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Green synthesis of transition metal nanocrystals encapsulated into nitrogen-doped carbon nanotubes for efficient carbon dioxide capture

机译:封装成氮掺杂碳纳米管的过渡金属纳米晶体的绿色合成,用于高效二氧化碳捕获

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The present study aims to explore the ability of transition metal encapsulated nitrogen-doped carbon nanotubes (M@NCNTs) as efficient CO2 adsorbent over a wide range of temperature and pressure. Initially, a single-step, economical, easily scalable and environment-friendly thermal decomposition technique was undertaken to synthesize the M@NCNTs. Their structure, surface morphology and composition were comprehensively studied using different characterization techniques. The mechanism of metal (M = Fe/Co/Ni) encapsulation inside the bamboo-shaped NCNTs was thoroughly investigated via X-ray diffraction (XRD) and Transmission Electron Microscopy (TEM) analysis at different stages of py-rolysis. High pressure (= 20 bar) and low pressure (= 1 bar) CO2 uptake capacities reveal that M@NCNTs show much higher adsorption capacities in comparison to pristine multiwalled carbon nanotubes (MWNTs) and pure nitrogen doped carbon nanotubes (NCNTs). The uptake capacity was seen to follow a trend of Fe/Fe3C@NCNTs Co@NCNTs Ni@NCNTs in both high as well as low pressure adsorption studies and in this aspect the interaction of CO2 with transition metals has been discussed. The encapsulated metal nanoparticles along with high surface area NCNTs, therefore, play a synergistic role in enhancement of gas uptake properties. To the best of our knowledge, this is the first report on metal encapsulated NCNTs being investigated for CO2 capture. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究旨在探讨过渡金属封装的氮气碳纳米管(M @ NCNT)在宽范围的温度和压力范围内吸附剂的过渡金属包封的氮气碳纳米管(M @ NCNT)的能力。最初,进行了一步,经济,易于可扩展和环保的热分解技术,以合成M @ NCNT。使用不同的表征技术综合研究了它们的结构,表面形态和组合物。通过X射线衍射(XRD)和透射电子显微镜(TEM)分析,在Py-Rolicate的不同阶段进行彻底研究竹形NCNT内的金属(M = Fe / CO / Ni)的机理。高压(& = 20 bar)和低压(& = 1 bar)CO2吸收能力揭示了与原始多壁碳纳米管(MWNT)和纯氮掺杂碳纳米管(NCNTs)相比显示了更高的吸附能力。 )。被认为是遵循Fe / Fe3C @ NCNTS&GT的趋势。 co @ ncnts& NI @ NCNT在高于低压吸附研究中,并且在这方面,已经讨论了CO2与过渡金属的相互作用。因此,封装的金属纳米颗粒以及高表面积NCNT,在增强气体摄取性能方面发挥了协同作用。据我们所知,这是对CO2捕获研究的关于CO2的金属封装NCNT的第一份报告。 (c)2018年elestvier有限公司保留所有权利。

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