| نویسندگان | مریم غیاثیان آرانی |
| نشریه | Applied Water Science |
| شماره صفحات | 1 |
| شماره مجلد | 15 |
| ضریب تاثیر (IF) | 5.7 |
| نوع مقاله | Full Paper |
| تاریخ انتشار | 2025-05-30 |
| رتبه نشریه | علمی - پژوهشی |
| نوع نشریه | الکترونیکی |
| کشور محل چاپ | ایران |
| نمایه نشریه | JCR ,SCOPUS |
| کلید واژه ها | Morphology · Carbon sphere · Vanadium · Electrochemistry · Energy storage |
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چکیده مقاله
Energy storage devices have recently made extensive use of carbon frameworks. The intention of this investigation is to
look at how the carbon sphere (CS) afects NH4V4O10 (NHV) electrode materials for energy storage. Carbon spheres were
synthesized via ethylenediamine-based catalyst sonochemical method with resorcinol–formaldehyde (R-F) polymer resin.
The incorporation carbon spheres have the potential to enhance the low conductivity of vanadate-based materials. The solvothermal approach was employed to synthesize electrode materials which were designed to possess a three-dimensional (3D)
fower-shaped structure by studying the efect of diferent solvents. The fower-shaped nanoribbon self-assembly structure is
present in all samples. The average ribbon thickness from synthesized samples subjected to ethanol, propanol, and butanol
was 16, 28, and 23 nm. In comparison to pure NHV, the surface area of the carbon sphere nanocomposites (NHV-EtOH/
CS) developed to 17.843 m2
g−1. The carbon sphere-based composite material has a capacitance of 295 mAhg−1 by applying
I=1 mA for 15 cycles, which is diferent from that of pristine NH4V4O10. Therefore, the incorporation of a three-dimensional
confguration within the sphere on fower structures holds promise for improving the efcacy of energy storing in electrodes
completed of ammonium vanadium-based oxides. The difusion coefcient for NHV-EtOH was 1.12× 10–15 cm2
/s, while
for NHV-EtOH/CS, it was 4.48× 10–13 cm2
/s. Thus, the NHV-EtOH/CS composites exhibited a higher difusion factor than
pure NHV.