Yu-Hao Huang, Yung-Tang Chuang, Hao-Wu Lin and Chien-Neng Liao*,
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Based on the Mott–Schottky analysis and electrochemical impedance spectroscopy measurements, the presence of ZnO NPs on the Cu<sub>2</sub>O films enhances band bending and reduces charge transfer resistance to the electrolyte, which is advantageous for separating photoexcited electron and hole carriers in the illuminated ZCO films. Additionally, excess oxygen vacancy defects may facilitate the interdefect hopping of photoelectrons by minimizing the recombination probability of transporting photocarriers within the ZCO films according to photoluminescence spectroscopy analysis. The ZCO film exhibits a 40% increase in photocurrent density over the pristine Cu<sub>2</sub>O film in 1 M Na<sub>2</sub>SO<sub>4</sub> solution under AM1.5G illumination. This study provides a facile synthesis route for creating high-performance Cu<sub>2</sub>O-based photocathodes through heterojunction and crystal defect engineering.</p><p >Cuprous oxide (Cu<sub>2</sub>O) is a promising material for photoelectrochemical water splitting due to its favorable band structure, environmental acceptability, nontoxicity, and ease of fabrication.</p>","PeriodicalId":40,"journal":{"name":"Inorganic Chemistry","volume":"64 33","pages":"16950–16959"},"PeriodicalIF":4.7000,"publicationDate":"2025-08-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://pubs.acs.org/doi/pdf/10.1021/acs.inorgchem.5c02573","citationCount":"0","resultStr":"{\"title\":\"Single-Step Electrodeposition of ZnO Nanoparticles Decorated (111)-Textured Cu2O Films with Enhanced Photoelectrochemical Properties\",\"authors\":\"Yu-Hao Huang, Yung-Tang Chuang, Hao-Wu Lin and Chien-Neng Liao*, \",\"doi\":\"10.1021/acs.inorgchem.5c02573\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >Cuprous oxide (Cu<sub>2</sub>O) is a promising material for photoelectrochemical water splitting due to its favorable band structure, environmental acceptability, nontoxicity, and ease of fabrication. 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引用次数: 0
摘要
氧化亚铜(Cu2O)具有良好的能带结构、环境可接受性、无毒性和易于制备等优点,是一种很有前途的光电化学水分解材料。在本研究中,通过简单的一步电沉积法,合成了以大量ZnO纳米粒子(NPs)装饰的(111)结构Cu2O薄膜,即ZCO薄膜。提出了Cu2O薄膜电沉积过程中ZnO NPs形成的机理。基于Mott-Schottky分析和电化学阻抗谱测量,ZnO NPs的存在增强了Cu2O薄膜的能带弯曲,降低了电解质的电荷转移阻力,有利于ZCO薄膜中光激发电子和空穴载流子的分离。此外,根据光致发光光谱分析,过量的氧空位缺陷可以通过最小化ZCO薄膜内传输光载流子的重组概率来促进光电子的缺陷间跳变。在1 M Na2SO4溶液中,在AM1.5G光照下,ZCO薄膜的光电流密度比原始Cu2O薄膜增加了40%。本研究为通过异质结和晶体缺陷工程制备高性能cu20基光电阴极提供了一条简便的合成途径。
Single-Step Electrodeposition of ZnO Nanoparticles Decorated (111)-Textured Cu2O Films with Enhanced Photoelectrochemical Properties
Cuprous oxide (Cu2O) is a promising material for photoelectrochemical water splitting due to its favorable band structure, environmental acceptability, nontoxicity, and ease of fabrication. In this study, (111)-textured Cu2O films decorated with numerous ZnO nanoparticles (NPs), namely ZCO films, are synthesized by a facile one-step electrodeposition method. The mechanism for forming ZnO NPs during the electrodeposition of Cu2O films is proposed. Based on the Mott–Schottky analysis and electrochemical impedance spectroscopy measurements, the presence of ZnO NPs on the Cu2O films enhances band bending and reduces charge transfer resistance to the electrolyte, which is advantageous for separating photoexcited electron and hole carriers in the illuminated ZCO films. Additionally, excess oxygen vacancy defects may facilitate the interdefect hopping of photoelectrons by minimizing the recombination probability of transporting photocarriers within the ZCO films according to photoluminescence spectroscopy analysis. The ZCO film exhibits a 40% increase in photocurrent density over the pristine Cu2O film in 1 M Na2SO4 solution under AM1.5G illumination. This study provides a facile synthesis route for creating high-performance Cu2O-based photocathodes through heterojunction and crystal defect engineering.
Cuprous oxide (Cu2O) is a promising material for photoelectrochemical water splitting due to its favorable band structure, environmental acceptability, nontoxicity, and ease of fabrication.
期刊介绍:
Inorganic Chemistry publishes fundamental studies in all phases of inorganic chemistry. Coverage includes experimental and theoretical reports on quantitative studies of structure and thermodynamics, kinetics, mechanisms of inorganic reactions, bioinorganic chemistry, and relevant aspects of organometallic chemistry, solid-state phenomena, and chemical bonding theory. Emphasis is placed on the synthesis, structure, thermodynamics, reactivity, spectroscopy, and bonding properties of significant new and known compounds.