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采用MXene/掺杂聚吲哚和多壁碳纳米管/掺杂聚吲哚设计的丝网印刷电极用于计时电流型酶促葡萄糖传感器。

Screen-printed electrode designed with MXene/doped-polyindole and MWCNT/doped-polyindole for chronoamperometric enzymatic glucose sensor.

作者信息

Phasuksom Katesara, Ariyasajjamongkol Nuttha, Sirivat Anuvat

机构信息

Conductive and Electroactive Polymers Research Unit, The Petroleum and Petrochemical College, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

Heliyon. 2024 Jan 12;10(2):e24346. doi: 10.1016/j.heliyon.2024.e24346. eCollection 2024 Jan 30.

Abstract

The enzymatic glucose sensors as modified by MXene-dPIn and MWCNT-dPIn on a screen-printed carbon electrode (SPCE) were investigated. Herein, MXene was molybdenum carbide (MoC) which has never been utilized and reported for glucose sensors. The biopolymer type to support the enzyme immobilization was examined and compared between chitosan (CHI) and κ-carrageenan (κC). MWCNT-dPIn obviously showed a larger electroactive surface area, lower charge transfer resistance and higher redox current than MoC-dPIn, indicating that MWCNT-dPIn is superior to MoC-dPIn. For the chitosan-based sensors, the sensitivity value of CHI-GOD/MoC-dPIn is 3.53 μA mM cm in the linear range of 2.5-10 mM with the calculated LOD of 1.57 mM. The sensitivity value of CHI-GOD/MWCNT-dPIn is 18.85 μA mM cm in the linear range of 0.5-25 mM with the calculated LOD of 0.115 mM. For the κ-carrageenan based sensors, κC-GOD/MWCNT-dPIn exhibits the sensitivity of 15.80 μA mM cm and the widest linear range from 0.1 to 50 mM with the calculated LOD of 0.03 mM. The presently fabricated sensors exhibit excellent reproducibility, good selectivity, high stability, and disposal use. The fabricated glucose sensors are potential as practical glucose sensors as the detectable glucose ranges well cover the glucose levels found in blood, urine, and sweat for both healthy people and diabetic patients.

摘要

研究了在丝网印刷碳电极(SPCE)上用MXene-dPIn和MWCNT-dPIn修饰的酶促葡萄糖传感器。在此,MXene是碳化钼(MoC),此前从未用于葡萄糖传感器,也未有相关报道。研究并比较了壳聚糖(CHI)和κ-卡拉胶(κC)这两种用于支持酶固定化的生物聚合物类型。与MoC-dPIn相比,MWCNT-dPIn明显具有更大的电活性表面积、更低的电荷转移电阻和更高的氧化还原电流,这表明MWCNT-dPIn优于MoC-dPIn。对于基于壳聚糖的传感器,CHI-GOD/MoC-dPIn在2.5 - 10 mM的线性范围内灵敏度值为3.53 μA mM cm,计算得到的检测限为1.57 mM。CHI-GOD/MWCNT-dPIn在0.5 - 25 mM的线性范围内灵敏度值为18.85 μA mM cm,计算得到的检测限为0.115 mM。对于基于κ-卡拉胶的传感器,κC-GOD/MWCNT-dPIn的灵敏度为15.80 μA mM cm,线性范围最宽,为0.1至50 mM,计算得到的检测限为0.03 mM。目前制备的传感器具有出色的重现性、良好的选择性、高稳定性以及可弃用性。所制备的葡萄糖传感器具有作为实用葡萄糖传感器的潜力,因为其可检测的葡萄糖范围很好地覆盖了健康人和糖尿病患者血液、尿液和汗液中的葡萄糖水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a60e/10826182/aa3674581ade/sc1.jpg

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