Projekteja vuodessa
Abstrakti
Composites comprising vanadium-pentoxide (V2O5) and single-walled carbon nanotubes (SWCNTs) are promising components for emerging applications in optoelectronics, solar cells, chemical and electrochemical sensors, etc. We propose a novel, simple, and facile approach for SWCNT covering with V2O5 by spin coating under ambient conditions. With the hydrolysis-polycondensation of the precursor (vanadyl triisopropoxide) directly on the surface of SWCNTs, the nm-thick layer of oxide is amorphous with a work function of 4.8 eV. The material recrystallizes after thermal treatment at 600 °C, achieving the work function of 5.8 eV. The key advantages of the method are that the obtained coating is uniform with a tunable thickness and does not require vacuuming or heating during processing. We demonstrate the groundbreaking results for two V2O5/SWCNT applications: transparent electrode and cathode for Li-ion batteries. As a transparent electrode, the composite shows stable sheet resistance of 160 Ω sq−1 at a 90% transmittance (550 nm) - the best performance reported for SWCNTs doped by metal oxides. As a cathode material, the obtained specific capacity (330 mA h g−1) is the highest among all the other V2O5/SWCNT cathodes reported so far. This approach opens new horizons for the creation of the next generation of metal oxide composites for various applications, including optoelectronics and electrochemistry.
| Alkuperäiskieli | Englanti |
|---|---|
| Sivut | 25817-25827 |
| Sivumäärä | 11 |
| Julkaisu | RSC Advances |
| Vuosikerta | 13 |
| Numero | 37 |
| DOI - pysyväislinkit | |
| Tila | Julkaistu - 30 elok. 2023 |
| OKM-julkaisutyyppi | A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä |
Rahoitus
The work was supported by RFBR grant number: 20-33-90324 (electrochemical measurements of SWCNTs) and by RSF grant number: 22-13-00436 (synthesis and doping of SWCNTs). The work was supported by the Council on Grants (number HIII-1330.2022.1.3). We also thank Business Finland for funding the work (the NextGenBat project no. 211849). Additionally, the OtaNano-Nanomicroscopy Center (Aalto-NMC) and Raw Materials Infrastructure (RAMI) were utilized as a part of this research.
Sormenjälki
Sukella tutkimusaiheisiin 'Robust method for uniform coating of carbon nanotubes with V2O5 for next-generation transparent electrodes and Li-ion batteries'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.Projektit
- 1 Päättynyt
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NextGenBat: Next Generation Battery Materials and Concepts
Kallio, T. (Vastuullinen johtaja), Aliyev, A. (Projektin jäsen), Farrahi, N. (Projektin jäsen), Pakseresht, S. (Projektin jäsen), Hamed, S. (Projektin jäsen), Al-Ogaili, A. (Projektin jäsen), Llanos, P. S. (Projektin jäsen), Rautakorpi, A. (Projektin jäsen), Kobets, A. (Projektin jäsen), Ali, B. (Projektin jäsen), Bogdanova, A. (Projektin jäsen), Bäckman, S. (Projektin jäsen), Wang, B. (Projektin jäsen), Ahaliabadeh, Z. (Projektin jäsen) & Kosir, J. (Projektin jäsen)
01/04/2021 → 31/03/2024
Projekti: BF Co-Innovation
Laitteet
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OtaNano Nanomikroskopiakeskus
Seitsonen, J. (Manager) & Rissanen, A. (Other)
OtaNanoLaitteistot/tilat: Facility
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Raaka-aineiden tutkimusinfrastruktuuri
Karppinen, M. (Manager)
Kemian tekniikan korkeakouluLaitteistot/tilat: Facility