Ranjith Kumar Deivasigamani, Rajesh Kuppusamy, Sayed Mostafa Saad, Milton Ahamed, Shim Jae-Jin
School of Chemical Engineering, Yeungnam University, 280 Daehak-ro, Gyeongsan 38541, Gyeongbuk, Republic of Korea.
Research Centre, Sri Sivasubramaniya Nadar College of Engineering, Tamil Nadu 603110, India.
Polymers (Basel). 2023 Jan 22;15(3):577. doi: 10.3390/polym15030577.
D-penicillamine (PA) is a sulfur group-containing drug prescribed for various health issues, but overdoses have adverse effects. Therefore, regular, selective, and sensitive sensing is essential to reduce the need for further treatment. In this study, diphenylamine (DPA) was electropolymerized in an aqueous acidic medium. The PA detection sensitivity, selectivity, and limit of detection were enhanced by electropolymerizing DPA on an electrochemically reduced graphene oxide (ERGO)/glassy carbon (GC) surface. The formation of p-DPA and ERGO was investigated using various techniques. The as-prepared p-DPA@ERGO/GC revealed the excellent redox-active (N-C to N=C) sites of p-DPA. The p-DPA@ERGO/GC electrode exhibited excellent electrochemical sensing ability towards PA determination because of the presence of the -NH-functional moiety and effective interactions with the -SH group of PA. The p-DPA@ERGO/GC exhibited a high surface coverage of 9.23 × 10 mol cm. The polymer-modified p-DPA@ERGO/GC electrode revealed the amperometric determination of PA concentration from the 1.4 to 541 μM wide range and the detection limit of 0.10 μM. The real-time feasibility of the developed p-DPA@ERGO/GC electrode was tested with a realistic PA finding in human blood serum samples and yielded a good recovery of 97.5-101.0%, confirming the potential suitability in bio-clinical applications.
D-青霉胺(PA)是一种含硫药物,用于治疗各种健康问题,但过量服用会产生不良反应。因此,定期、选择性和灵敏的检测对于减少进一步治疗的需求至关重要。在本研究中,二苯胺(DPA)在酸性水溶液中进行电聚合。通过在电化学还原氧化石墨烯(ERGO)/玻碳(GC)表面电聚合DPA,提高了PA检测的灵敏度、选择性和检测限。采用多种技术研究了对二苯胺(p-DPA)和ERGO的形成。所制备的p-DPA@ERGO/GC显示出p-DPA优异 的氧化还原活性(N-C到N=C)位点。由于存在-NH官能团以及与PA的-SH基团的有效相互作用,p-DPA@ERGO/GC电极对PA测定表现出优异的电化学传感能力。p-DPA@ERGO/GC的表面覆盖率高达9.23×10 mol/cm²。聚合物修饰的p-DPA@ERGO/GC电极显示出在1.4至541μM宽范围内对PA浓度的安培测定,检测限为0.10μM。用人类血清样本中实际检测到的PA对所开发的p-DPA@ERGO/GC电极的实时可行性进行了测试,回收率良好,为97.5-101.0%,证实了其在生物临床应用中的潜在适用性。