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Solar light-responsive α-Fe2O3/CdS/g-C3N4 ternary photocatalyst for photocatalytic hydrogen production and photodegradation of methylene blue

光催化 光降解 制氢 三元运算 带隙 材料科学 异质结 分解水 化学工程 化学 纳米复合材料 可见光谱 纳米技术 光电子学 催化作用 程序设计语言 计算机科学 有机化学 工程类
作者
Çağdaş Yavuz,Sule Erten‐Ela
出处
期刊:Journal of Alloys and Compounds [Elsevier BV]
卷期号:908: 164584-164584 被引量:93
标识
DOI:10.1016/j.jallcom.2022.164584
摘要

Photocatalytic degradation of waste materials in aqueous solutions, as well as photocatalytic hydrogen generation, were investigated for remediation of environment and renewable energy production. α-Fe 2 O 3 and CdS are attractive visible-light-driven semiconductor photocatalysts because of their inexpensive cost, simple production methods, and stability. Whereas, its implementations were limited by the photocorrosion, narrow optical band gap for solar-light operations and poor separation of photogenerated electron-hole pair. To increase the performance of α-Fe 2 O 3 , CdS, α-Fe 2 O 3 /CdS, and g-C 3 N 4 ; a ternary nanocomposite (α-Fe 2 O 3 /CdS/g-C 3 N 4 ) was designed. To obtain binary structure, CdS nanoparticles were overgrown on α-Fe 2 O 3 nanorods-cubes using a simple wet-chemical process, and as-prepared g-C 3 N 4 was decorated with binary composite. XRD, SEM, XPS, BET, UV–Visible spectrometry, FT-IR, PL and EIS were employed to investigate the crystal structures, surface morphology, optical properties, functional groups and electrochemical characteristics. Considering the optical absorption properties, the photocatalytic studies were performed for hydrogen production and MB dye degradation under solar light irradiation. Among the synthesized semiconductors, the ternary material had the highest photocatalytic hydrogen evolution, 165 µmol g −1 2 h −1 from water. Within 120 min, the photocatalytic performance resulted in 99.4% degradation of the MB. The higher activities were attributed to Z-scheme mechanism, optical band levels and strict heterojunctions of the photocatalysts that induces an influential electron-hole separation, subsequently rapid diffusion of photogenerated charge between components and also the optical bandgap value of the ternary structure that more convenient for solar lights applications. This work paves a way for improvement of photocatalysts working in practical conditions of pollution and energy issues. • The α-Fe 2 O 3 /CdS/g-C 3 N 4 ternary heterostructured material was synthesized. • Photocatalytic hydrogen production was studied. • Photocatalytic degradation was studied. • The α-Fe 2 O 3 /CdS/g-C 3 N 4 ternary nanocomposite showed best photocatalytic properties under solar light irradiation.
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