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一种基于木质素衍生石墨烯电极的绿色路线:用于电化学生物传感器的一次性平台。

A green route for lignin-derived graphene electrodes: A disposable platform for electrochemical biosensors.

机构信息

Division of Sensor and Actuator Systems, Department of Physics, Chemistry and Biology, Linköping University, SE-581 83, Linköping, Sweden.

Division of Sensor and Actuator Systems, Department of Physics, Chemistry and Biology, Linköping University, SE-581 83, Linköping, Sweden.

出版信息

Biosens Bioelectron. 2022 Dec 15;218:114742. doi: 10.1016/j.bios.2022.114742. Epub 2022 Sep 20.

Abstract

The tremendous growth of disposable electrode-based portable devices for point-of-care testing requires mass production of disposable electrodes in a low-cost and sustainable manner. Here, we demonstrate a green route for the conversion of biomass lignin, patterning, and reduction of the lignin-derived graphene electrodes by sequential laser lithography, water lift-off and sodium borohydride (NaBH) treatment, and their use for electrochemical lactate biosensors. Energy-saving and localized laser lithography converted the aromatic ring-rich lignin into porous laser-induced graphene (LIG). The conductivity and attachment of the LIG to the substrate were optimized in a factorial experiment with laser power and scan speed as variables. Characterization results revealed the conversion of partial heteroatoms (e.g., Na, S, O) into granular inorganic compounds on the LIG surface under laser treatment. Water was used as an eco-friendly solvent for the patterning of the LIG (P-LIG) by a lift-off process, where the inorganic residues and un-reacted lignin were dissolved, exposing the macro-/micro-pores in the P-LIG. NaBH induced a reduction of the P-LIG (P-rLIG) resulting in improved electrochemical kinetics with lower charge transfer resistance (27.3 Ω) compared to the LIG (248.1 Ω) and the P-LIG (61.4 Ω). The porous P-rLIG served as a 3D electrode for the deposition of Prussian blue and lactate oxidase for disposable electrochemical lactate biosensors, delivering a good analytical performance towards lactate detection with a linear range up to 16 mM and a high sensitivity (1.21 μA mM). These lignin-derived disposable electrodes, utilizing renewable resources together with low-energy consumption fabrication and patterning, may contribute to the sustainable manufacturing of biosensors for point-of-care and point-of-use applications.

摘要

一次性基于电极的便携式即时检测设备的巨大增长需要以低成本和可持续的方式大规模生产一次性电极。在这里,我们展示了一种绿色途径,用于通过顺序激光光刻、水剥离和硼氢化钠(NaBH)处理将生物质木质素转化、图案化和还原为木质素衍生的石墨烯电极,并将其用于电化学乳酸生物传感器。节能和局部激光光刻将富含芳环的木质素转化为多孔激光诱导石墨烯(LIG)。激光功率和扫描速度作为变量的析因实验优化了 LIG 的导电性和与基底的附着性。表征结果表明,激光处理下部分杂原子(例如,Na、S、O)转化为 LIG 表面的颗粒状无机化合物。水被用作图案化 LIG(P-LIG)的环保溶剂,通过剥离过程,无机残留物和未反应的木质素溶解,暴露出 P-LIG 中的宏观/微观孔。NaBH 诱导 P-LIG(P-rLIG)的还原,与 LIG(248.1 Ω)和 P-LIG(61.4 Ω)相比,电化学动力学得到改善,电荷转移电阻更低(27.3 Ω)。多孔 P-rLIG 用作普鲁士蓝和乳酸氧化酶的 3D 电极,用于一次性电化学乳酸生物传感器,对乳酸检测具有良好的分析性能,线性范围高达 16 mM,灵敏度高(1.21 μA mM)。这些基于木质素的一次性电极利用可再生资源以及低能耗制造和图案化,可能有助于即时护理和即时使用应用的生物传感器的可持续制造。

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