MnO/TiO2/C/N-CNTs derived from Mn-doped Ti MOFs for simultaneous detection of catechol and hydroquinone.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-28 DOI:10.1039/d4ay01217h
Wenjing Liu, Sumin Xu, Jinjin Zhang, Jianying Qu
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Abstract

Mn-doped Ti-based MOFs (MnTi MOFs) were synthesized by a solvothermal method, and calcined at high temperature after being mixed with pre-prepared PPy nanotubes to give MnO/TiO2/C/N-CNTs composites. The composites were studied by SEM, XRD, XPS and FTIR. Based on these composites, a new electrochemical sensor was prepared, which has good electrocatalytic ability for the redox of catechol (CC) and hydroquinone (HQ), and can detect CC and HQ simultaneously. The results showed that the oxidation peak current of CC and HQ increased linearly in the concentration range of 0.50-120.00 μM. The detection limits were 0.033 μM and 0.019 μM, respectively. The constructed sensor has been successfully used for the simultaneous detection of CC and HQ in lake water and tap water, and has a good recovery rate.

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由掺锰 Ti MOFs 衍生的 MnO/TiO2/C/N-CNTs 用于同时检测儿茶酚和对苯二酚。
采用溶热法合成了掺锰的钛基 MOFs(MnTi MOFs),将其与预先制备的 PPy 纳米管混合后进行高温煅烧,得到了 MnO/TiO2/C/N-CNTs 复合材料。对这些复合材料进行了 SEM、XRD、XPS 和 FTIR 研究。基于这些复合材料制备了一种新型电化学传感器,该传感器对邻苯二酚(CC)和对苯二酚(HQ)的氧化还原具有良好的电催化能力,可同时检测 CC 和 HQ。结果表明,在 0.50-120.00 μM 浓度范围内,CC 和 HQ 的氧化峰电流呈线性增长。检测限分别为 0.033 μM 和 0.019 μM。所构建的传感器已成功用于同时检测湖水和自来水中的 CC 和 HQ,并具有良好的回收率。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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