Green synthesis capacitor of carbon quantum dots from Stachys euadenia

Author:

Baslak Canan1,Demirel Serkan2,Dogu Suleyman3,Ozturk Gulsah4,Kocyigit Adem5ORCID,Yıldırım Murat4

Affiliation:

1. Department of Chemistry, Science Faculty Selcuk University Konya Turkey

2. Vocational High School, Department of Electric and Energy Igdir University Igdir Turkey

3. Meram Vocational School Necmettin Erbakan University Konya Turkey

4. Department of Biotechnology, Science Faculty Selcuk University Konya Turkey

5. Vocational High School, Department of Electronic and Automation Bilecik Seyh Edebali University Bilecik Turkey

Abstract

AbstractCarbon quantum dots (CQDs) are a new type of carbon nanomaterial that has recently attracted great attention as a potential competitor to standard semiconductor quantum dots. There are various ways to synthesis CQDs, and one of harmless way is undoubtedly green synthesis. In this study, hydrothermal synthesis based on the green way was employed to synthesize CQDs. The CQDs were obtained using the green leaves of the Stachys euadenia plant extract, an endemic species located in Turkey. The CQDs were characterized by fluorescent and UV‐Visible spectroscopy, and results confirmed blue emission (430–480 nm) and absorption around 280 nm. X‐ray photoelectron spectroscopy (XPS) analysis revealed C=C, C–N and C–O interactions. X‐ray diffractometer (XRD) patterns confirmed structure of carbon with a broad peak of (002) plane. High resolution tunneling electron microscopy (HRTEM) and dynamic light scattering (DLS) analysis was used to determine the shape and size of CQDs. The CQDs obtained from Stachys euadenia were employed as electrode materials for capacitor application, and they were tested in Swagelok‐type cell by cyclic voltammetry (CV) measurements. CQD capacitors exhibited 2.12 F/g charge and 1.24 F/g discharge capacitances were obtained with ~58% coulombic efficiency rate for the first cycle. Results highlights that CQDs are synthesized successfully by green synthesis method and can be used for capacitor applications.

Publisher

Wiley

Subject

General Environmental Science,Waste Management and Disposal,Water Science and Technology,General Chemical Engineering,Renewable Energy, Sustainability and the Environment,Environmental Chemistry,Environmental Engineering

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