Synthesis and characterization of Ag-doped cerium oxide nanoparticles for electromagnetic radiation shielding

Author:

Munirathnam Rajachari12,Seenappa Lakshmaiah2,Manjunatha Holaly Chandrashekara Shastry2ORCID,Vidya Yalekadakalu Shivanna3ORCID,Sridhar Krishnachari Nagarthnamma4,Manjunath Shivanna5,Veera Rethina Murugan Subramaniam1,Nagaiah Ningaiah6

Affiliation:

1. Rajah Serfoji Government College (Autonomous) Department of Physics, , Thanjavur, Tamil Nadu 613005, India

2. Government College for Women Department of Physics, , Kolar, Karnataka 563101, India

3. Lal Bahadur Shastri Government First Grade College Department of Physics, , RT Nagar, Bengaluru, Karnataka 560032, India

4. Government First Grade College Department of Physics, , Kolar, Karnataka 563101, India

5. B.M.S. College of Engineering Department of Chemistry, , Bengaluru, Karnataka 560019, India

6. Bangalore University Department of Physics, , Bengaluru, Karnataka 560056, India

Abstract

Abstract In the current study, CeO2: Ag (0 and 11 mol) nanoparticles (NPs) were synthesized by solution combustion method using Aloevera extract as reducing agent. As-obtained NPs were characterized by standard techniques. Bragg’s reflections confirm the formation of a single-phase cubic structure of CeO2:Ag NPs. Crystalline size is calculated using both the W–H plot and Scherrer’s equation. Crystallite size found to decrease with increase in the dopant concentration. EDAX pattern confirmed the presence of Ce, O and Ag. Direct energy band calculated using Wood and Tauc’s was found to be in the range of 2.9–2.2 eV for 0 and 11 mol, respectively. Fourier transformation infrared spectroscopy (FTIR) analysis confirmed the presence of the functional groups. Total shielding efficiency (SET) will give the best representation of EMI shielding properties. SET values calculated for a wide range of wavelengths are found to be as follows: near infrared (1.65 × 102 dB), mid infrared (9.78 × 101 dB) and far infrared (6.32 × 101 dB), followed by microwave region (MW) (6.46 × 101 dB), ultra-high frequency (UHF) (7.31 × 101 dB), very high frequency (VHF) (8.27 × 101 dB), high frequency (HF) (9.26 × 101 dB), medium frequency (MF) (1.02 × 102 dB), low frequency (LW) (1.12 × 102 dB), very low frequency (VLF) (1.22 × 102 dB), ultra-low frequency (ULF) (1.42 × 102 dB) and extremely low frequency (ELF) (1.52 × 102 dB). SET values of CeO2:Ag NPs are compared with other traditional materials and nanocomposites and found to be potential use in EMI shielding applications.

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

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