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Preparation and Spectroscopic, Microscopic, Thermogravimetric, and Electrochemical Characterization of Silver-Doped Cerium(IV) Oxide Nanoparticles

机译:银掺杂铈(IV)氧化物纳米粒子的制备和光谱,微观,热重度和电化学表征

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Silver ion-doped cerium oxide nanoparticles were prepared by polyol-based coprecipitation. Here, the impact of silver doping is evaluated on the crystallographic, optoelectronic, thermogravimetric, and redox behavior of cerium oxide nanoparticles. Spectroscopic techniques were used to characterize the phase purity, crystallinity, morphological structure, and optical and redox properties of nanoproducts. X-ray diffraction confirmed the formation of well-crystallized cerium oxide tetragonal fluorite. The optical absorption spectra and band gap energy were significantly affected following doping that was influenced by the crystalline size. Temperature production reduction investigated the influence of silver concentration on the redox properties of cerium oxide nanoparticles. These catalysts were reversible in cyclic redox reaction to 500 degrees C, nonpyrophoric, and therefore demonstrated potential for applications for hydrogen generation for fuel cells and electrochemical biosensors.
机译:通过多元醇类共沉淀制备银离子掺杂的氧化铈纳米粒子。 这里,在氧化铈纳米颗粒的晶体,光电,热重度和氧化还原行为上评价银掺杂的影响。 光谱技术用于表征纳米替代的相纯度,结晶度,形态学结构和光学和氧化还原性能。 X射线衍射证实了结晶氧化铈四方氟土的形成。 在受晶粒尺寸影响的掺杂后,光学吸收光谱和带隙能量显着影响。 温度降低研究了银浓度对氧化铈纳米颗粒的氧化还原性质的影响。 这些催化剂在循环氧化还原反应中可逆至500℃,非渗透性,因此证明了燃料电池和电化学生物传感器的氢产生的潜力。

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