate of 77.1%. This study offers valuable insights into the construction of S-scheme heterojunction through the manipulation of band structure in type-II heterojunction by oxygen doping.

Keywords: Oxygen doped, Photo-Fenton-like system, S-scheme heterojunction, Cycle of iron ions and cobalt ions, Emerging Contaminants

Suggested Citation

Shi, Donglong and Jiang, Jingjing and Wang, Deyu and Huo, Mingxin and Dong, Shuangshi, Modulating Band Structure of G-C3n4 by Doping Oxygen to Transform Feco2o4/G-C3n4 Heterojunction from Type-Ii to S-Scheme for Enhancing Photo-Fenton-Like Reaction. Available at SSRN: https://ssrn.com/abstract=4685521 or http://dx.doi.org/10.2139/ssrn.4685521

Donglong Shi

Jilin University (JLU) ( email )

Jilin
China

Jingjing Jiang

Jilin University (JLU) ( email )

Deyu Wang

Jilin University (JLU) ( email )

Mingxin Huo

Northeast Normal University ( email )

Changchun
China

Shuangshi Dong (Contact Author)

Jilin University (JLU) ( email )

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