Green Synthesis of Ceria Nanoparticles Using Azadirachta Indica Plant Extract: Characterization, Gas Sensing and Antibacterial Studies

S. Ahire, A. Bachhav, T. B. Pawar, A. V. Patil, Swapnil Sampatrao Shendge, P. B. Koli
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引用次数: 1

Abstract

In the present investigation we have fabricated the cerium dioxide (CeO2) nanoparticles by green route. While preparing the cerium dioxide nanoparticles by co-precipitation method, Neem leaf extract mixed into the precursor of cerium. The synthesized nanoparticles of CeO2 were used for the preparation of thick film sensor by using screen printing strategy. The fabricated CeO2 sensor was characterized by XRD, SEM, EDS and TEM techniques. The structural characteristics investigated by x-ray diffraction technique (XRD). XRD confirms the formation of cubic lattice of CeO2 material. The surface, texture, porosity characteristics were investigated from SEM analysis, while chemical composition of the material was analysed by EDS technique. The transmission electron microscopy (TEM) confirms the formation cubic lattice of the cerium dioxide material. The thickness of the films was calculated from mass difference method, the prepared film sensors belong to thick region. The fabricated material CeO2 sensor was applied as gas sensor to sense the gases such as LPG, petrol vapors (PV), toluene vapors (TV) and CO2. The CeO2 sensor showed excellent gas response for LPG and PV, nearly 93.20 % and 78.23 % gas response. The rapid response and recovery of the prepared sensors was observed at the tested gases. CeO2 material also employed for antibacterial study at several pathogenic organism such as pseudomonas, staphylococcus aureus and salmonella typhae. From antibacterial study it was observed that the material is capable of inhibiting the growth of these pathogenic microbes.
利用印楝植物提取物绿色合成纳米二氧化铈:表征、气敏及抗菌研究
在本研究中,我们采用绿色路线制备了二氧化铈纳米颗粒。在共沉淀法制备二氧化铈纳米颗粒时,将印楝叶提取物混合到铈前驱体中。采用丝网印刷的方法,将合成的CeO2纳米颗粒用于制备厚膜传感器。采用XRD、SEM、EDS、TEM等技术对所制备的CeO2传感器进行了表征。用x射线衍射技术(XRD)研究了其结构特征。XRD证实了CeO2材料立方晶格的形成。利用扫描电镜(SEM)分析了材料的表面、织构和孔隙度特征,并用能谱分析仪(EDS)分析了材料的化学成分。透射电镜(TEM)证实了二氧化铈材料的立方晶格的形成。用质量差法计算薄膜的厚度,制备的薄膜传感器属于厚区。利用所制备的CeO2传感器作为气体传感器,对LPG、汽油蒸气(PV)、甲苯蒸气(TV)和CO2等气体进行了传感。CeO2传感器对LPG和PV的气体响应性能优异,分别达到93.20%和78.23%。实验结果表明,所制备的传感器对被测气体具有快速的响应和恢复能力。CeO2材料还被用于几种病原菌的抗菌研究,如假单胞菌、金黄色葡萄球菌和伤寒沙门氏菌。从抗菌研究中观察到,该材料能够抑制这些病原微生物的生长。
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