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Electrochemistry and electrocatalysis of hemoglobin on multi-walled carbon nanotubes modified carbon ionic liquid electrode with hydrophilic EMIMBF{sub}4 as modifier

机译:亲水性EMIMBF {sub} 4为修饰剂的多壁碳纳米管修饰碳离子液体电极上血红蛋白的电化学和电催化

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摘要

The direct electrochemistry of hemoglobin (Hb) on multi-walled carbon nanotubes (MWCNTs) modified carbon ionic liquid electrode (CILE) was achieved in this paper. By using a hydrophilic ionic liquid 1-ethyl-3-methylimidazolium tetrafluoroborate (EMIMBF{sub}4) as the modifier, a new CILE was fabricated and further modified with MWCNTs to get the MWCNTs/CILE. Hb molecules were immobilized on the surface of MWCNTs/CILE with polyvinyl alcohol (PVA) film by a step-by-step method and the modified electrode was denoted as PVA/Hb/MWCNTs/CILE. UV-vis and FT-IR spectra indicated that Hb remained its native structure in the composite film. Cyclic voltammogram of PVA/Hb/MWCNTs/CILE showed a pair of well-defined and quasi-reversible redox peaks with the formal potential (E{sup}(0')) of -0.370 V (vs. SCE) in 0.1 mol/L pH 7.0 phosphate buffer solution (PBS), which was the characteristic of the Hb heme Fe{sup}(III)/Fe{sup}(II) redox couples. The redox peak currents increased linearly with the scan rate, indicating the direct electron transfer was a surface-controlled process. The electrochemical parameters of Hb in the film were calculated with the results of the electron transfer coefficient (α) and the apparent heterogeneous electron transfer rate constant (k{sub}s) as 0.49 and 1.054s{sup}(-1), respectively. The immobilized Hb in the PVA/MWCNTs composite film modified CILE showed excellent electrocatalytic activity to the reduction of trichloroacetic acid (TCA) and hydrogen peroxide. So the proposed electrode showed the potential application in the third generation reagentless biosensor.
机译:本文实现了血红蛋白(Hb)在多壁碳纳米管(MWCNTs)修饰的碳离子液体电极(CILE)上的直接电化学。通过使用亲水性离子液体1-乙基-3-甲基咪唑四氟硼酸盐(EMIMBF {sub} 4)作为改性剂,制备了一种新的CILE,并用MWCNT对其进行了进一步改性,从而得到了MWCNT / CILE。通过逐步方法,用聚乙烯醇(PVA)膜将Hb分子固定在MWCNTs / CILE的表面上,并将改性电极表示为PVA / Hb / MWCNTs / CILE。 UV-vis和FT-IR光谱表明Hb在复合膜中保持其天然结构。 PVA / Hb / MWCNTs / CILE的循环伏安图显示了一对定义明确且准可逆的氧化还原峰,其形式电势(E {sup}(0'))在0.1 mol / mol中为-0.370 V(vs。SCE) L pH 7.0磷酸盐缓冲溶液(PBS),是Hb血红素Fe {sup}(III)/ Fe {sup}(II)氧化还原对的特征。氧化还原峰值电流随扫描速率线性增加,表明直接电子转移是表面控制的过程。用电子传递系数(α)和表观异质电子传递速率常数(k {sub} s)分别为0.49和1.054s {sup}(-1)计算出薄膜中Hb的电化学参数。 。 PVA / MWCNTs复合膜修饰的CILE中固定化的Hb对还原三氯乙酸(TCA)和过氧化氢显示出优异的电催化活性。因此,提出的电极在第三代无试剂生物传感器中具有潜在的应用前景。

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