On the Rapid Synthesis of Reduced Graphene Oxide via Ultrasound‐Promoted Eco‐Friendly Reduction Approach and Its Effects on Physicochemical Properties

Author:

Lam Shuen1,Wang Fei1,Yeap Swee Pin12ORCID,Teng Kah Hou23,Shaw Andy4,Karunamoothei Vijayakumar4,Khosravi Vahid12,Liu Chengyi5

Affiliation:

1. Department of Chemical & Petroleum Engineering Faculty of Engineering Technology & Built Environment UCSI University Kuala Lumpur 56000, Cheras Malaysia

2. UCSI-Cheras Low Carbon Innovation Hub Research Consortium Kuala Lumpur Malaysia

3. Department of Mechanical and Mechatronics Engineering Faculty of Engineering, Technology and Built Environment UCSI University Kuala Lumpur 56000 Malaysia

4. Built Environment and Sustainable Technologies (BEST) Research Institute Liverpool John Moores University United Kingdom

5. School of Electronic and Information Engineering Changshu Institute of Technology Suzhou 215500 China

Abstract

AbstractThe common synthesis approach of reduced graphene oxide (rGO) using toxic reducing agents poses a threat to environmental pollution. This study used banana peel extract as a green reducing agent for the synthesis of rGO. Ultrasonication was assimilated to expedite the synthesis process. For comparison, rGO was also produced by reducing GO with hydrazine treatment under conventional stirring. Both morphological (SEM) and physicochemical (FTIR and XRD) studies have revealed that banana peel extract can reduce GO to rGO, although its reducing effect is much weaker compared to hydrazine. Despite this, the rGO produced using banana peel extract with the assimilation of ultrasonication technique has a greater interlayer spacing than that formed under the conventional stirring method. In terms of electrical properties, the electrical conductance of hydrazine‐produced rGO (5.69×10−6 S) is higher than the banana peel extract‐produced rGO (3.55×10−6 S–4.56×10−6 S). Interestingly, it was found that most of the rGO produced by banana peel extract under ultrasound assistance has higher or comparable electrical conductance compared to the rGO produced by banana peel extract under stirring method. This implies the feasibility of using short‐period ultrasound to replace conventional stirring in rGO synthesis.

Publisher

Wiley

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