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Electrochromic WO3 thin films attain unprecedented durability by potentiostatic pretreatment.


ABSTRACT: Electrochromic windows and glass facades are able to impart energy efficiency jointly with indoor comfort and convenience. Long-term durability is essential for practical implementation of this technology and has recently attracted broad interest. Here we show that a simple potentiostatic pretreatment of sputter-deposited thin films of amorphous WO3-the most widely studied electrochromic material-can yield unprecedented durability for charge exchange and optical modulation under harsh electrochemical cycling in a Li-ion-conducting electrolyte and effectively evades harmful trapping of Li. The pretreatment consisted of applying a voltage of 6.0 V vs. Li/Li+ for several hours to a film backed by a transparent conducting In2O3:Sn layer. Associated compositional and structural modifications were probed by several techniques, and improved durability was associated with elemental intermixing at the WO3/ITO and ITO/glass boundaries as well as with carbonaceous solid-electrolyte interfacial layers on the WO3 films. Our work provides important new insights into long-term durability of ion-exchange-based devices.

SUBMITTER: Arvizu MA 

PROVIDER: S-EPMC6394890 | biostudies-other | 2019 Feb

REPOSITORIES: biostudies-other

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Electrochromic WO<sub>3</sub> thin films attain unprecedented durability by potentiostatic pretreatment.

Arvizu Miguel A MA   Qu Hui-Ying HY   Cindemir Umut U   Qiu Zhen Z   Rojas-González Edgar A EA   Primetzhofer Daniel D   Granqvist Claes G CG   Österlund Lars L   Niklasson Gunnar A GA  

Journal of materials chemistry. A 20190110 6


Electrochromic windows and glass facades are able to impart energy efficiency jointly with indoor comfort and convenience. Long-term durability is essential for practical implementation of this technology and has recently attracted broad interest. Here we show that a simple potentiostatic pretreatment of sputter-deposited thin films of amorphous WO<sub>3</sub>-the most widely studied electrochromic material-can yield unprecedented durability for charge exchange and optical modulation under harsh  ...[more]

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