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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Functionalization of Multiwalled Carbon Nanotubes with Cyclic Nitrones for Materials and Composites: Addressing the Role of CNT Sidewall Defects
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Functionalization of Multiwalled Carbon Nanotubes with Cyclic Nitrones for Materials and Composites: Addressing the Role of CNT Sidewall Defects

机译:具有环硝基的多壁碳纳米管用于材料和复合材料的功能化:解决CNT侧壁缺陷的作用

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摘要

An efficient approach to the organic functionalization of multiwalled carbon nanotubes (MWCNTs) for the production of highly soluble /dispersible materials has been accomplished by a class of highly reactive and thermally stable nitrones. Besides the unprecedented solubility in aprotic polar solvents of the functionalized samples (up to 10 mg of f-MWCNTs per mL of DMF), we have demonstrated, for the first time, that the CNT functionalization by nitrones preferentially occurs at the defective CNT sidewalls without any appreciable degradation of their sp2 network. The role of the reticular imperfections on the graphitic lattice of the MWCNTs has been experimentally and theoretically addressed. A complete chemical (TGA-MS, FT-IR, SSA) and morphological (TEM, AFM) characterization of the functionalized materials has accounted for the high degree of CNT functionalization, whereas Raman scattering, in combination with complementary XRPD and active surface area (ASA) measurements, has provided unambiguous evidence of the key role played by the structural "disorder" of the MWCNTs in the nitrone cycloaddition. Density functional theory (DFT) calculations on the reactivity of selected topological defects at the CNT sidewalls have contributed to trace-out a "defect-based" sidewall reactivity trend. The excellent processability of the functionalized MWCNTs has been finally exploited for the preparation of highly homogeneous CNT/polymer nanocomposites with CNT loadings as high as 3 wt %.
机译:通过一类高反应性和热稳定的硝酮,已经实现了用于生产高溶解度/分散性材料的多壁碳纳米管(MWCNT)有机功能化的有效方法。除了功能化样品在质子惰性极性溶剂中具有空前的溶解度(每毫升DMF高达10 mg f-MWCNT)外,我们首次证明了通过硝酮进行的CNT功能化优先发生在有缺陷的CNT侧壁上,而没有其sp2网络的任何明显降级。网状缺陷在多壁碳纳米管的石墨晶格中的作用已在实验和理论上得到解决。功能材料的完整化学特征(TGA-MS,FT-IR,SSA)和形态特征(TEM,AFM)表征了CNT的高度功能化,而拉曼散射与互补XRPD和活性表面积相结合( ASA)测量提供了明确的证据,表明在硝酮环加成反应中MWCNT的结构“失序”发挥了关键作用。碳纳米管侧壁上所选拓扑缺陷的反应性的密度泛函理论(DFT)计算有助于追查“基于缺陷的”侧壁反应性趋势。最终已利用官能化的MWCNT的优异加工性能来制备高度均匀的CNT /聚合物纳米复合材料,其CNT含量高达3 wt%。

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