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A novel hemin-based organic phase artificial enzyme electrode and its application in different hydrophobicity organic solvents

机译:新型基于血红素的有机相人工酶电极及其在不同疏水性有机溶剂中的应用

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摘要

Based on the newly discovered artificial enzyme formed by mixing hemin with supramolecular hydrogels via the self-assembly of amphiphilic oligopeptides, we prepared a novel organic phase artificial enzyme electrode by coating the artificial enzyme on an electrode which was then covered with sodium alginate for protection. Scanning electron micrograph showed that the supramolecular hydrogel kept its nanofibers structure on the electrode surface. Hemin dispersed in the supermolecular hydrogel as monomer greatly promotes its direct electrochemistry behavior in organic solvents. At the same time, this electrode exhibited higher electrocatalytic ability to tert-butyl hydroperoxide (TBHP) than free hemin modified electrode (free hemin mainly present as dimer). As low as 27 mu M TBHP could be detected with a linear range from 6.6 x 10(-5) to 1.27 x 10(-2) M via amperometric method. The biosensor can reach 95% of the steady-state current in about 10 +/- 2s. More importantly, it can be applied in both hydrophilic and hydrophobic solvents without adding extra buffer or mediators to them that cannot be received by most traditional organic phase enzyme electrodes. This unique property greatly promotes the development of the organic phase enzyme electrodes by facilitating the detection of different kinds of substrates of the hemin-based artificial enzyme soluble in hydrophilic and hydrophobic solvents. The artificial enzyme electrode was successfully used to determine organic peroxides in body lotion samples.
机译:基于新发现的通过两亲性寡肽的自组装将血红素与超分子水凝胶混合而形成的人工酶,我们通过将人工酶涂覆在电极上并随后用海藻酸钠覆盖进行保护来制备新型有机相人工酶电极。扫描电子显微镜照片显示,超分子水凝胶在电极表面上保持其纳米纤维结构。作为单体分散在超分子水凝胶中的血红素极大地促进了其在有机溶剂中的直接电化学行为。同时,该电极对叔丁基过氧化氢(TBHP)的电催化能力比游离的血红素修饰的电极(游离的血红素主要以二聚体存在)高。通过安培法可以检测到低至27μM TBHP,线性范围为6.6 x 10(-5)至1.27 x 10(-2)M。生物传感器可以在大约10 +/- 2s的时间内达到稳态电流的95%。更重要的是,它可以应用于亲水性和疏水性溶剂中,而无需向其添加大多数传统有机相酶电极无法接受的额外缓冲剂或介体。通过促进检测可溶于亲水性和疏水性溶剂的基于血红素的人造酶的各种底物,这种独特的性质极大地促进了有机相酶电极的发展。人造酶电极已成功用于测定身体乳液样品中的有机过氧化物。

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