Synthesis, Characterization of Some Conductive Aromatic Polyamides/Fe3O4 NPs/ITO, and Their Utilization for Methotrexate Sensing

Surfaces Pub Date : 2023-03-03 DOI:10.3390/surfaces6010007
M. Abdel-Rahman, W. El-said, E. M. Sayed, A. Abdel-Wahab
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Abstract

Here, we have synthesized four series of polyamide-conductive polymers and used them to modify Fe3O4 NPs/ITO electrodes. The ability of the modified electrodes to detect methotrexate (MTX) anticancer drug electrochemically was investigated. Synthesis of the target-conducting polyamides, P1a–d, P2a–d, P3a, P3b, P3d, and P4c-d, based on different aromatic moieties, such as ethyl 4-(2-(4H-pyrazol-4-ylidene)hydrazinyl)benzoate, diphenyl sulfone, diphenyl ether or phenyl, has been achieved. They were successfully prepared in good yield via solution–polycondensation reaction of the diamino monomers with different dicarboxylic acid chlorides in the presence of N-methyl-2-pyrrolidone (NMP) as a solvent and anhydrous LiCl as a catalyst. A model compound 4 was synthesized from one mole of ethyl-4-(2-(3, 5-diamino-4H-pyrazol-4-ylidene)hydrazinyl) benzoate (diamino monomer) (3) with two moles benzoyl chloride. The structure of the synthesized monomers and polymers was confirmed by elemental and spectral analyses. In addition, thermogravimetric analysis evaluated the thermal stabilities of these polyamides. Furthermore, the morphological properties of selected polyamides were examined using an scanning electron microscope. Polyamide/Fe3O4/ITO electrodes were prepared, and the electrochemical measurements were performed to measure the new polyamides’ conductivity and to detect the MTX anticancer drug in phosphate buffer saline using cyclic voltammetry. The polyamides (P3b and P4b)/Fe3O4/ITO electrodes showed the highest sensitivity and reversibility towards MTX.
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一些导电芳香族聚酰胺/Fe3O4 NPs/ITO的合成、表征及其在甲氨蝶呤传感中的应用
在这里,我们合成了四种系列的聚酰胺导电聚合物,并用它们来修饰Fe3O4 NPs/ITO电极。研究了修饰电极电化学检测甲氨蝶呤(MTX)抗癌药物的能力。以4-(2-(4h -吡唑-4-酰基)肼基)苯甲酸乙酯、二苯基砜、二苯基醚或苯基等不同芳香基团为基础,合成了P1a-d、P2a-d、P3a、P3b、P3d和P4c-d等导靶聚酰胺。在n -甲基-2-吡咯烷酮(NMP)为溶剂,无水氯化锂(LiCl)为催化剂的条件下,将二氨基单体与不同的二羧酸氯化物进行溶液缩聚反应,获得了较好的收率。以1mol乙基-4-(2-(3,5 -二氨基- 4h -吡唑-4-酰基)肼基)苯甲酸酯(二氨基单体)(3)和2mol苯甲酰氯为原料合成了模型化合物4。合成的单体和聚合物的结构通过元素分析和光谱分析得到了证实。此外,热重分析评价了这些聚酰胺的热稳定性。此外,用扫描电子显微镜观察了所选聚酰胺的形态特性。制备了聚酰胺/Fe3O4/ITO电极,并对其电导率进行了电化学测量,并利用循环伏安法检测磷酸盐缓冲盐水中的MTX抗癌药物。聚酰胺(P3b和P4b)/Fe3O4/ITO电极对MTX具有最高的灵敏度和可逆性。
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