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Comparison of Branched and Linear Perfluoropolyether Chains Functionalization on Hydrophobic, Morphological and Conductive Properties of Multi-Walled Carbon Nanotubes

机译:分枝和线性全氟聚醚链官能化对多壁碳纳米管的疏水性,形态和导电性能的比较

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摘要

The functionalization of multi-walled carbon nanotubes (MW-CNTs) was obtained by generating reactive perfluoropolyether (PFPE) radicals that can covalently bond to MW-CNTs’ surface. Branched and linear PFPE peroxides with equivalent molecular weights of 1275 and 1200 amu, respectively, have been thermally decomposed for the production of PFPE radicals. The functionalization with PFPE chains has changed the wettability of MW-CNTs, which switched their behavior from hydrophilic to super-hydrophobic. The low surface energy properties of PFPEs have been transferred to MW-CNTs surface and branched units with trifluoromethyl groups, CF3, have conferred higher hydrophobicity than linear units. Porosimetry discriminated the effects of PFPE functionalization on meso-porosity and macro-porosity. It has been observed that reactive sites located in MW-CNTs mesopores have been intensively functionalized by branched PFPE peroxide due to its low average molecular weight. Conductivity measurements at different applied pressures have showed that the covalent linkage of PFPE chains, branched as well as linear, weakly modified the electrical conductivity of MW-CNTs. The decomposed portions of PFPE residues, the PFPE chains bonded on carbon nanotubes, and the PFPE fluids obtained by homo-coupling side-reactions were evaluated by mass balances. PFPE-modified MW-CNTs have been characterized by X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), thermogravimetric analysis (TGA), static contact angle (SCA), surface area, and porosity measurements.
机译:通过产生可与MW-CNTS表面共价键合的反应性全氟聚醚(PFPE)基团获得多壁碳纳米管(MW-CNT)的官能化。分别具有1275和1200AMU的等效分子量的支化和线性PFPE过氧化物分别用于产生PFPE自由基的热分解。用PFPE链的功能化改变了MW-CNT的润湿性,其将它们的行为从亲水转换为超级疏水性。 PFPE的低表面能性能已转移到MW-CNTS表面和具有三氟甲基的支链单元,CF3,伴随着线性单元的疏水性较高。波罗辛术鉴定了PFPE官能化对中间孔隙度和宏观孔隙的影响。已经观察到,由于其低平均分子量,通过支链PFPE过氧化物官能化的反应性位点已经强烈官能化。不同施加压力下的电导率测量表明,PFPE链的共价连接,支链和线性,弱的MW-CNT的电导率。通过质量平衡评估通过质量平衡评估在碳纳米管上键合的PFPE残基的分解部分,并通过同型偶联副反应获得的PFPE流体。已经表征了PFPE改性的MW-CNT,其特征在于X射线光电子能谱(XPS),扫描电子显微镜(SEM),热重分析(TGA),静态接触角(SCA),表面积和孔隙度测量。

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