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Ballistic-aggregated Carbon Nanofoam in Target-side of Pulsed Laser Deposition for Energy Storage Applications

Authors :
Ghosh, Subrata
Righi, Massimiliano
Macrelli, Andrea
Divitini, Giorgio
Orecchia, Davide
Maffini, Alessandro
Goto, Francesco
Bussetti, Gianlorenzo
Dellasega, David
Russo, Valeria
Bassi, Andrea Li
Casari, Carlo S.
Source :
ChemSusChem 2024
Publication Year :
2024

Abstract

In pulsed laser deposition, along the traditionally exploited deposition on the front-side of the plasma-plume, a coating forms on the surface of the target as well. For reproducibility, this residue is usually cleaned and discarded. Here we instead investigate the target-side coated materials and employ them as a binder-free supercapacitor electrode. The ballistic-aggregated, target-side nanofoam is compact and features a larger fraction of sp2-carbon, higher nitrogen content with higher graphitic-N and lower oxygen content with fewer COOH groups than that of diffusive-aggregated conventional nanofoams. They are highly hydrogenated graphite-like amorphous carbon and superhydrophilic. The resulting symmetric micro-supercapacitor delivers higher volumetric capacitance of 522 mF/cm3 at 100 mV/s and 104% retention after 10000 charge-discharge cycles over conventional nanofoam (215 mF/cm3 and 85% retention) with an areal capacitance of 134 {\mu}F/cm2 at 120 Hz and ultrafast frequency response. Utilizing the normally discarded target-side material can therefore enable high performing devices while reducing waste, cost and energy input per usable product. leading towards a greater sustainability on nanomaterials synthesis and deposition techniques.<br />Comment: 22 pages, 8 figures in text, 8 figures in supplementary, 1 table

Details

Database :
arXiv
Journal :
ChemSusChem 2024
Publication Type :
Report
Accession number :
edsarx.2405.08957
Document Type :
Working Paper
Full Text :
https://doi.org/10.1002/cssc.202400755