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碳酸甘油酯和碳酸缩酮作为用于超级电容器和钾电池的循环经济基石

Glycerol Carbonate and Solketal Carbonate as Circular Economy Bricks for Supercapacitors and Potassium Batteries.

作者信息

Prete Prisco, Trano Sabrina, Zaccagnini Pietro, Fagiolari Lucia, Amici Julia, Lamberti Andrea, Proto Antonio, Bella Federico, Cucciniello Raffaele

机构信息

Department of Chemistry and Biology "Adolfo Zambelli", University of Salerno, Via Giovanni Paolo II 132, 84084, Fisciano, Italy.

Department of Applied Science and Technology, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Torino, Italy.

出版信息

ChemSusChem. 2024 Dec 20;17(24):e202401636. doi: 10.1002/cssc.202401636. Epub 2024 Oct 18.

Abstract

Considering the worldwide market of batteries and supercapacitors, the (partial or total) replacement of conventional fossil-derived carbonates with bio-based ones in electrolyte formulations would allow the production of safer and more sustainable devices. In this work, embracing the 7 principle of green chemistry, glycerol derivatives (namely glycerol carbonate and solketal carbonate) are tested as solvents and additives for electrolyte formulations. Glycerol carbonate is innovatively employed as promising electrolyte solvent for electric double-layer capacitors with excellent performances. On the other hand, a solketal carbonate-laden liquid electrolyte is investigated for potassium-based batteries, showing a rather stable electrochemical behaviour and performance close to those of commercial oil-derived alternatives.

摘要

考虑到全球电池和超级电容器市场,在电解质配方中用生物基碳酸盐(部分或全部)替代传统的化石衍生碳酸盐,将能够生产出更安全、更可持续的设备。在这项工作中,遵循绿色化学的7项原则,对甘油衍生物(即碳酸甘油酯和碳酸缩酮)作为电解质配方的溶剂和添加剂进行了测试。碳酸甘油酯被创新性地用作具有优异性能的双电层电容器的有前景的电解质溶剂。另一方面,对一种含碳酸缩酮的液体电解质进行了钾基电池研究,其显示出相当稳定的电化学行为和与市售石油衍生替代品相近的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bbf/11660737/a097f362269a/CSSC-17-e202401636-g003.jpg

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