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Feasibility study of high performance field emitter pattern with the horizontally oriented carbon nanotubes by electrophoresis

机译:电泳法研究水平取向碳纳米管高性能场发射器图形的可行性

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For the field emitter applications, electrophoretic deposition (EPD) followed by post air annealing treatment was developed to selectively deposit the single-walled carbon nanotubes (SWNTs) pattern made of Al and SiO_2 coatings. The EPD was conducted from a solution mixture of SWNTs and various dispersants or surfactants, including sodium dodecyl sulfate (SDS), hexadecyl trimethyl ammonium bromide and trictylphosphine oxide. Effects of the processing parameters of EPD and the post air annealing treatment on SWNTs dispersion, morphology, field emission (FE), and film-substrate adhesion were examined. The results indicate that the SDS is the best surfactant in terms of SWNTs dispersion and solution stability, and the EPD parameters have no significant effects on their FE and adhesion properties of the deposited films. However, a higher post annealing temperature combined with an optimum annealing time is required to improve the film-substrate adhesion, so to reduce its electrical resistance and to enhance FE properties. The high performance annealed films with negligible internal stress are made of the micro-sized islands with the horizontally oriented SWNTs between them. The results also show that the pattern made of conductive and nonconductive coatings, such as Al and SiO_2, can be successfully used to deposit SWNTs pattern by EPD.
机译:对于场发射器应用,开发了电泳沉积(EPD)和随后的空气退火处理,以选择性地沉积由Al和SiO_2涂层制成的单壁碳纳米管(SWNT)模式。 EPD由SWNT和各种分散剂或表面活性剂(包括十二烷基硫酸钠(SDS),十六烷基三甲基溴化铵和三辛基膦氧化物)的溶液混合物进行。考察了EPD的加工参数和空气退火后处理对单壁碳纳米管的分散性,形貌,场发射(FE)和膜-基底附着力的影响。结果表明,就SWNTs的分散性和溶液稳定性而言,SDS是最好的表面活性剂,而EPD参数对其FE和沉积膜的粘合性能没有显着影响。然而,需要更高的后退火温度和最佳退火时间以改善膜-基底的粘附性,从而降低其电阻并增强FE性能。内应力可忽略不计的高性能退火膜是由微型岛组成,它们之间具有水平取向的SWNT。结果还表明,由导电涂层和非导电涂层(例如Al和SiO_2)制成的图案可以通过EPD成功地用于沉积SWNTs图案。

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