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Development of green synthesized nanomaterials for hybrid vehicle applications

Dayanand Bhaurao Jadhav (Electronics and Telecommunication Engineering, Dr Babasaheb Ambedkar Marathwada University, Aurangabad, India) (Electronics and Telecommunication Engineering, MGM's College of Engineering and Technology, Navi Mumbai, India)
Rajendra D. Kokate (Department of Instrumentation Engineering, Government College of Engineering, Jalgaon, India) (Instrumentation Engineering, College of Engineering Pune, Pune, India)

International Journal of Intelligent Unmanned Systems

ISSN: 2049-6427

Article publication date: 19 November 2021

58

Abstract

Purpose

Renewable energy alternatives and nanoscale materials have gained huge attention in recent years due to the problems associated with fossil fuels. The recyclable battery is one of the recent developments to address the energy requirement issues. In this work, the development of nanoscale materials is focused on using green synthesis methods to address the energy requirements of hybrid electric vehicles.

Design/methodology/approach

The current research focuses on developing metal oxide nanoscale materials (NANO-SMs). The Zno-Aloe vera NANO-SM is prepared using the green synthesis method. The developed nanoscale materials are characterized using analysis methods like FESEM, TEM, XRD and FTIR.

Findings

The average size of ZnO-Aloe vera mono-crystalline was recorded as 60–70 nm/Hexagonal shape. The nanoscale materials are used for the detection of LPG gases. The sensitivity observed was 48%. The response time and recovery time were recorded as 8–10 s and 230–250 s, respectively. The average size of SnO2-green papaya leaves poly-crystalline was recorded as 10–20 nm/powder form.

Originality/value

Nanoscale materials are developed using green synthesis methods for hybrid vehicle applications. The nanoscale materials are used for the detection of harmful gases in hybrid vehicles.

Keywords

Citation

Jadhav, D.B. and Kokate, R.D. (2021), "Development of green synthesized nanomaterials for hybrid vehicle applications", International Journal of Intelligent Unmanned Systems, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1108/IJIUS-07-2021-0085

Publisher

:

Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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