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杂交 1D-2D MnMoO-MXene 纳米复合材料作为高性能电化学传感平台,用于灵敏检测废水中二羟基苯异构体。

Hybridized 1D-2D MnMoO-MXene nanocomposites as high-performing electrochemical sensing platform for the sensitive detection of dihydroxybenzene isomers in wastewater samples.

机构信息

Department of Energy and Materials Engineering, Dongguk University-Seoul, Seoul 100-715, Republic of Korea.

NanoBio High-Tech Materials Research Center, Department of Biological Engineering, Inha University, Incheon 22212, Republic of Korea.

出版信息

J Hazard Mater. 2022 Jan 5;421:126775. doi: 10.1016/j.jhazmat.2021.126775. Epub 2021 Jul 31.

Abstract

Hydroquinone (HQ) and catechol (CC) are the two major dihydroxybenzene isomers, are considered one of the toxic pollutants in wastewater, which often coexisted and impede each other during sample identification. For practical analysis and simultaneous detection of HQ and CC in wastewater, we fabricate a hybrid electrochemical sensor with electrospun one-dimensional (1D) MnMoO nanofibers coupled with a few-layered exfoliated two-dimensional (2D) MXene. The facilitated abundant defective edges of 1D MnMoO and 2D MXene nanoarchitecture accelerated the effect of synergistic signal amplification and exhibited high electrocatalytic activity towards the oxidation of hydroquinone and catechol. MnMoO-MXene-GCE showed oxidation potentials of 0.102 V and 0.203 V for hydroquinone and catechol, respectively. It revealed the distinguished and simultaneous detection range of 0.101 V with a strong anodic peak current. Noteworthily, the proposed 1D-2D hybridized MnMoO-MXene-GCE sensor exhibited a wide linear response from 5 nM to 65 nM for hydroquinone and catechol. Moreover, it showed a low detection limit of 0.26 nM and 0.30 nM for HQ and CC with high stability, respectively. The feasible 1D-2D MnMoO-MXene nanocomposite-based biosensor effectively detected hydroquinone and catechol in hazardous water pollutants using the differential pulse voltammetric technique with recovery values.

摘要

对苯二酚 (HQ) 和邻苯二酚 (CC) 是两种主要的二羟基苯异构体,被认为是废水中的有毒污染物之一,在样品鉴定过程中经常共存并相互干扰。为了在实际分析中同时检测废水中的 HQ 和 CC,我们制备了一种混合电化学传感器,该传感器采用电纺一维 (1D) MnMoO 纳米纤维与少层剥离二维 (2D) MXene 结合。一维 MnMoO 和二维 MXene 纳米结构丰富的缺陷边缘促进了协同信号放大的效果,并表现出对 HQ 和 CC 氧化的高电催化活性。MnMoO-MXene-GCE 对 HQ 和 CC 的氧化电位分别为 0.102 V 和 0.203 V。它显示出 0.101 V 的区分和同时检测范围,具有强烈的阳极峰电流。值得注意的是,所提出的 1D-2D 杂化 MnMoO-MXene-GCE 传感器对 HQ 和 CC 具有从 5 nM 到 65 nM 的宽线性响应。此外,它还表现出 HQ 和 CC 的低检测限分别为 0.26 nM 和 0.30 nM,具有高稳定性。基于可行的 1D-2D MnMoO-MXene 纳米复合材料的生物传感器使用差分脉冲伏安技术有效地检测了危险水中污染物中的 HQ 和 CC,并具有回收值。

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