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Effective and Efficient Pretreatment of Polyimide Substrates by Capacitively Coupled Plasma for Coating the Composites of Tetracycline-Imprinted Polymers and Quantum Dots: Comparison with Chemical Pretreatment

机译:电容耦合等离子体涂覆四环素印迹聚合物和量子点的复合材料对聚酰亚胺基材的有效高效预处理:与化学预处理的比较

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摘要

Composites of tetracycline (Tc)-imprinted polymethacrylates and quantum dots have been coated on chemically pretreated polyimide substrates (PIs) as fluorescent sensors. In this study, PIs were pretreated by capacitively coupled plasma (CCP) before coating the same composites on them. For the first time, to fabricate sensors by plasma modification of PIs, the CCP conditions, including plasma gas, flow rate, radio frequency generation power, and duration time, the fabrication details, including coating, baking, and stripping steps, and the sample loading process were optimized to perform a linear decrease in fluorescent intensity with Tc concentrations in the range of 5.0–3000 μM (R = 0.9995) with a limit of detection of 0.2 μM (S/N = 3, relative standard deviation (RSD) = 2.2%). The selectivity of the stripped PIs was evaluated by the imprinting factors (IFs) for Tc (IF = 7.2), other Tc analogues (IF = 3.4–5.3), and steroids (IF ≈ 1) and by the recoveries of 5.0 μM Tc from bovine serum albumin at 300 μg∙mL (98%, RSD = 3.2%), fetal bovine serum at 1.5 ppt (98%, RSD = 2.8%), and liquid milk (94.5%, RSD = 5.3%). The superiority of the present plasma-treated-based sensor over the previous chemically-treated one in fabrication efficiency and detection effectiveness was clear.
机译:四环素(Tc)印迹的聚甲基丙烯酸酯和量子点的复合材料已涂覆在经过化学预处理的聚酰亚胺基材(PIs)上,作为荧光传感器。在这项研究中,先将PIs进行电容耦合等离子体(CCP)预处理,然后再在它们上涂覆相同的复合材料。首次通过等离子体的等离子体修饰制造传感器时,CCP条件(包括等离子体气体,流速,射频产生功率和持续时间),制造细节(包括涂覆,烘烤和剥离步骤)以及样品优化了加载过程,以使Tc浓度在5.0–3000μM(R = 0.9995)范围内线性降低荧光强度,检出限为0.2μM(S / N = 3,相对标准偏差(RSD)= 2.2%)。通过Tc(IF = 7.2),其他Tc类似物(IF = 3.4–5.3)和类固醇(IF≈1)的印迹因子(IFs)以及通过从中提取5.0μMTc的回收率来评估去除的PI的选择性300μg∙mL的牛血清白蛋白(98%,RSD = 3.2%),1.5 ppt的胎牛血清(98%,RSD = 2.8%)和液态奶(94.5%,RSD = 5.3%)。本发明的基于等离子体处理的传感器在制造效率和检测效率方面均优于先前的化学处理传感器。

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