胶体溶液燃烧法制备Ce0.7La0.15Ca0.15O2−δ纳米颗粒:研究结构、理化性质及刚果红染料的光降解

A. Midouni, A. Chaouachi, Sami Barkaoui, Nejib Abassi, Samir Chakhari, A. Mahjoubi, D. Ghernaout, A. Hamzaoui, Muhammad Imran Khan, N. Elboughdiri
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摘要

研究了刚果红(CR)染料在可见光照射下的增强光降解。以胶体二氧化硅为模板,采用胶体溶液燃烧合成法制备了共掺杂氧化铈(Ce0.7La0.15Ca0.15O2−δ)。通过衍射、扫描电子显微镜、拉曼光谱、差热分析、热氧化锆重量分析、紫外可见光谱和光致发光测量来评估合成的氧化铈(CeO2,简称ceria)纳米颗粒的表征。结果表明,该晶体具有空间群Fd-3 m的立方尖晶石结构(JCPDS卡号34-0394),平均尺寸在23 ~ 92 nm之间,能带能在2.69 ~ 2.73 eV之间。通过对CR染料在太阳照射下的光降解,研究了所制备的氧化铈的光催化活性。在二氧化铈催化剂光照射180 min后,CR的吸光度几乎为零。使用加入1.0 ml胶体二氧化硅制备的共掺杂氧化铈,记录了最高的降解率~ 13.7 × 10−4 min−1。这种激发活性可归因于最小粒径~ 23 nm,最小晶格参数a = 5.4511 Å和催化剂的最高带隙~ 2.73 eV。研究表明,二氧化铈纳米颗粒在废水清洗剂中具有广泛的应用前景。二氧化铈催化剂可能是理想的光催化剂材料,紫外线过滤器和光电器件。
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Ce0.7La0.15Ca0.15O2−δ nanoparticles synthesis via colloidal solution combustion method: Studying structural and physicochemical properties and Congo Red dye photodegradation
The present work described the enhanced photodegradation of the Congo Red (CR) dye under visible light irradiation. The co-doped ceria (Ce0.7La0.15Ca0.15O2−δ) was prepared by the colloidal solution combustion synthesis way using colloidal silica as a template. The characterization of the as-synthesized cerium oxide (CeO2, known as ceria) nanoparticles was assessed by diffraction, scanning electron microscopy, Raman spectroscopy, differential thermal analysis, thermοgravimetric analysis, ultraviolet (UV)–visible spectroscopy, and photoluminescence measurements. It revealed the cubic spinel structure with space group Fd-3 m (JCPDS card No. 34-0394), average size between 23 and 92 nm, and bandgap energy from 2.69 to 2.73 eV. The photodegradation of the CR dye under solar irradiation allowed studying the photocatalytic activities of the prepared ceria. After 180 min of light irradiation with the ceria 2 catalyst, CR absorbance was almost nil. The highest degradation rate ∼13.7 × 10−4 min−1 was recorded using co-doped ceria prepared with adding 1.0 ml of colloidal silica. This exciting activity can be attributed to the smallest particle size ∼23 nm, the smallest lattice parameter a = 5.4511 Å, and the catalyst’s highest bandgap ∼2.73 eV. Based on the investigation, ceria 2 nanoparticles have many possible uses in wastewater cleaning agent. Ceria 2 catalysts might be ideal for photocatalyst materials, UV filters, and photoelectric devices.
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