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仿生合成 N/O 共掺杂多孔碳限域尖晶石型 NiFeO 异质结构模拟物用于抗氧化剂的三模式传感及改善包装性能。

Biotemplated fabrication of N/O co-doped porous carbon confined spinel NiFeO heterostructured mimetics for triple-mode sensing of antioxidants and ameliorating packaging properties.

机构信息

School of Pharmacy, Xuzhou Medical University, Xuzhou 221004, China.

School of Electronic Information, Xijing University, Xi'an 710123, China.

出版信息

Food Chem. 2024 May 30;441:138365. doi: 10.1016/j.foodchem.2024.138365. Epub 2024 Jan 7.

DOI:10.1016/j.foodchem.2024.138365
PMID:38211476
Abstract

In this work, shrimp shell-derived magnetic NiFeO/N, O co-doped porous carbon nanozyme with superior oxidase (OXD)-like activity was prepared and used for colorimetric/photothermal/smartphone dual-signal triple-mode detection of antioxidants in fruits and beverages. The magnetic NiFeO/N, O co-doped porous carbon (MNPC) material was triumphantly fabricated using a combined in-situ surface chelation and pyrolysis method. The resultant MNPC composite exhibits a superior OXD-like activity, which can effectively oxidize 3,3',5,5'-tetramethylbenzidine (TMB) for yielding colorimetric/temperature dual-signal (CTDS) in absence of HO. This CTDS output sensor was successfully used for the determination of ascorbic acid and tannic acid. The proposed CTDS sensor with good specificity and high sensitivity can satisfy different on-site analysis requirements. Interestingly, the MNPC as a sustainable filler was further used for improving packaging properties of polyvinyl alcohol film. In short, this work offers a large-scale and cheap method to fabricate magnetic carbon-based nanozyme for monitoring antioxidants and ameliorating packaging properties.

摘要

在这项工作中,制备了一种具有优异过氧化物酶(OXD)样活性的虾壳衍生磁性 NiFeO/N、O 共掺杂多孔碳纳米酶,并用于水果和饮料中抗氧化剂的比色/光热/智能手机双信号三模式检测。通过原位表面螯合和热解相结合的方法,成功制备了磁性 NiFeO/N、O 共掺杂多孔碳(MNPC)材料。所得的 MNPC 复合材料表现出优异的 OXD 样活性,可在不存在 HO 的情况下有效氧化 3,3',5,5'-四甲基联苯胺(TMB),产生比色/温度双信号(CTDS)。该 CTDS 输出传感器成功用于抗坏血酸和单宁酸的测定。该具有良好特异性和高灵敏度的 CTDS 传感器可以满足不同现场分析的要求。有趣的是,MNPC 作为一种可持续的填充剂,进一步用于改善聚乙烯醇薄膜的包装性能。总之,这项工作提供了一种大规模且廉价的方法来制备用于监测抗氧化剂和改善包装性能的磁性碳基纳米酶。

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