Surendra Bs, Gurushantha K, Sampath Chinnam, Vijaya VShanbhag, Kiran T, Chandrasekhar M, Manjula Sn, Shobha G, Ananda Murthy Hc
{"title":"Electrochemical-sensor, antimicrobial and Environmental Assessments of Bi <sup>3+</sup> :Mg <sub>(1−</sub> <i> <sub>x)</sub> </i> Zr <i> <sub>x</sub> </i> O <sub>4</sub> NPs synthesized by bio-mediated combustion method","authors":"Surendra Bs, Gurushantha K, Sampath Chinnam, Vijaya VShanbhag, Kiran T, Chandrasekhar M, Manjula Sn, Shobha G, Ananda Murthy Hc","doi":"10.1080/28361466.2023.2266366","DOIUrl":null,"url":null,"abstract":"The reported research elucidates on a facile Phyllanthus acidus green-assisted solution combustion process developed for the synthesis of Bi3+:Mg(1−x) Zrx O4 nanoparticles (BMZ-NPs) and evaluation of their multifunctional applications. PXRD investigation shows the structural evidences and average-particle size (∼ 30-44) nm of prepared BMZ NPs. SEM-EDAX characterizes the surface-morphology and chemical constituents of BMZ-NPs. The band gap energy (Eg) values of undoped and Bi doped MgZrO4 NPs (0.01-0.05 mol%) were noted between 3.86 to 2.8 eV, investigated by UV-Visible spectral techniques. The electrochemical analysis of prepared samples revealed a good sensor activity towards paracetamol drug chemical detection under both acidic and basic electrolytic media. An excellent photo-degradation activity was noted for BMZ-NPs on AO-7 as model dye and shows 91.4% at 90 min under irradiation of UV Visible-light. Additionally, the antibacterial activity of BMZ NPs against gram + ve and gram -ve bacteria was examined in well diffusion agar technique. The obtained diameter of zone inhibition illustrates BMZ NPs hinders the growth of S. aureus bacteria (5.2 mm against antibiotic streptomycin of 2 mm) much more effectively than E. coli (5.2 mm against ampicillin of 7.7 mm). These results are confirms that the BMZ NPs is an potential candidate for catalytic, sensor and optoelectronic device applications.","PeriodicalId":6299,"journal":{"name":"2008 3rd International Conference on Sensing Technology","volume":"55 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-10-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2008 3rd International Conference on Sensing Technology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1080/28361466.2023.2266366","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The reported research elucidates on a facile Phyllanthus acidus green-assisted solution combustion process developed for the synthesis of Bi3+:Mg(1−x) Zrx O4 nanoparticles (BMZ-NPs) and evaluation of their multifunctional applications. PXRD investigation shows the structural evidences and average-particle size (∼ 30-44) nm of prepared BMZ NPs. SEM-EDAX characterizes the surface-morphology and chemical constituents of BMZ-NPs. The band gap energy (Eg) values of undoped and Bi doped MgZrO4 NPs (0.01-0.05 mol%) were noted between 3.86 to 2.8 eV, investigated by UV-Visible spectral techniques. The electrochemical analysis of prepared samples revealed a good sensor activity towards paracetamol drug chemical detection under both acidic and basic electrolytic media. An excellent photo-degradation activity was noted for BMZ-NPs on AO-7 as model dye and shows 91.4% at 90 min under irradiation of UV Visible-light. Additionally, the antibacterial activity of BMZ NPs against gram + ve and gram -ve bacteria was examined in well diffusion agar technique. The obtained diameter of zone inhibition illustrates BMZ NPs hinders the growth of S. aureus bacteria (5.2 mm against antibiotic streptomycin of 2 mm) much more effectively than E. coli (5.2 mm against ampicillin of 7.7 mm). These results are confirms that the BMZ NPs is an potential candidate for catalytic, sensor and optoelectronic device applications.