光催化
材料科学
甲基橙
拉曼光谱
兴奋剂
共沉淀
硫化镉
掺杂剂
无机化学
X射线光电子能谱
可见光谱
吸附
纳米复合材料
石墨烯
带隙
纳米颗粒
核化学
化学工程
催化作用
化学
纳米技术
冶金
生物化学
光电子学
有机化学
工程类
物理
光学
作者
S. Dorothy,P. Sugumar,S. Meenakshi,S. Munusamy,Sandhanasamy Devanesan,K. Kalpana,Saurav Dixit,Karthick Rajendran
摘要
ABSTRACT Heterogeneous photocatalysis has been widely explored as a promising solution for dye degradation due to its cost‐effectiveness, ease of recovery, and use of green technology. Precisely, iron‐doped cadmium sulfide (CdS) exhibits greater efficiency because of its higher charge separation, more electron transfer efficiency, and adsorption under visible region. In this study, two different ratios of iron‐doped cadmium sulfide (Cd (1‐x) Fe (x) S/GO) nanocomposites such as Cd 0.95 Fe 0.05 S/GO and Cd 0.90 Fe 0.10 S/GO were synthesized using the coprecipitation method and characterized with UV‐Vis DRS, XRD, FT‐IR, Raman, XPS, and HR‐TEM. The nanocomposites have been employed to degrade the methyl orange under visible region and optimize the dopant ratio, amount of catalyst, and pH. From the results, it is observed that the composition with a high percentage of iron‐doped CdS such as Cd 0.90 Fe 0.10 S/GO displayed better photocatalytic properties and improved the optimum ratio (0.9:0.1 for Cd:Fe). This may be attributed to the highest charge separation, increased number of defective sites, and enhanced visible‐range adsorption owing to Fe doping. In addition to that, doping results reduce the band gap and size of the nanoparticles. It also increases recycling efficiency, reaching 93% after 10 cycles.
科研通智能强力驱动
Strongly Powered by AbleSci AI