材料科学
碳纳米管
催化作用
二茂铁
化学气相沉积
一氧化碳
纳米技术
化学工程
导电体
溶解
透射率
产量(工程)
捆绑
复合材料
电极
光电子学
有机化学
电化学
化学
物理化学
工程类
作者
Yongping Liao,Aqeel Hussain,Patrik Laiho,Qiang Zhang,Ying Tian,Nan Wei,Er‐Xiong Ding,Sabbir A. Khan,Nguyen Ngan Nguyen,Saeed Ahmad,Esko I. Kauppinen
标识
DOI:10.1002/admi.201801209
摘要
Abstract Optimized geometry of single‐walled carbon nanotubes (SWCNTs) is vital to high‐performance transparent conductive films (TCFs). Herein, the geometry of SWCNTs, i.e., tube diameter, bundle length, and bundle diameter, are successfully tuned by introducing carbon dioxide (CO 2 ) into floating catalyst chemical vapor deposition (FC‐CVD), where carbon monoxide (CO) is used as a carbon source and ferrocene as a catalyst precursor. Both tube diameter and bundle length increase with an increment of CO 2 concentration, and the yield of SWCNTs can be significantly promoted with the appropriate amount of CO 2 . The role of CO 2 in this behavior is further rationalized as enhancing CO decomposition or carbon dissolution into catalysts. The TCFs based on SWCNTs with optimized geometry by CO 2 exhibit improved performance up to 86.8 Ω sq −1 at 90% transmittance after AuCl 3 doping, achieving about 50% reduction of sheet resistance compared to the TCFs without CO 2 . The use of CO 2 for directly tuning growth of SWCNTs blazes a new trail in the field of SWCNT based TCFs.
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