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Cardanol-derived cationic surfactants enabling the superior antibacterial activity of single-walled carbon nanotubes

机译:衍生的阳离子表面活性剂,使单壁碳纳米管的优异抗菌活性

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Single-walled carbon nanotubes (SWCNTs) are potential antibacterial material, and their antibacterial activity in aqueous solutions depends on efficient surfactants to create strong interactions between well-dispersed SWCNTs and bacterial cells. Here, we designed and synthesized a new family of cationic surfactants by introducing different positively charged hydrophilic heads, i.e. -(CH2)(6)N+(CH3)(3)Br-, -(CH2)(2)N+(CH3)(3)Br- and -(CH2)(2)N(+)PyridineBr(-), to cardanol obtained from cashew nut shell liquid. These surfactants can efficiently disperse SWCNTs in aqueous solutions because benzene rings and olefin chains in cardanol enable their strong pi-stacking on SWCNTs. A much higher fraction of SWCNTs can be dispersed individually compared to the commonly used surfactant, dodecylbenzene-sulfonate sodium (SDBS). SWCNTs dispersed in the cardanol-derived surfactants demonstrate significantly improved antibacterial activity. At the concentration of 0.5 wt%, their minimum inhibitory concentration is 0.33 and 0.02 mu g ml(-1) against E. coli and S. aureus, respectively, which is only 0.8%-1.5% of that of SDBS-dispersed SWCNTs. The strong antibacterial activity can be attributed to both better dispersion of SWCNTs and positive charges introduced by hydrophilic heads, which are attracted to negatively charged bacterial cell surfaces. These cardanol-derived surfactants are promising as sustainable surfactants for enabling various SWCNT applications.
机译:单壁碳纳米管(SWCNTS)是潜在的抗菌材料,它们在水溶液中的抗菌活性取决于有效的表面活性剂,以产生良好分散的SWCNT和细菌细胞之间的强相互作用。在这里,我们通过引入不同的带正电气的亲水性头部,即 - (CH2)(6)N +(CH 3)(3)BR-, - (CH2)(2)N +(CH 3)来设计和合成新的阳离子表面活性剂系列3)BR-和 - (CH2)(2)N(+)吡啶( - ),从腰果壳液中获得的肺炎醇。这些表面活性剂可以有效地在水溶液中有效地分散SWCNT,因为碳糖中的苯环和烯烃链使其在SWCNT上堆叠其强烈的PI堆叠。与常用的表面活性剂,十二烷基苯 - 磺酸钠钠(SDB)相比,可以将更高的SWCNT分散。分散在碳粉醇衍生的表面活性剂中的SWCNT表现出显着改善的抗菌活性。在0.5wt%的浓度下,它们的最小抑制浓度分别为0.33和0.02μg,分别对大肠杆菌和金黄色葡萄球菌,其仅为SDBS分散的SWCNTS的0.8%-1.5%。强抗菌活性可归因于SWCNT和亲水头引入的正电荷的既良好分散,也被吸引到带负电的细菌细胞表面。这些衍生的表面活性剂具有可持续的表面活性剂,用于实现各种SWCNT应用。

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