Dual-Phase Transformation: Spontaneous Self-Template Surface-Patterning Strategy for Ultra-transparent VO2 Solar Modulating Coatings

Dual-phase transformation has been developed as a template-free surface patterning technique in this study. Ordered VO2 honeycomb structures with a complex hierarchy have been fabricated via this method, and the microstructures of the obtained VO2(M) coatings are tunable by tailoring the pertinent v...

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Veröffentlicht in:ACS nano 2017-01, Vol.11 (1), p.407-415
Hauptverfasser: Liu, Minsu, Su, Bin, Kaneti, Yusuf V, Chen, Zhang, Tang, Yue, Yuan, Yuan, Gao, Yanfeng, Jiang, Lei, Jiang, Xuchuan, Yu, Aibing
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Sprache:eng
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Zusammenfassung:Dual-phase transformation has been developed as a template-free surface patterning technique in this study. Ordered VO2 honeycomb structures with a complex hierarchy have been fabricated via this method, and the microstructures of the obtained VO2(M) coatings are tunable by tailoring the pertinent variables. The VO2(M) honeycomb-structured coatings have excellent visible light transmittance at 700 nm (T vis) up to 95.4% with decent solar modulating ability (ΔT sol) of 5.5%, creating the potential as ultratransparent smart solar modulating coatings. Its excellent performance has been confirmed by a proof-of-principle demonstration. The dual-phase transformation technique has dramatically simplified the conventional colloidal lithography technique as a scalable surface patterning technique for achieving high-performance metal oxide coatings with diverse applications, such as catalysis, sensing, optics, electronics, and superwettable materials.
ISSN:1936-0851
1936-086X
DOI:10.1021/acsnano.6b06152