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Carbon Quantum Dots Derived from Spent Local Liberica Coffee Ground for Applications in Electric Double-layer Capacitor (EDLC)

发表日期 June 11, 2024 (DOI: https://doi.org/10.54985/peeref.2406p2990568)

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作者

Grishika Arora1 , HK Jun1
  1. UTAR

会议/活动

The Peeref International Poster Challenger: Summer 2024, June 2024 (虚拟会议)

海报摘要

Carbon quantum dots (CQDs) represent a relatively recent advancement in carbon nanomaterials, characterized by a sp2/sp3 conjugated core adorned with abundant functional groups such as aldehyde, hydroxyl, and carboxyl. These particles typically exhibit a quasi-spherical shape and are typically smaller than 10 nm. CQDs possess exceptional compactness compared to other carbon materials, resulting in uniform dispersion, improved electron transfer/reservoir capabilities, and a unique structure. In the context of next-generation energy storage applications, CQDs hold significant promise as electrode materials. This study aims to explore the potential of CQDs derived from locally sourced spent coffee grounds as electrode materials to enhance the performance of flexible electric double-layer capacitors (EDLCs). Our objectives include characterizing the synthesized CQDs, optimizing the fabrication process, and evaluating the electrochemical performance of the fabricated EDLCs.

关键词

Carbon quantum dots, Supercapacitor, Polymer electrolyte, Spent coffee ground, Specific capacitance

研究领域

Material Sciences, Nanoengineering, Physics

参考文献

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利益冲突
No competing interests were disclosed.
数据可用性声明
The datasets generated during and / or analyzed during the current study are available from the corresponding author on reasonable request.
知识共享许可协议
Copyright © 2024 Arora et al. This is an open access work distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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引用
Arora, G., Jun, H. Carbon Quantum Dots Derived from Spent Local Liberica Coffee Ground for Applications in Electric Double-layer Capacitor (EDLC) [not peer reviewed]. Peeref 2024 (poster).
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