{"title":"研究超声辅助 CdxCryFe3 - (x + y)O4 对水电解、乙醇和甲醇氧化的电化学功效","authors":"Prakhar Mishra, Divya Singh, Faishal Khan, Reena Parihar, Narendra Kumar Singh","doi":"10.3103/S1068375524700200","DOIUrl":null,"url":null,"abstract":"<p>To increase the effectiveness of various electrochemical energy conversion and storage systems, electroactive and affordable electrocatalysts must be developed. Herein, the developed ultrasonic approach in the design and synthesis of the Fe-based spinel oxide (Fe<sub>3</sub>O<sub>4</sub>, CdFe<sub>2</sub>O<sub>4</sub>, CrFe<sub>2</sub>O<sub>4</sub>, and Cd<sub>0.2</sub>Cr<sub>0.8</sub>Fe<sub>2</sub>O<sub>4</sub>) nano-boxes, whose electrochemical performance was studied, is reported. The X-ray diffraction patterns proved the presence of the complete solitary-phase nano-spinel oxides. The Fourier-transform infrared spectra also supported the developed oxide structures. The thermogravimetric analysis showed a notable decline in the sample’s weights, with the most significant weight loss observed at approximately 35.46%. The cyclic voltammetry and the Tafel measurements were applied to investigate the electrochemical merits of the synthesized nanoparticles on a titanium supported electrode for different electrocatalytic applications. The results from cyclic voltammetry revealed that the substitution of the A site of the Fe atom with Cr or Cd had a detrimental impact on the current density value, and the ferrite with only chromium substitution exhibited the minimal current density at 0.7 V. The electrocatalytic activity estimated by Tafel curves towards an oxygen evolution reaction, ethanol and methanol oxidation reactions showed that the ternary ferrite with cadmium and chromium substitution (Cd<sub>0.8</sub>Cr<sub>0.2</sub>Fe<sub>2</sub>O<sub>4</sub>) had the highest current density of 0.224 mA/cm<sup>2</sup> at 850 mV towards an oxygen evolution reaction and was the most active towards a methanol oxidation reaction.</p>","PeriodicalId":782,"journal":{"name":"Surface Engineering and Applied Electrochemistry","volume":"60 4","pages":"618 - 625"},"PeriodicalIF":0.9000,"publicationDate":"2024-10-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Investigating Ultrasonically Assisted CdxCryFe3 – (x + y)O4 for Its Electrochemical Efficacy towards Water Electrolysis, Ethanol and Methanol Oxidation\",\"authors\":\"Prakhar Mishra, Divya Singh, Faishal Khan, Reena Parihar, Narendra Kumar Singh\",\"doi\":\"10.3103/S1068375524700200\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>To increase the effectiveness of various electrochemical energy conversion and storage systems, electroactive and affordable electrocatalysts must be developed. Herein, the developed ultrasonic approach in the design and synthesis of the Fe-based spinel oxide (Fe<sub>3</sub>O<sub>4</sub>, CdFe<sub>2</sub>O<sub>4</sub>, CrFe<sub>2</sub>O<sub>4</sub>, and Cd<sub>0.2</sub>Cr<sub>0.8</sub>Fe<sub>2</sub>O<sub>4</sub>) nano-boxes, whose electrochemical performance was studied, is reported. The X-ray diffraction patterns proved the presence of the complete solitary-phase nano-spinel oxides. The Fourier-transform infrared spectra also supported the developed oxide structures. The thermogravimetric analysis showed a notable decline in the sample’s weights, with the most significant weight loss observed at approximately 35.46%. The cyclic voltammetry and the Tafel measurements were applied to investigate the electrochemical merits of the synthesized nanoparticles on a titanium supported electrode for different electrocatalytic applications. The results from cyclic voltammetry revealed that the substitution of the A site of the Fe atom with Cr or Cd had a detrimental impact on the current density value, and the ferrite with only chromium substitution exhibited the minimal current density at 0.7 V. 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引用次数: 0
摘要
为了提高各种电化学能量转换和储存系统的效率,必须开发出具有电活性且价格合理的电催化剂。本文报告了在设计和合成铁基尖晶石氧化物(Fe3O4、CdFe2O4、CrFe2O4 和 Cd0.2Cr0.8Fe2O4)纳米方框过程中开发的超声方法,并对其电化学性能进行了研究。X 射线衍射图样证明了完整的孤相纳米尖晶石氧化物的存在。傅立叶变换红外光谱也证明了所形成的氧化物结构。热重分析表明,样品的重量明显下降,最显著的重量损失约为 35.46%。循环伏安法和 Tafel 测量法用于研究在钛支撑电极上合成的纳米粒子在不同电催化应用中的电化学性能。循环伏安法的结果表明,用铬或镉取代铁原子的 A 位点会对电流密度值产生不利影响,只有铬取代的铁氧体在 0.7 V 时的电流密度最小。根据塔菲尔曲线估算的氧进化反应、乙醇和甲醇氧化反应的电催化活性表明,镉和铬取代的三元铁氧体(Cd0.8Cr0.2Fe2O4)在 850 mV 时对氧进化反应的电流密度最高,为 0.224 mA/cm2,对甲醇氧化反应的活性最高。
Investigating Ultrasonically Assisted CdxCryFe3 – (x + y)O4 for Its Electrochemical Efficacy towards Water Electrolysis, Ethanol and Methanol Oxidation
To increase the effectiveness of various electrochemical energy conversion and storage systems, electroactive and affordable electrocatalysts must be developed. Herein, the developed ultrasonic approach in the design and synthesis of the Fe-based spinel oxide (Fe3O4, CdFe2O4, CrFe2O4, and Cd0.2Cr0.8Fe2O4) nano-boxes, whose electrochemical performance was studied, is reported. The X-ray diffraction patterns proved the presence of the complete solitary-phase nano-spinel oxides. The Fourier-transform infrared spectra also supported the developed oxide structures. The thermogravimetric analysis showed a notable decline in the sample’s weights, with the most significant weight loss observed at approximately 35.46%. The cyclic voltammetry and the Tafel measurements were applied to investigate the electrochemical merits of the synthesized nanoparticles on a titanium supported electrode for different electrocatalytic applications. The results from cyclic voltammetry revealed that the substitution of the A site of the Fe atom with Cr or Cd had a detrimental impact on the current density value, and the ferrite with only chromium substitution exhibited the minimal current density at 0.7 V. The electrocatalytic activity estimated by Tafel curves towards an oxygen evolution reaction, ethanol and methanol oxidation reactions showed that the ternary ferrite with cadmium and chromium substitution (Cd0.8Cr0.2Fe2O4) had the highest current density of 0.224 mA/cm2 at 850 mV towards an oxygen evolution reaction and was the most active towards a methanol oxidation reaction.
期刊介绍:
Surface Engineering and Applied Electrochemistry is a journal that publishes original and review articles on theory and applications of electroerosion and electrochemical methods for the treatment of materials; physical and chemical methods for the preparation of macro-, micro-, and nanomaterials and their properties; electrical processes in engineering, chemistry, and methods for the processing of biological products and food; and application electromagnetic fields in biological systems.