Performance Enhancement of Silicon Photodiodes Through the Integration of Green Synthesized Reduced Graphene Oxide Variants

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Date

2024

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Iop Publishing Ltd

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Green Open Access

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Abstract

This study examines the potential of enhancing the optoelectronic properties of silicon photodiodes by producing and analyzing heterostructures that incorporate reduced graphene oxide (rGO) synthesized with silicon using different reduction methods. Graphene oxide (GO) was manufactured utilizing an enhanced Hummers' method. Subsequently, reduced graphene oxides (rGOs) were made by chemical and thermal reduction processes, which are considered ecologically friendly. The use of ascorbic acid to produce ascorbic acid-reduced graphene oxide (ArGO) and thermal processing to produce thermally reduced graphene oxide (TrGO) have significantly contributed to the development of high-performance photodiode technology. The electrical properties were carefully assessed under different levels of light, revealing the substantial impact of integrating reduced graphene oxides (rGOs) on the performance of the diodes. Comparing ArGO/Si, TrGO/Si, and GO/Si heterostructures shows that customized rGO has the potential to greatly influence the responsivity and efficiency of Si-based optoelectronic devices, making a significant contribution to photodiode technology.

Description

YILDIRIM, MURAT/0000-0002-4541-3752; Yildiz, Dilber Esra/0000-0003-2212-199X; SURUCU, Ozge/0000-0002-8478-1267

Keywords

reduced graphene oxide (rGO), silicon photodiodes, optoelectronic devices, photodiode performance enhancement, graphene-silicon interface

Turkish CoHE Thesis Center URL

Fields of Science

0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences

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Q2

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Source

Physica Scripta

Volume

99

Issue

9

Start Page

095913

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Scopus : 2

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Mendeley Readers : 4

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