Solid State Device from Plant Extracts

Author:

Emetere M.E.,Chijuo C.,Afolalu S.A.

Abstract

Abstract The infusion of green solution into solid-state technology is timely at a time where land, air, and water pollution (from electronic waste) is high in most parts of the globe. At the moment, several research works have proven that plant extract doped with metallic compound exhibits high electrical, optical and chemical properties. In this research we examine two different plant extracts with different dopant. The special opto-transport property of the synthesized compounds was examined using an unconventional characterization technique. It was observed that both compounds can be identified as solid-state device with remarkable optical properties.

Publisher

IOP Publishing

Subject

General Medicine

Reference15 articles.

1. An overview of energy efficient solid state LED driver topologies;Yadlapalli;Int. J. of Energy Research,2019

2. A Simple Technique for Sustaining Solar Energy Production in Active Convective Coastal Regions;Emetere;International Journal of Photoenergy 2016,2016

3. The temperature characteristics of bipolar transistors fabricated in CMOS technology;Wang;Sens. Actuators A,2000

4. Programmable Single-Electron Transistor Logic for Future Low-Power Intelligent LSI: Proposal and Room-Temperature Operation;Uchida;IEEE Transactions on Electron Devices,2003

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