TY - JOUR
T1 - Fabrication of all-inorganic smart window device by cooling substrate with liquid nitrogen and study on its performance
AU - Wang, Huaiyi
AU - Diao, Xungang
AU - Wang, Wuyu
AU - Yang, Haigang
AU - Hao, Weichang
AU - Wang, Cong
AU - Wang, Tianmin
PY - 2009/5
Y1 - 2009/5
N2 - In order to slow down the increase of substrate temperature during sputtering and then obtain electrochromic films with amorphous-porous or nano-microcrystalline structures and ion conductive film with amorphous state, a cooling facility based on liquid nitrogen, with magnetron sputtering installation has been proposed. By using the facility, a single-substrate all-inorganic electrochromic smart window device consisting of WO3, NiOx, and LiNbO3 films is prepared. Its electrochromic performance has been measured by spectrophotometer, and transmittance averages of its bleached and colored states in range of 400-800 nm wavelengths have been calculated. Experimental results reveal that after 50 cycles, transmittance averages of bleached and colored states of the device have reached 61.5% and 5.5%, respectively. X-ray diffraction and SEM images show that the structures of the WO3, NiOx, and LiNbO3 films are amorphous-porous, nano-microcrystalline, and amorphous states, respectively.
AB - In order to slow down the increase of substrate temperature during sputtering and then obtain electrochromic films with amorphous-porous or nano-microcrystalline structures and ion conductive film with amorphous state, a cooling facility based on liquid nitrogen, with magnetron sputtering installation has been proposed. By using the facility, a single-substrate all-inorganic electrochromic smart window device consisting of WO3, NiOx, and LiNbO3 films is prepared. Its electrochromic performance has been measured by spectrophotometer, and transmittance averages of its bleached and colored states in range of 400-800 nm wavelengths have been calculated. Experimental results reveal that after 50 cycles, transmittance averages of bleached and colored states of the device have reached 61.5% and 5.5%, respectively. X-ray diffraction and SEM images show that the structures of the WO3, NiOx, and LiNbO3 films are amorphous-porous, nano-microcrystalline, and amorphous states, respectively.
KW - All-solid state
KW - Electrochromism
KW - Liquid nitrogen cooling
KW - Magnetron sputtering
KW - Smart window
KW - Thin films
UR - https://www.scopus.com/pages/publications/66349128076
U2 - 10.3788/AOS20092905.1424
DO - 10.3788/AOS20092905.1424
M3 - 文章
AN - SCOPUS:66349128076
SN - 0253-2239
VL - 29
SP - 1424
EP - 1430
JO - Guangxue Xuebao/Acta Optica Sinica
JF - Guangxue Xuebao/Acta Optica Sinica
IS - 5
ER -