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源自工业废料的纳米纤维生物炭作为过渡金属二硫属化物的承载网络。用于电化学传感的新型可持续一维/二维纳米复合材料。

Nanofibrillar biochar from industrial waste as hosting network for transition metal dichalcogenides. Novel sustainable 1D/2D nanocomposites for electrochemical sensing.

作者信息

Fiori Selene, Della Pelle Flavio, Silveri Filippo, Scroccarello Annalisa, Cozzoni Enrico, Del Carlo Michele, Compagnone Dario

机构信息

Department of Bioscience and Technology for Food, Agriculture and Environment, University of Teramo, Campus "Aurelio Saliceti" Via R. Balzarini 1, 64100, Teramo, Italy.

Department of Bioscience and Technology for Food, Agriculture and Environment, University of Teramo, Campus "Aurelio Saliceti" Via R. Balzarini 1, 64100, Teramo, Italy.

出版信息

Chemosphere. 2023 Mar;317:137884. doi: 10.1016/j.chemosphere.2023.137884. Epub 2023 Jan 16.

Abstract

Industrial wastes have become elective sustainable sources to obtain materials for electronic/electroanalytical purposes; on the other hand, easy and green strategies to include semiconductor 2D graphene-like materials in conductive networks are highly required. In this work, 1D/2D nanocomposites (NCs) based on nanofibrillar biochar (BH) from paper industry waste and transition metal dichalcogenides (TMDs: MoS, WS, MoSe, and WSe), were prepared in water via liquid phase exfoliation (LPE) using sodium cholate as bioderived surfactant. The TMD amount in the NCs has been carefully optimized, searching for the best compromise between electron transfer ability and electroanalytical performances. Four different water-dispersed BH-TMD NCs have been selected and comprehensively studied from the electrochemical point of view and morphologically characterized. The BH-TMDs potentiality have been demonstrated in model solutions and real samples towards different analytes of biological and agri-food interest. The most performing NCs have been selected and used for the simultaneous determination of the neurotransmitters dopamine (DP) and serotonin (SR), and the flavonoids quercetin (QR) and rutin (RT), obtaining good linearity (R ≥ 0.9956) with limits of detection ranging from 10 to 200 nM. Reproducible quantitative recovery values (90-112%, RSD ≤6%, n = 3) were obtained analyzing simultaneously DP and SR in synthetic biological fluid and drugs, and QR and RT in food supplements, proving the usability of the proposed materials for real analyses. This work proves that BH-nanofibers act as a sustainable conductive hosting network for 2D-TMDs, allowing full exploit their electroanalytical potential. The proposed BH-TMD NCs represent a sustainable, affordable, and captivating opportunity for the electrochemical and (bio)sensoristic field.

摘要

工业废料已成为获取电子/电分析用途材料的可选可持续来源;另一方面,迫切需要简便且环保的策略将半导体二维类石墨烯材料纳入导电网络。在这项工作中,基于造纸工业废料的纳米纤维生物炭(BH)和过渡金属二硫属化物(TMDs:MoS、WS、MoSe和WSe)的一维/二维纳米复合材料(NCs),通过液相剥离法(LPE)在水中制备,使用胆酸钠作为生物衍生表面活性剂。对NCs中TMD的含量进行了仔细优化,以寻求电子转移能力和电分析性能之间的最佳平衡。从电化学角度选择并全面研究了四种不同的水分散性BH-TMD NCs,并对其进行了形态表征。在模型溶液和实际样品中,已证明BH-TMDs对生物和农业食品领域不同分析物具有潜力。选择了性能最佳的NCs用于同时测定神经递质多巴胺(DP)和血清素(SR),以及类黄酮槲皮素(QR)和芦丁(RT),获得了良好的线性关系(R≥0.9956),检测限范围为10至200 nM。通过同时分析合成生物流体和药物中的DP和SR,以及食品补充剂中的QR和RT,获得了可重现的定量回收率值(90 - 112%,RSD≤6%,n = 3),证明了所提出材料用于实际分析的可用性。这项工作证明,BH纳米纤维作为二维TMDs的可持续导电承载网络,能够充分发挥其电分析潜力。所提出的BH-TMD NCs为电化学和(生物)传感领域提供了一个可持续、经济且引人注目的机会。

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