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适用于可靠定量葡萄酒中葡萄糖酸的杂化分子印迹聚合物金修饰纳米颗粒的吸附等温线分析

Adsorption Isotherm Analysis for Hybrid Molecularly Imprinted Polymeric Gold-Decorated Nanoparticles Suitable for Reliable Quantification of Gluconic Acid in Wine.

作者信息

Manrique Rodriguez Nelson Arturo, Costa Marco, Di Masi Sabrina, Zaleski Christopher, García-Cruz Alvaro, Mele Giuseppe, Paradiso Vito Michele, Piletsky Sergey, Malitesta Cosimino, De Benedetto Giuseppe Egidio

机构信息

Laboratory of Analytical Chemistry, Department of Biological and Environmental Sciences and Technologies, University of Salento, Via per Monteroni, 73100 Lecce, Italy.

Department of Chemistry, University of Leicester, University Rd., Leicester LE1 7RH, UK.

出版信息

Nanomaterials (Basel). 2025 Jan 28;15(3):211. doi: 10.3390/nano15030211.

Abstract

A class of hybrid molecularly imprinted polymeric nanoparticles (nanoMIPs) comprising the in situ formation of gold nanoparticles (AuNPs) immobilised in a molecularly imprinted D-gluconate polymer has been designed with the objective of attempting the electrochemical quantification of gluconic acid (GA) in a wine setting. The imprinted polymers were synthesised in the presence of AuNP precursors in a pre-polymerisation mixture, which were confined to one another during the polymerisation of the chains. This allowed the formation of hybrid electroactive responsive imprinted nanoparticles (hybrid AuNPs@GA-nanoMIP), which exhibited enhanced electron conductivity. The morphological characterisation of the produced nanoMIPs revealed a fully decorated Au spherical surface of 200 nm in diameter. This resulted in a large active surface area distribution, as well a pronounced electrochemical peak response at the commercial screen-printed platinum electrode (SPPtE), accompanied by enhanced electron kinetics. The AuNPs@GA-nanoMIP sensor demonstrated the ability to detect a broad range of GA concentrations (0.025-5 mg/mL) with exceptional selectivity and reproducibility. The calibration curves were fitted with different isotherm models, such as the Langmuir, Freundlich and Langmuir-Freundlich functions. Moreover, the efficacy of the detection method was demonstrated by the recovery rates observed in real samples of Italian red wine. This research contributes to the development of a robust and reliable electrochemical sensor for the on-site determination of gluconic acid in food analysis.

摘要

一类混合分子印迹聚合物纳米粒子(nanoMIPs)已被设计出来,其包括原位形成固定在分子印迹D - 葡萄糖酸盐聚合物中的金纳米粒子(AuNPs),目的是尝试在葡萄酒环境中对葡萄糖酸(GA)进行电化学定量分析。印迹聚合物是在预聚合混合物中,在AuNP前体存在的情况下合成的,在链聚合过程中它们相互限制。这使得形成了具有增强电子导电性的混合电活性响应印迹纳米粒子(混合AuNPs@GA - nanoMIP)。所制备的nanoMIPs的形态表征显示,其金球形表面直径为200 nm且完全被修饰。这导致了较大的活性表面积分布,以及在商业丝网印刷铂电极(SPPtE)上出现明显的电化学峰响应,并伴随着增强的电子动力学。AuNPs@GA - nanoMIP传感器展示了检测宽范围GA浓度(0.025 - 5 mg/mL)的能力,具有出色的选择性和重现性。校准曲线用不同的等温线模型进行拟合,如朗缪尔、弗伦德利希和朗缪尔 - 弗伦德利希函数。此外,通过在意大利红葡萄酒实际样品中观察到的回收率证明了检测方法的有效性。这项研究有助于开发一种用于食品分析中现场测定葡萄糖酸的稳健且可靠的电化学传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e93e/11819896/67a74d564c5e/nanomaterials-15-00211-sch001.jpg

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