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纳米材料在智能包装应用中的研究进展综述

Nanomaterials in Smart Packaging Applications: A Review.

机构信息

Electrical and Computer Engineering (ECE) Department, McMaster University, 1280 Main Street W, Hamilton, Ontario, L8S 4K1, Canada.

出版信息

Small. 2022 Jan;18(1):e2101171. doi: 10.1002/smll.202101171. Epub 2021 Sep 12.

Abstract

Food wastage is a critical and world-wide issue resulting from an excess of food supply, poor food storage, poor marketing, and unstable markets. Since food quality depends on consumer standards, it becomes necessary to monitor the quality to ensure it meets those standards. Embedding sensors with active nanomaterials in food packaging enables customers to monitor the quality of their food in real-time. Though there are many different sensors that can monitor food quality and safety, pH sensors and time-temperature indicators (TTIs) are the most critical metrics in indicating quality. This review showcases some of the recent progress, their importance, preconditions, and the various future needs of pH sensors and TTIs in food packaging for smart sensors in food packaging applications. In discussing these topics, this review includes the materials used to make these sensors, which vary from polymers, metals, metal-oxides, carbon-based materials; and their modes of fabrication, ranging from thin or thick film deposition methods, solution-based chemistry, and electrodeposition. By discussing the use of these materials, novel fabrication process, and problems for the two sensors, this review offers solutions to a brighter future for the use of nanomaterials for pH indicator and TTIs in food packaging applications.

摘要

食物浪费是一个全球性的严重问题,主要是由于食物供应过剩、储存不当、营销不善和市场不稳定造成的。由于食品质量取决于消费者的标准,因此有必要对其进行监测,以确保其符合这些标准。在食品包装中嵌入具有活性纳米材料的传感器,可以使客户实时监测食品的质量。虽然有许多不同的传感器可以监测食品的质量和安全性,但 pH 传感器和时间-温度指示器 (TTI) 是指示质量的最重要指标。本综述展示了一些最新的进展、它们的重要性、前提条件以及在食品包装中的 pH 传感器和 TTIs 在食品包装应用中的智能传感器的各种未来需求。在讨论这些主题时,本综述包括用于制造这些传感器的材料,这些材料包括聚合物、金属、金属氧化物、碳基材料;以及它们的制造模式,包括薄膜或厚膜沉积方法、基于溶液的化学、电沉积。通过讨论这两种传感器的材料使用、新型制造工艺和问题,本综述为纳米材料在食品包装应用中的 pH 指示剂和 TTIs 的使用提供了未来的解决方案。

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