三种合成碳质纳米材料(碳纳米管、氧化石墨烯、生物炭)的物理化学性质及其在水/土壤处理和储能方面的应用前景

Hanene Araissia, O. Guellati, F. Abbaci, A. Harat, Jamal El-Haskouri, D. Bégin, M. Guerioune, A. Nait-Merzoug
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引用次数: 1

摘要

纳米技术在推断材料,特别是碳基纳米材料的结构,包括确定其性质,从而确定其应用领域,如:能源储存、环境保护、生物传感和土壤处理等方面具有重要作用。在这项研究中,我们报告了三种纳米结构碳基智能纳米材料在不同维度(1D, 2D和3D)的物理化学生长过程的比较。利用XRD, FT-IR, TGA/DTA, FESEM显微镜,拉曼光谱和XSP光谱等不同的技术对这些碳质产物进行了表征,以确定其具有吸引力的性质。这些获得的纳米结构碳分别显示出具有一维和二维结构的MWNTs和石墨烯类型的结构形式,以及具有三维多孔结构的生物炭的无定形形式,其含有比石墨烯和MWNTs更少的内聚键。由于其碳键的强度,这两种结构的结构更加坚固,具有更强的内聚性,并且通过拉曼和XPS-C1s分析光谱证明了它们的石墨化速率。此外,它们还显示出非常有趣的特性,特别是它们的比表面积在150-2400 m2/g范围内和官能团;特别是在环境保护和生物传感领域开辟了广阔的应用领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physico-Chemical Properties of Three Synthesized Carbonaceous Nanomaterials (CNTs, GO, Biochar) for Perspective Application: Water / Soil Treatment and Energy Storage
Nanotechnology has a more than important role in deducing the materials’ structure, especially carbon-based nanomaterials, including determining their properties and consequently their application field, such as: energy storage, environmental protection, biosensing and soil treatment. In this investigation, we report a comparison of three kinds of nanostructured carbon based smart nanomaterials synthesized at different dimension (1D, 2D and 3D) using physico-chemical growth processes. These carbonaceous products have been characterized in order to identify their attractive properties using different techniques, such as XRD, FT-IR, TGA/DTA, FESEM microscopy, Raman and XSP spectroscopy. These obtained nanostructured carbon have shown structural forms in the case of MWNTs and graphene type having 1D and 2D configuration, respectively, as well as an amorphous form in the case of biochar having 3D porous configuration which contains less cohesive bonds than graphene and MWNTs. These two structured ones have a much more solid and cohesive structure thanks to the strength of their carbon bonds and their graphitization rate is proved from their Raman and XPS-C1s analysis spectra. Moreover, they have shown very interesting characteristics especially their specific surface area in the range 150-2400 m2/g and functional groups; which open up a wide field of application especially environmental protection and biosensing.
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