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Electrochromic WO3 thin films attain unprecedented durability by potentiostatic pretreatment

Arvizu, Miguel A (author)
Uppsala universitet,Fasta tillståndets fysik
Qu, Hui-Ying (author)
Uppsala universitet,Fasta tillståndets fysik,Harbin Inst Technol, Sch Chem & Chem Engn, MIIT Key Lab Crit Mat Technol New Energy Convers, Harbin 150001, Heilongjiang, Peoples R China
Cindemir, Umut, 1986- (author)
Uppsala universitet,Fasta tillståndets fysik
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Qiu, Zhen (author)
Uppsala universitet,Fasta tillståndets fysik
Rojas González, Edgar Alonso (author)
Uppsala universitet,Fasta tillståndets fysik
Primetzhofer, Daniel (author)
Uppsala universitet,Tillämpad kärnfysik
Granqvist, Claes Göran, 1946- (author)
Uppsala universitet,Fasta tillståndets fysik
Österlund, Lars, 1967- (author)
Uppsala universitet,Fasta tillståndets fysik
Niklasson, Gunnar, 1953- (author)
Uppsala universitet,Fasta tillståndets fysik
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 (creator_code:org_t)
2019
2019
English.
In: Journal of Materials Chemistry A. - : ROYAL SOC CHEMISTRY. - 2050-7488 .- 2050-7496. ; 7:6, s. 2908-2918
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • 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 sputterdeposited 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.

Subject headings

NATURVETENSKAP  -- Kemi -- Materialkemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Materials Chemistry (hsv//eng)

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