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Nanostructured CeO2 for selective-sensing and smart photocatalytic applications

机译:纳米结构CEO2用于选择性感应和智能光催化应用

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Well crystalline CeO2 nanoparticles have been successfully synthesized via solution combustion synthesis (SCS) using (NH4)(2)[Ce(NO3)(6)] and C4H6O6 as oxidizer and fuel. The structural characteristics of as-synthesized material were investigated in terms of FESEM, HRTEM, EDS, XRD, FTIR and UV-Vis spectroscopy techniques. The surface area of synthesized CeO2 nanoscale material was obtained from BET plot. Results showed a pure, well-crystallized, flake-like mesoporous material to be formed with crystallite size of 18.86 nm. The focus of this study was to investigate the application of as-synthesized CeO2 nanomaterial for sensing and photocatalytic degradation of picric acid (PA) in its aqueous solution. It was found to be highly selective for PA detection in aqueous solution when compared with other aromatic compounds. Detection limit (0.52 mu M) for PA when compared with earlier studies was found to be much better. In addition, 0.05 gm of as-synthesized CeO2 nanomaterial is found to be optimum amount ensuring maximum catalytic photodegradation of 10 ppm PA in aqueous solution. These experimental findings point out that as-synthesized CeO2 nanomaterial can be efficiently used as an effective chemical sensor and photocatalyst.
机译:通过溶液燃烧合成(2)(2)[Ce(NO 3)(6)]和C4H6O6作为氧化剂和燃料,已经通过溶液燃烧合成(SCS)成功地合成了井结晶CeO2纳米颗粒。根据FESEM,HRTEM,EDS,XRD,FTIR和UV-VIS光谱技术研究了用合成材料的结构特征。合成的CeO2纳米级材料的表面积从BET图获得。结果显示纯净,结晶的片状的介孔材料,以形成18.86nm的微晶尺寸。本研究的重点是研究AS合成的CEO2纳米材料在其水溶液中进行吡啶酸(PA)的感测和光催化降解的应用。与其他芳族化合物相比,发现在水溶液中的PA检测是高度选择性的。发现与早期研究相比PA的检测限(0.52μm)更好。此外,发现0.05克的AS合成的CEO2纳米材料是最佳的,确保在水溶液中最大催化光降解10ppm PA。这些实验结果指出,可以用合成的CeO2纳米材料被有效地用作有效的化学传感器和光催化剂。

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