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The effect of optimization HCl addition to dispersibility in carbon nanotubes functionalization as drug delivery

机译:优化HCl除碳纳米管官能化分散性的影响为药物递送

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Carbon nanotube (CNT) is a breakthrough of cancer drug delivery which is able towards into targeted cells while minimizing normal cells damage apart from cancer cells. CNT has the ability for high anticancer drug loading and high targeting delivery without causing side effects. Functionalization process is required to elevate the dispersibility of CNT as a drug delivery due to the CNT limitation which not matched the standard of drug delivery system, such as dispersibility. This study aims to obtain the effect of hydrochloric acid (HCl) molarity optimization to the dispersibility of functionalized CNT (f-CNT). f-CNT is functionalized using a mixture of 6M HNO_3 and 6M H_2SO_4. Variation were performed at HCl molarity which consist of 6M, 8M, 10M, and 12 M. The greatest HCl molarity is f-CNT which does not damage the morphology of CNT, has a high stability of dispersion, and impurities-free. Functionalized CNT (CNT-f) were characterized by Fourier-Transform Infrared Spectroscopy (FTIR), Scanning Electron Microscopy-Energy Dispersive Spectroscopy (SEM-EDS), and dispersion tests. The characterization resulted f-CNT with HCl molarity of 10M has the greatest oxygen percentage with 6,84% dispersibility for more than 24 days.
机译:碳纳米管(CNT)是癌症药物递送的突破,其能够进入靶向细胞,同时最小化与癌细胞之外的正常细胞损坏。 CNT具有高抗癌药物载荷和高靶向递送的能力,而不会引起副作用。官能化过程需要升高CNT作为药物递送的分散性,因为CNT限制由于药物递送系统的标准,例如分散性而导致的CNT限制。本研究旨在获得盐酸(HCl)摩尔性优化对官能化CNT(F-CNT)的分散性的影响。使用6M HNO_3和6M H_2SO_4的混合物官能化F-CNT。在HCl摩尔度下进行变异,其由6m,8m,10m和12m组成。最大的HCl摩尔是F-CNT,其不会损坏CNT的形态,具有高稳定性的分散体,无杂质。官能化CNT(CNT-F)的特征在于傅里叶变换红外光谱(FTIR),扫描电子显微镜 - 能量分散谱(SEM-EDS)和分散试验。表征引起的F-CNT具有10m的HCl摩尔度,具有6,84%的分散性含量超过24天。

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