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取向结晶碳纳米管织物的光子分选

Photonic Sorting of Aligned, Crystalline Carbon Nanotube Textiles.

作者信息

Bulmer John S, Gspann Thurid S, Orozco Francisco, Sparkes Martin, Koerner Hilmar, Di Bernardo A, Niemiec Arkadiusz, Robinson J W A, Koziol Krzysztof K, Elliott James A, O'Neill William

机构信息

Centre for Industrial Photonics, Institute for Manufacturing, University of Cambridge, Cambridge, UK.

Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, UK.

出版信息

Sci Rep. 2017 Oct 11;7(1):12977. doi: 10.1038/s41598-017-12605-y.

Abstract

Floating catalyst chemical vapor deposition uniquely generates aligned carbon nanotube (CNT) textiles with individual CNT lengths magnitudes longer than competing processes, though hindered by impurities and intrinsic/extrinsic defects. We present a photonic-based post-process, particularly suited for these textiles, that selectively removes defective CNTs and other carbons not forming a threshold thermal pathway. In this method, a large diameter laser beam rasters across the surface of a partly aligned CNT textile in air, suspended from its ends. This results in brilliant, localized oxidation, where remaining material is an optically transparent film comprised of few-walled CNTs with profound and unique improvement in microstructure alignment and crystallinity. Raman spectroscopy shows substantial D peak suppression while preserving radial breathing modes. This increases the undoped, specific electrical conductivity at least an order of magnitude to beyond that of single-crystal graphite. Cryogenic conductivity measurements indicate intrinsic transport enhancement, opposed to simply removing nonconductive carbons/residual catalyst.

摘要

浮动催化剂化学气相沉积法能独特地生成排列整齐的碳纳米管(CNT)织物,其单个碳纳米管的长度比其他竞争工艺长出几个数量级,不过该方法受到杂质以及内在/外在缺陷的阻碍。我们提出了一种基于光子的后处理方法,特别适用于这些织物,该方法能选择性地去除有缺陷的碳纳米管以及其他未形成阈值热通路的碳。在这种方法中,一束大直径激光束在空气中从两端悬挂的部分排列的碳纳米管织物表面进行光栅扫描。这会导致显著的局部氧化,剩余的材料是由少壁碳纳米管组成的光学透明薄膜,其微观结构排列和结晶度有显著且独特的改善。拉曼光谱显示在保留径向呼吸模式的同时,D峰大幅抑制。这使得未掺杂的比电导率至少提高一个数量级,超过了单晶石墨的比电导率。低温电导率测量表明存在本征输运增强,这与单纯去除非导电碳/残留催化剂的情况不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c5c/5636898/ce24dbaf0456/41598_2017_12605_Fig1_HTML.jpg

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