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介孔洋葱状碳纳米结构源于天然油脂,可用于高性能超级电容器和电化学传感应用:对合成后超声处理对电化学性能影响的深入了解。

Mesoporous onion-like carbon nanostructures from natural oil for high-performance supercapacitor and electrochemical sensing applications: Insights into the post-synthesis sonochemical treatment on the electrochemical performance.

机构信息

Materials Science Research Laboratory, Department of Physics and Electronics, CHRIST (Deemed to be University), Bengaluru 560029, Karnataka, India.

Materials Science Research Laboratory, Department of Physics and Electronics, CHRIST (Deemed to be University), Bengaluru 560029, Karnataka, India.

出版信息

Ultrason Sonochem. 2021 Nov;79:105767. doi: 10.1016/j.ultsonch.2021.105767. Epub 2021 Sep 24.

DOI:10.1016/j.ultsonch.2021.105767
PMID:34592598
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8482498/
Abstract

Although onion-like carbon nanostructures (OLCs) are attractive materials for energy storage, their commercialization is hampered by the absence of a simple, cost-effective, large-scale synthesis route and binder-free electrode processing. The present study employs a scalable and straightforward technique to fabricate sonochemically tailored OLCs-based high-performance supercapacitor electrode material. An enhanced supercapacitive performance was demonstrated by the OLCs when sonicated in DMF at 60 °C for 15 min, with a specific capacitance of 647 F/g, capacitance retention of 97% for 5000 cycles, and a charge transfer resistance of 3 Ω. Furthermore, the OLCs were employed in the electrochemical quantification of methylene blue, a potential COVID-19 drug. The sensor demonstrated excellent analytical characteristics, including a linear range of 100 pM to 1000 pM, an ultralow sensitivity of 64.23 pM, and a high selectivity. When used to identify and quantify methylene blue in its pharmaceutical formulation, the sensor demonstrated excellent reproducibility, high stability, and satisfactory recovery.

摘要

虽然洋葱状碳纳米结构(OLC)是储能有吸引力的材料,但由于缺乏简单、经济高效、大规模的合成路线和无粘结剂的电极处理,其商业化受到阻碍。本研究采用可扩展且简单的技术,制造基于超声处理的 OLC 的高性能超级电容器电极材料。在 DMF 中于 60°C 超声处理 15 分钟,增强了 OLC 的超级电容性能,比电容为 647 F/g,5000 次循环后电容保持率为 97%,电荷转移电阻为 3 Ω。此外,OLC 被用于电化学定量测定亚甲蓝,一种潜在的 COVID-19 药物。该传感器表现出优异的分析特性,包括 100 pM 至 1000 pM 的线性范围、超低的灵敏度 64.23 pM 和高选择性。当用于鉴定和定量其药物制剂中的亚甲蓝时,该传感器表现出良好的重现性、高稳定性和令人满意的回收率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddc1/8482498/be0575123375/ga1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddc1/8482498/be0575123375/ga1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddc1/8482498/be0575123375/ga1.jpg

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