Zhang Qiang, Zhou Weiya, Xia Xiaogang, Li Kewei, Zhang Nan, Wang Yanchun, Xiao Zhuojian, Fan Qingxia, Kauppinen Esko I, Xie Sishen
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Adv Mater. 2020 Oct;32(39):e2004277. doi: 10.1002/adma.202004277. Epub 2020 Aug 26.
Single-walled carbon nanotube (SWCNT) films are promising materials as flexible transparent conductive films (TCFs). Here, inspired by the extrusion blown plastic film technique and the SWCNT synthesis approach by floating catalyst chemical vapor deposition (FCCVD), a novel blown aerosol chemical vapor deposition (BACVD) method is reported to directly and continuously produce freestanding SWCNT TCFs at several hundred meters per hour. The synthesis mechanism, involving blowing a stable aerosol bubble and transforming the bubble into an aerogel, is investigated, and a general phase diagram is established for this method. For the SWCNT TCFs via BACVD, both carbon conversion efficiency and SWCNT TCF yield can reach three orders of magnitude higher than those with the conventional FCCVD. The film displays a sheet resistance of 40 ohm sq at 90% transmittance after being doped, representing the record performance based on large-scale SWCNT films. Transparent, flexible, and stretchable electrodes based on BACVD films are demonstrated. Moreover, this high-throughput method of producing SWCNT TCFs can be compatible with the roll-to-roll process for mass production of flexible displays, touch screens, solar cells, and solid-state lighting, and is expected to have a broad and long-term impact on many fields from consumer electronics to energy conversion and generation.
单壁碳纳米管(SWCNT)薄膜作为柔性透明导电薄膜(TCF)是很有前景的材料。在此,受挤出吹塑薄膜技术和浮动催化剂化学气相沉积(FCCVD)合成SWCNT方法的启发,报道了一种新型的吹风气溶胶化学气相沉积(BACVD)方法,该方法能够以每小时数百米的速度直接连续地生产独立的SWCNT TCF。研究了其合成机理,包括吹出稳定的气溶胶气泡并将气泡转化为气凝胶,并为此方法建立了通用相图。对于通过BACVD制备的SWCNT TCF,碳转化效率和SWCNT TCF产率均可比传统FCCVD提高三个数量级。掺杂后的薄膜在90%透光率下的方阻为40Ω/sq,代表了基于大规模SWCNT薄膜的创纪录性能。展示了基于BACVD薄膜的透明、柔性和可拉伸电极。此外,这种生产SWCNT TCF的高通量方法可与卷对卷工艺兼容,用于大规模生产柔性显示器、触摸屏、太阳能电池和固态照明,预计将对从消费电子到能量转换和发电等许多领域产生广泛而长期的影响。