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利用高稳定性羊毛角蛋白/CsPbBr 纳米晶体作为一种便携式伯胺响应荧光测试条,用于现场可视化检测食品新鲜度。

Using highly water-stable wool keratin/CsPbBr nanocrystals as a portable amine-responsive fluorescent test strip for onsite visual detection of food freshness.

机构信息

Department of Applied Chemistry, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150001, Heilongjiang, P. R. China.

Department of Physics, Xiamen University, Xiamen 361005, Fujian, P. R. China.

出版信息

J Colloid Interface Sci. 2024 Sep;669:295-304. doi: 10.1016/j.jcis.2024.04.226. Epub 2024 May 1.

Abstract

Perovskite nanocrystals (PNCs) have emerged as promising candidates for fluorescent probes owing to their outstanding photoelectric properties. However, the conventional CsPbBr (CPB) NCs are extremely unstable in water, which has seriously limited their sensing applications in water environment. Herein, we present a powerful ligand engineering strategy for fabricating highly water-stable CPB NCs by using a biopolymer of wool keratin (WK) as the passivator and the polyaryl polymethylene isocyanate (PAPI) as the cross-linking agent. In particular, WK with multi-functional groups can serve as a polydentate ligand to firmly passivate CPB NCs by the ligand exchange process in hot toluene; and then the addition of PAPI can further encapsulate CPB NCs by the crosslinking reaction between PAPI and WK. Consequently, the as-prepared CPB/WK-PAPI NCs can maintain ∼ 80 % of their relative photoluminescence (PL) intensity after 60 days in water, and they still maintain ∼ 40 % of their relative PL intensity even after 512 days in the same environment, which is one of the best water stabilities compared previously reported polymer passivation methods. As a proof-of their application, the portable CPB/WK-PAPI NCs-based test strips are further developed as a fluorescent nanoprobe for real-time and visual monitoring amines and food freshness. Among various amine analytes, the as-prepared test strips exhibit higher sensitivity towards conjugated amines, achieving a remarkable detection limit of 18.3 nM for pyrrole. Our research not only introduces an innovative strategy involving natural biopolymers to enhance the water stability of PNCs, but also highlights the promising potential of PNCs for visually and portably detecting amines and assessing food freshness.

摘要

钙钛矿纳米晶体 (PNCs) 由于其出色的光电性能,已成为荧光探针的有前途的候选者。然而,传统的 CsPbBr (CPB) NCs 在水中极不稳定,这严重限制了它们在水环境中的传感应用。在此,我们提出了一种强大的配体工程策略,通过使用羊毛角蛋白 (WK) 作为钝化剂和多芳基多亚甲基异氰酸酯 (PAPI) 作为交联剂来制备高稳定性的 CPB NCs。特别是,具有多功能基团的 WK 可以作为多齿配体,通过在热甲苯中的配体交换过程来牢固地钝化 CPB NCs;然后加入 PAPI 可以通过 PAPI 和 WK 之间的交联反应进一步封装 CPB NCs。因此,制备的 CPB/WK-PAPI NCs 在水中放置 60 天后仍能保持其相对荧光强度的约 80%,在相同环境下放置 512 天后仍能保持其相对荧光强度的约 40%,这是之前报道的聚合物钝化方法中最好的水稳定性之一。作为其应用的证明,进一步开发了基于便携式 CPB/WK-PAPI NC 的测试条作为用于实时和可视化监测胺和食品新鲜度的荧光纳米探针。在所研究的各种胺分析物中,所制备的测试条对共轭胺表现出更高的灵敏度,对吡咯的检测限低至 18.3 nM。我们的研究不仅引入了一种涉及天然生物聚合物的创新策略来提高 PNCs 的水稳定性,而且还突出了 PNCs 在可视化和便携式检测胺和评估食品新鲜度方面的有前途的潜力。

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