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Chemically Grafted Aminated Carbon Nanotubes and l-Lysinein Ultramodified Conditions for Carbon DioxideStorage

机译:化学接枝的胺化碳纳米管和赖氨酸在二氧化碳超改性条件下存储

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摘要

The study reported CO2 storage properties of single-walled carbon nanotubes (CNTs) modified by introducing amino groups onto CNT surfaces via a chemical process. Two different approaches were used to produce amino-functionalized nanotubes by adding lithium amide and l-lysine amino acid. Lithium amide was introduced on CNT surfaces, and then, it was further modified by adding amino-moiety (l-lysine amino acid) to obtain multiamino sites on the CNT surface for CO2 storage. The aminated CNT were followed by CO2 adsorption experiments, and amino group interactions with CO2 have helped CNT to achieve higher adsorption capacity. The successful modification of CNTs showed ameliorated CO2 storage capacity as compared to pristine CNT. The modified CNT possessed free amine groups on the surface, which led to an enhanced CO2 adsorption capacity. The modified CNT samples were analyzed by X-ray photoelectron spectroscopy, infrared spectroscopy, and X-ray diffraction techniques.
机译:该研究报告了通过化学方法将氨基引入CNT表面而修饰的单壁碳纳米管(CNT)的CO2储存特性。通过添加氨基锂和l-赖氨酸氨基酸,使用两种不同的方法来生产氨基官能化的纳米管。将酰胺化锂引入到CNT表面,然后通过添加氨基部分(1-赖氨酸氨基酸)对其进行进一步修饰,从而在CNT表面获得用于存储CO2的多氨基位点。胺化后的碳纳米管随后进行了CO2吸附实验,氨基与CO2的相互作用帮助CNT获得了更高的吸附容量。与原始CNT相比,成功修饰CNT显示出改善的CO2储存能力。改性后的碳纳米管在其表面具有游离胺基,从而提高了二氧化碳的吸附能力。通过X射线光电子能谱,红外光谱和X射线衍射技术来分析改性的CNT样品。

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