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Novel amino-acid-based polymer/multi-walled carbon nanotube bio-nanocomposites: highly water dispersible carbon nanotubes decorated with gold nanoparticles

机译:新型的基于氨基酸的聚合物/多壁碳纳米管生物纳米复合材料:装饰有金纳米颗粒的高水分散性碳纳米管

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摘要

A well-reproducible and completely green route towards highly water dispersible multi-walled carbon nanotubes (MWNT) is achieved by a non-invasive, polymer wrapping technique, where the polymer is adsorbed on the MWNT's surface. Simply mixing an amino-acid-based polymer derivative, namely poly methacryloyl _-alanine (PMBA) with purified MWNTs in distilled water resulted in the formation of PMBA-MWNT nanocomposite hybrids. Gold nanoparticles (AuNPs) were further anchored on the polymer-wrapped MWNTs, which were previously sonicated in distilled water, via the hydrogen bonding interaction between the carboxylic acid functional groups present in the polymer-modified MWNTs and the citrate-capped AuNPs. The surface morphologies and chemistries of the hybrids decorated with nanoparticles were characterized by transmission electron microscopy (TEM) and UV-visible absorption spectroscopy. Additionally, the composites were also prepared by the in situ free radical polymerization of the monomer, methacryloyl _-alanine (MBA), with MWNTs. Thus functionalized MWNTs were studied by thermogravimetric analysis (TGA), field emission scanning electron microscopy (FE-SEM) and TEM. Both methods were effective in the nanotube functionalization and ensured good dispersion and high stability in water over three months. Due to the presence of the high densities of carboxylic acid functionalities on the surface of CNTs, various colloidal nanocrystals can be attached to MWNTs.
机译:通过非侵入性的聚合物包裹技术,可以实现一种高度可复制且完全绿色的,通向高度水分散性的多壁碳纳米管(MWNT)的方法,其中聚合物被吸附在MWNT的表面上。在蒸馏水中简单地将氨基酸基聚合物衍生物(即聚甲基丙烯酰_丙氨酸(PMBA))与纯化的MWNTs混合,即可形成PMBA-MWNT纳米复合材料杂化物。金纳米颗粒(AuNPs)通过存在于聚合物改性的MWNTs中的羧酸官能团与柠檬酸盐封端的AuNPs之间的氢键相互作用,进一步锚固在预先用蒸馏水超声处理的聚合物包裹的MWNTs中。用透射电子显微镜(TEM)和紫外可见吸收光谱对纳米颗粒修饰的杂化物的表面形貌和化学性质进行了表征。此外,复合材料还通过单体,甲基丙烯酰基β-丙氨酸(MBA)与MWNT的原位自由基聚合制备。通过热重分析(TGA),场发射扫描电子显微镜(FE-SEM)和TEM研究了功能化的MWNT。两种方法均有效地实现了纳米管的功能化,并确保了三个月内在水中的良好分散性和高稳定性。由于在CNT表面上存在高密度的羧酸官能团,因此各种胶体纳米晶体可以附着到MWNT上。

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