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Preparation and Toxicological Assessment of Functionalized Carbon Nanotube-Polymer Hybrids

机译:功能化碳纳米管-聚合物杂化物的制备及毒理学评估

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摘要

Novel Carbon Nanotube-Polymer Hybrids were synthesized as potential materials for the development of membranes for water treatment applications in the field of Membrane Bioreactors (MBRs). Due to the toxicological concerns regarding the use of nanomaterials in water treatment as well as the rising demand for safe drinking water to protect public health, we studied the functionalization of MWCNTs and Thin-MWCNTs as to control their properties and increase their ability of embedment into porous anisotropic polymeric membranes. Following the growth of the hydrophilic monomer on the surface of the properly functionalized CNTs, that act as initiator for the controlled radical polymerization (ATRP) of sodium styrene sulfonate (SSNa), the antimicrobial quaternized phosphonium and ammonium salts were attached on CNTs-g-PSSNa through non-covalent bonding. In another approach the covalent attachment of quaternized ammonium polymeric moieties of acrylic acid-vinyl benzyl chloride copolymers with N,N-dimethylhexadecylamine (P(AA12-co-VBCHAM)) on functionalized CNTs has also been attempted. Finally, the toxicological assessment in terms of cell viability and cell morphological changes revealed that surface characteristics play a major role in the biological response of functionalized CNTs.
机译:合成了新型碳纳米管-聚合物杂化物,作为开发膜的潜在材料,该膜用于膜生物反应器(MBR)领域的水处理应用。由于有关在水处理中使用纳米材料的毒理学问题以及对保护公共健康的安全饮用水的需求不断增长,我们研究了MWCNT和Thin-MWCNT的功能化,以控制其性能并增强其嵌入水中的能力。多孔各向异性聚合物膜。随着亲水性单体在适当官能化的CNT表面上的生长,该表面作为苯乙烯磺酸钠(SSNa)受控自由基聚合(ATRP)的引发剂,将抗菌性季铵化phospho盐和铵盐附着在CNTs-g-上PSSNa通过非共价键结合。在另一种方法中,还尝试了丙烯酸-乙烯基苄基氯共聚物与N,N-二甲基十六烷基胺(P(AA12-co-VBCHAM))的季铵化铵聚合物部分在官能化CNT上的共价连接。最后,根据细胞活力和细胞形态变化进行的毒理学评估表明,表面特征在功能化CNT的生物反应中起主要作用。

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