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Thin indium tin oxide (ITO) films are used as transparent heaters in various applications, such as outdoor panel displays, avionic displays, liquid-crystal display (LCD) panels for use in harsh environments, periscopes, and vehicle window defrosters. However, ITO film heaters have some limitations, such as a slow thermal response and complex fabrication processes. Because carbon nanotube (CNT) films have high thermal conductivity and can be produced by using various common fabrication methods, they can be promising alternative to ITO films in the field of transparent heaters. Therefore, we fabricated transparent film heaters using single-walled carbon nanotubes (SWCNTs) and investigated their heating performance.
Among the many fabrication methods for the transparent SWCNTs film, we chose the vacuum filtration method due to the easy controllability of transparency and excellent uniformity of networked SWCNTs. As a result, we made SWCNTs films with transparency of 97~65 % according to the sheet resistance of 3500~230 Ω/sq. We tested the film heaters as shown in Figure 1 and verified the heating capability of the SWCNTs films. Figure 2 shows the temperature change when a SWCNTs film with transparency of 79 % and sheet resistance of 580Ω/sq is heated. The steady state temperature was reached within 60 seconds showing a uniform temperature distributi^_@span style=color:#999999 ^_# ... ^_@/span^_#^_@a href=javascript:; onclick=onClickReadNode('NODE01241446');fn_statistics('Z354','null','null'); style='color:#999999;font-size:14px;text-decoration:underline;' ^_#전체 초록 보기^_@/a^_#

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UCI(KEPA) : I410-ECN-0101-2010-550-001998483