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Novel Nanoarchitectures Based on Lignin Nanoparticles for Electrochemical Eco-Friendly Biosensing Development

机译:基于木质素纳米粒子的新型纳米建筑用于电化学环保生物传感发育

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摘要

Novel nanoarchitectures based on lignin nanoparticles (LNPs) were designed and realized for electrochemical eco-friendly biosensing development. Two types of lignin nanoparticles were utilized for the modification of a gold bare electrode, namely organosolv (OLNPs) and kraft lignin (KLNPs) nanoparticles, synthetized from a sulfur-free and a sulfur lignin, respectively. The electrochemical behavior of LNP-modified electrodes was studied using two electrochemical techniques, cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). Compared to the gold bare electrode, an evident decrease in the faradaic current and increase of the ΔEp were observed in cyclic voltammograms. In addition, larger semicircles were registered in Nyquist plots. These results suggest a strong inhibition effect of the electron transfer reaction by LNPs layer, especially in the case of KLNPs. The modified electrodes, properly assembled with concanavalin A (ConA) and glucose oxidase (GOx), were successively tested as biosensing platforms for glucose, showing a sensitivity of (4.53 ± 0.467) and (13.74 ± 1.84) μA mM−1 cm2 for Au/SAMCys/OLNPs/ConA/GOx and Au/KLNPs/ConA/GOx biosensors, respectively. Finally, different layers of the KNLPs/ConA/GOx-modified Au electrode were tested, and the three-layered Au(KNLPs/ConA/GOx)3 showed the best analytical performance.
机译:设计并实现了基于木质素纳米粒子(LNP)的新型纳米建筑,以实现电化学环保生物传感发育。使用两种类型的木质素纳米粒子用于改性金裸电极,即有机溶胶(OLNP)和牛皮蛋白(KLNP)纳米颗粒,分别由无硫和硫木质素合成。使用两种电化学技术,循环伏安法(CV)和电化学阻抗光谱(EIS)研究了LNP改性电极的电化学行为。与金裸电极相比,在循环伏安图中观察到距离距离达留下电流和ΔEP的增加的明显下降。此外,在Nyquist地块中注册了较大的半圆。这些结果表明通过LNP层的电子转移反应的强烈抑制效果,特别是在KLNPS的情况下。用粗碱素A(CONA)和葡萄糖氧化酶(GOX)适当组装的改性电极作为葡萄糖的生物传感平台,显示出(4.53±0.467)和(13.74±1.84)μAmm-1cm 2的敏感性/ samcys / olnps / cona / gox和au / klnps / cona / gox生物传感器。最后,测试了不同的KNLP / CONA / GOX改性AU电极的层,并且三层AU(KNLPS / CONA / GOX)3显示了最佳的分析性能。

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