Suppr超能文献

碳纳米管特性对宏观纤维性能的影响。

Influence of Carbon Nanotube Characteristics on Macroscopic Fiber Properties.

机构信息

Department of Chemical & Biomolecular Engineering, Department of Chemistry, Department of Materials Science & NanoEngineering, The Smalley-Curl Institute, Rice University , Houston, Texas 77005, United States.

出版信息

ACS Appl Mater Interfaces. 2017 Oct 18;9(41):36189-36198. doi: 10.1021/acsami.7b10968. Epub 2017 Oct 6.

Abstract

We study how intrinsic parameters of carbon nanotube (CNT) samples affect the properties of macroscopic CNT fibers with optimized structure. We measure CNT diameter, number of walls, aspect ratio, graphitic character, and purity (residual catalyst and non-CNT carbon) in samples from 19 suppliers; we process the highest quality CNT samples into aligned, densely packed fibers, by using an established wet-spinning solution process. We find that fiber properties are mainly controlled by CNT aspect ratio and that sample purity is important for effective spinning. Properties appear largely unaffected by CNT diameter, number of walls, and graphitic character (determined by Raman G/D ratio) as long as the fibers comprise thin few-walled CNTs with high G/D ratio (above ∼20). We show that both strength and conductivity can be improved simultaneously by assembling high aspect ratio CNTs, producing continuous CNT fibers with an average tensile strength of 2.4 GPa and a room temperature electrical conductivity of 8.5 MS/m, ∼2 times higher than the highest reported literature value (∼15% of copper's value), obtained without postspinning doping. This understanding of the relationship of intrinsic CNT parameters to macroscopic fiber properties is key to guiding CNT synthesis and continued improvement of fiber properties, paving the way for CNT fiber introduction in large-scale aerospace, consumer electronics, and textile applications.

摘要

我们研究了碳纳米管(CNT)样品的固有参数如何影响具有优化结构的宏观 CNT 纤维的性能。我们测量了来自 19 个供应商的样品的 CNT 直径、层数、纵横比、石墨化程度和纯度(残留催化剂和非 CNT 碳);我们使用已建立的湿法纺丝溶液工艺,将最高质量的 CNT 样品加工成排列整齐、紧密堆积的纤维。我们发现纤维性能主要受 CNT 纵横比控制,样品纯度对有效纺丝很重要。只要纤维由具有高 G/D 比(大于约 20)的薄壁 CNT 组成,且具有高纵横比,那么纤维的性能在很大程度上不受 CNT 直径、层数和石墨化程度(由 Raman G/D 比确定)的影响。我们表明,通过组装高纵横比 CNT 可以同时提高强度和导电性,从而生产出具有平均拉伸强度为 2.4 GPa 和室温电导率为 8.5 MS/m 的连续 CNT 纤维,比文献中报道的最高值(约为铜的 15%)高约 2 倍,而无需纺丝后掺杂。这种对固有 CNT 参数与宏观纤维性能之间关系的理解是指导 CNT 合成和纤维性能持续改进的关键,为 CNT 纤维在大规模航空航天、消费电子产品和纺织品应用中的引入铺平了道路。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验