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Study of Copper Doped Zirconium Dioxide Nanoparticles Synthesized via Sol-Gel Technique for Photocatalytic Applications

机译:光催化应用溶胶技术合成掺杂二氧化锆二氧化锆纳米粒子的研究

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In the present work, undoped and Cu-doped ZrO(2)nanoparticles with a different weight percentage of copper (0 to 0.05 wt%) are synthesized by sol-gel technique. From XRD analysis, the observed peaks corresponding to the plane match well with the JCPDS data of tetragonal ZrO2. Microstructural analysis shows that the average crystallite size decreases from 6.96 to 5.73 nm when the Cu content increases from 0 to 0.05 wt%. From FTIR analysis the peaks observed at 489 and 429 cm(-1)confirm the tetragonal Zirconia. From the morphology, the shape of the synthesized nanoparticles is observed to be spherical and the average particle size (using ImageJ) is found to vary from 30 to 7.18 nm when the dopant concentration increases from 0 to 0.05 wt%. The presence of Zr, Cu, and O in the prepared samples are confirmed by EDS analysis. The optical analysis shows that the optical absorption is blue-shifted when Cu content increases from 0 to 0.05 wt% and it is attributed to the confinement of charge carriers. Bandgap (Eg) analysis shows the transitions are direct allowed and the Eg value increases from 3. 27 to 3. 35 eV when Cu content increases from 0 to 0.05 wt%. From PL analysis, the peak at 389 nm is attributed to the ionized oxygen vacancies (F and F centers) from CB. From the photocatalytic analysis, undoped and Cu-doped ZrO(2)used as the catalyst for the degradation of Alizarin Yellow is found to be faster for 0.05 wt% of Cu-doped ZrO2(S3) than undoped (S1) and 0.03 wt% of Cu-ZrO2(S2) which is attributed to the crystallite size of the 0.05 wt% of Cu-doped ZrO(2)nanoparticles.
机译:在本作的工作中,通过溶胶 - 凝胶技术合成了具有不同重量百分比的铜(0至0.05wt%)的未掺杂和Cu掺杂的ZrO(2)纳米颗粒。从XRD分析,观察到与平面对应的峰值匹配,与四方ZrO2的JCPDS数据相匹配。微结构分析表明,当Cu含量从0升至0.05wt%时,平均微晶尺寸从6.96降至5.73nm。从FTIR分析到489和429cm(-1)观察到的峰确认四边形氧化锆。从形态学中,观察到合成纳米颗粒的形状是球形的,并且当掺杂剂浓度从0到0.05wt%增加时,发现平均粒度(使用ImageJ)在30至7.18nm之间变化。通过EDS分析证实制备样品中Zr,Cu和O的存在。光学分析表明,当Cu含量从0升至0.05wt%时,光学吸收是蓝色换档,并且归因于电荷载体的限制。带隙(例如)分析显示过渡是直接允许的,并且当Cu含量从0到0.05wt%增加时,例如值从32到3. 35eV增加。根据PL分析,389nm处的峰值归因于Cb的电离氧空位(F和F中心)。从光催化分析,未掺杂和Cu掺杂的ZrO(2)用作茜素黄色的降解的催化剂,对于0.05wt%的Cu掺杂的ZrO 2(S3)比未掺杂为0.05wt%(S1)和0.03wt%归因于0.05wt%的Cu掺杂Zro(2)纳米颗粒的微晶尺寸的Cu-ZrO2(S2)。

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