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首页> 外文期刊>Separation and Purification Technology >Comparative study of metal (Al, Mg, Ni, Cu and Ag) doped ZnO/g-C3N4 composites: Efficient photocatalysts for the degradation of organic pollutants
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Comparative study of metal (Al, Mg, Ni, Cu and Ag) doped ZnO/g-C3N4 composites: Efficient photocatalysts for the degradation of organic pollutants

机译:金属(Al,Mg,Ni,Cu和Ag)掺杂ZnO / G-C3N4复合材料的对比研究:有机污染物降解的高效光催化剂

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摘要

In present work comparative photocatalytic activity of M doped ZnO/g-C3N4 (M = Al, Mg, Ni, Cu and Ag) composites synthesized via one-pot pyrolysis technique have been addressed in the degradation of EBT dye. XRD results revealed that metals ions were successfully introduced into the framework of ZnO/g-C3N4. Optical properties of the composites showed red shift in the light absorption and inhibited charge carriers' recombination rate. Cu doped ZnO/g-C3N4 catalyst showed the maximum photocatalytic EBT degradation of 99% after 90 min of visible light illumination. The effect of operational parameters (catalyst dose and initial dye concentration) on the extent of the photocatalytic performance was also been studied. The significant improvement in the photocatalytic EBT degradation efficiency was assigned to decrease in the optical band gap, high surface area and inhibited electron-hole recombination rate, identifying the significance of dopnats into ZnO/g-C3N4. The catalysts revealed excellent photostability of 99% after 15 successive cycles. Photoelectrochemical (PEC) measurements showed that metal doped ZnO/g-C3N4 composites have effectively increased the charge separation and declined the electron-hole recombination rate. A physical mechanism was proposed to explain the observed increase in the photocatalytic activity. At the end, photocatalytic test for the Basic Red 51 degradation was also studied to determine the effectiveness of the synthesized catalysts.
机译:在目前的工作中,通过单盆热解技术合成的M掺杂的ZnO / G-C3N4(M = Al,Mg,Ni,Cu,Ni,Cu和Ag)复合材料的对比光催化活性已经解决了EBT染料的降解。 XRD结果显示,金属离子被成功地引入ZnO / G-C3N4的框架中。复合材料的光学性质在光吸收和抑制电荷载体的重组速率下显示出红移。 Cu掺杂的ZnO / G-C3N4催化剂显示出90分钟的可见光照射后的最大光催化EBT降解99%。还研究了操作参数(催化剂剂量和初始染料浓度)对光催化性能程度的影响。分配光催化EBT降解效率的显着改善以降低光带间隙,高表面积和抑制电子 - 空穴重组率,鉴定Dopnats进入ZnO / G-C3N4的显着性。催化剂在连续15次循环后显示出优异的光稳定性为99%。光电化学(PEC)测量表明,金属掺杂的ZnO / G-C3N4复合材料有效地增加了电荷分离并下降了电子空穴重组率。提出了物理机制来解释观察到的光催化活性的增加。最后,还研究了基本红色51降解的光催化试验,以确定合成催化剂的有效性。

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