Herein, we present, for the first time, the features of a full solid-state electrochromic (EC) device fabri- cated on a single substrate, made of glass as well as flexible plastic, adopting a low-cost, eco-friendly, and facile fabrication process. By combining a solution processing of Nafion electrolyte film and RF sputtering deposition at room temperature (RT) on Nafion, we obtained monolithic systems with a simplified ar- chitecture (substrate/ITO/WO3/Nafion/ITO) in which a suitable Nafion film (8 mm thick) tightly shares its interfaces with the WO3 layer and the highly transparent and conductive RF-sputtered ITO film. Compared to conventional sandwich-type EC devices using semi-solid or liquid electrolytes, the resulting devices exhibited a strong enhancement in terms of interface properties, robustness, cyclic stability, and long-term durability (at least 1000 chronoamperometric cycles). Moreover, electro-optical character- izations highlighted high transmittance modulation (49% at 650 nm), astonishing results in terms of coloration efficiency (139 cm2/C), and low energy absorption (80mWs/cm2).

Room temperature processing for solid-state electrochromic devices on single substrate: From glass to flexible plastic

Cossari Pierluigi;Cannavale Alessandro;Gambino Salvatore;Gigli Giuseppe
2016

Abstract

Herein, we present, for the first time, the features of a full solid-state electrochromic (EC) device fabri- cated on a single substrate, made of glass as well as flexible plastic, adopting a low-cost, eco-friendly, and facile fabrication process. By combining a solution processing of Nafion electrolyte film and RF sputtering deposition at room temperature (RT) on Nafion, we obtained monolithic systems with a simplified ar- chitecture (substrate/ITO/WO3/Nafion/ITO) in which a suitable Nafion film (8 mm thick) tightly shares its interfaces with the WO3 layer and the highly transparent and conductive RF-sputtered ITO film. Compared to conventional sandwich-type EC devices using semi-solid or liquid electrolytes, the resulting devices exhibited a strong enhancement in terms of interface properties, robustness, cyclic stability, and long-term durability (at least 1000 chronoamperometric cycles). Moreover, electro-optical character- izations highlighted high transmittance modulation (49% at 650 nm), astonishing results in terms of coloration efficiency (139 cm2/C), and low energy absorption (80mWs/cm2).
2016
Durability
Electrochromic (EC)
Monolithic single-substrate device
Room-temperature (RT) fabrication process
Solid proton-electrolyte film (Nafion)
Transparent conductive electrode
[object Object
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/323330
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 33
  • ???jsp.display-item.citation.isi??? ND
social impact