首页> 外文期刊>Journal of Dispersion Science and Technology >Single-walled carbon nanotube (SWNT)-carboxymethylcellulose (CMC) dispersions in aqueous solution and electronic transport properties when dried as thin film conductors
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Single-walled carbon nanotube (SWNT)-carboxymethylcellulose (CMC) dispersions in aqueous solution and electronic transport properties when dried as thin film conductors

机译:单壁碳纳米管(SWNT) - 羧基甲基纤维素(CMC)水溶液中的分散体和作为薄膜导体干燥时的电子输送性能

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摘要

Obtaining uniformly dispersed SWNT within an aqueous mixture for subsequent use as a dried coating in electronic biosensors is a challenge. The objective of this study is to relate SWNT dispersion conditions to resultant dried film properties. Aqueous solutions of SWNT dispersed with CMC (a dispersing agent with unique properties compatible with biomolecules) at different SWNT:CMC weight ratios and at different sonication conditions were studied. Solution particle size distribution data was obtained using dynamic light scattering. Differently formulated/processed SWNT/CMC solutions were used to form dry thin, conductive films. The resistance of each film was measured and its resistivity calculated. Response Surface Methodology (RSM) design of experiments (DOE) analysis was used as the tool to fit the data to establish a model and identify trends for the parameters studied. Profilometry was used to examine film surface uniformity. 3D optical microscopy was used to investigate film morphology and determine film thickness, and to relate these data back to solution dispersion conditions and dried film resistances. The lowest dried film resistivity (0.012 ohm-cm) was obtained at the highest levels of parameters studied in the DOE. Smaller solution particle size resulted in lower dried film surface roughness and better film uniformity.
机译:在含水混合物中获得均匀分散的SWNT,随后用作电子生物传感器中的干燥涂层是挑战。本研究的目的是将SWNT分散条件与所得干膜特性相关联。在不同的SWNT:CMC重量比和不同超声处理条件下,将SWNT分散的SWNT水溶液(具有与生物分子相容的独特性质相容的分散剂)分散。使用动态光散射获得溶液粒度分布数据。使用不同配制/加工的SWNT / CMC溶液形成干燥薄的导电膜。测量每种膜的电阻,并计算其电阻率。响应表面方法(RSM)实验设计(DOE)分析用作拟合数据的工具,以建立模型并确定所研究参数的趋势。使用轮廓测量法检查膜表面均匀性。 3D光学显微镜用于研究薄膜形态并确定膜厚度,并将这些数据与溶液分散条件和干燥薄膜电阻相关。在DOE中研究的最高水平的参数下获得最低干燥的薄膜电阻率(0.012欧姆-CM)。较小的溶液粒度导致干燥的膜表面粗糙度较低,膜均匀性更好。

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