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多壁碳纳米管的选择性羧基化逐层脱壳:与沸腾硝化混合物反应的新见解

Selective carboxylation layer-by-layer unsheathing of multi-walled carbon nanotubes: new insights from the reaction with boiling nitrating mixture.

作者信息

Kolanowska Anna, Wąsik Patrycja, Zięba Wojciech, Terzyk Artur Piotr, Boncel Sławomir

机构信息

Department of Organic Chemistry, Bioorganic Chemistry and Biotechnology, Silesian University of Technology Krzywoustego 4 44-100 Gliwice Poland

Faculty of Chemistry, Physicochemistry of Carbon Materials Research Group, Nicolaus Copernicus University in Toruń Gagarin Street 7 87-100 Toruń Poland.

出版信息

RSC Adv. 2019 Nov 19;9(64):37608-37613. doi: 10.1039/c9ra08300f. eCollection 2019 Nov 13.

Abstract

We have studied the oxidation of multi-wall carbon nanotubes (MWCNTs) by boiling them in a nitrating mixture composed of conc. HNO/HSO (v/v = 1/3). By analysis of the morphology and surface physicochemistry of the oxidation products as a function of MWCNT treatment time, we have revealed two interrelated phenomena. Firstly, the most outer walls were becoming more functionalized with carboxylic groups to the point of -saturation where, secondly, oxidized MWCNTs could be desheathed uncovering the yet non-functionalized wall. These phenomena were manifested by the periodic-like nature of functionalization and de-functionalization. In the products of MWCNT oxidation - the number of graphitized MWCNT walls was determined by HR-TEM while quantification of oxygen functionalities was performed Boehm titration. The above techniques coupled with the analysis of zeta potential and Raman spectroscopy allowed us to propose a pseudo-1 order kinetic model for MWCNT oxidation translatable to other sp-C allotropes. The findings mean that prolonged oxidation does not necessarily yield nanotubes of higher levels of functionalization. The final outcome is of great relevance in all fields of MWCNT applications from medicine to sensors to nanomaterials engineering.

摘要

我们研究了多壁碳纳米管(MWCNTs)在由浓硝酸/浓硫酸(体积比 = 1/3)组成的硝化混合物中煮沸时的氧化情况。通过分析氧化产物的形态和表面物理化学性质随MWCNT处理时间的变化,我们揭示了两个相互关联的现象。首先,最外层壁逐渐被羧基官能化至饱和点,其次,氧化后的MWCNTs可以被剥离,露出尚未官能化的壁。这些现象表现为官能化和去官能化的周期性特征。在MWCNT氧化产物中,通过高分辨透射电子显微镜(HR-TEM)确定石墨化MWCNT壁的数量,同时通过 Boehm 滴定法对氧官能团进行定量。上述技术结合zeta电位和拉曼光谱分析,使我们能够提出一个适用于其他sp-C同素异形体的MWCNT氧化的准一级动力学模型。研究结果表明,长时间氧化不一定会产生官能化程度更高的纳米管。这一最终结果在MWCNT应用的所有领域,从医学到传感器再到纳米材料工程,都具有重要意义。

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