Appointment: Senior Lecturer (Former)

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JPEG Image - 3.1 MB - MD5: c615800426894b20b47120a83daf40d4
a) Transmittances of the 10 mins sample applied with different strain. b) Photographs of the 10 mins sample at different strains (These electrodes were imaged using red flowers as the background). c) Transmittances at 550 nm as function of different coating times. d) Sheet resis...
JPEG Image - 1.9 MB - MD5: be85d1e860a70907df82e768fa5a5d0f
a) Transient temperature evolution of the electrode under zero strain at stepwise voltage rise from 1 to 10 V. b) Temperature rise profile at different voltage for electrode coated with AgNWs for 30 mins in each layer. c) Transient temperature evolution of the electrode stepwise...
JPEG Image - 2.4 MB - MD5: 62c8ff16af925629352a04ee8d10f4f7
a) Sheet resistance, stretchability and optical transmittance at 550 nm for oriented AgNWs electrodes with previously reported electrodes including AgNWs,[9, 11-14, 58-61] AgNWs@Graphene,[62] Ag mesh,[63] Ag nanofiber,[64] Au-Ag core-shell nanowires,[15] CuNWs,[65, 66] Cu@Cu4Ni,[...
Mar 25, 2020 - Vu Tuan Duc
Vu, Tuan Duc; Liu, Shiyu; Zeng, Xianting; Li, Chuanchang; Long, Yi, 2020, "High-power impulse magnetron sputtering deposition of high crystallinity vanadium dioxide for thermochromic smart windows applications", https://doi.org/10.21979/N9/VFQG8Q, DR-NTU (Data), V1, UNF:6:55mpYUyaaXzo7I3hUHx8Pg== [fileUNF]
Vanadium dioxide (VO2) is one of the most promising thermochromic materials for smart windows application because of its ability to modulate infrared radiation (IR) by reversibly transform from semiconductor-like monoclinic VO2 (M) to metallic rutile VO2 (R) above its transition...
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