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金属基纳米多孔材料在环境相关生物分子传感中的最新进展。

Recent advances in metal-based nanoporous materials for sensing environmentally-related biomolecules.

机构信息

Centre for Inorganic Chemistry, School of Chemistry, University of the Punjab, Lahore, Pakistan.

Centre for Inorganic Chemistry, School of Chemistry, University of the Punjab, Lahore, Pakistan.

出版信息

Chemosphere. 2022 Nov;307(Pt 4):135999. doi: 10.1016/j.chemosphere.2022.135999. Epub 2022 Aug 16.

Abstract

Highly sensitive, stable, selective, efficient, and short reaction time sensors play a substantial role in daily life/industry and are the need of the day. Due to the rising environmental issues, nanoporous carbon and metal-based materials have attracted significant attention in environmental analysis owing to their intriguing and multifunctional properties and cost-effective and rapid detection of different analytes by sensing applications. Environmental-related issues such as pollution have been a significant threat to the world. Therefore, it is necessary to fabricate highly promising performance-based sensor materials with excellent reliability, selectivity and good sensitivity for monitoring various analytes. In this regard, different methods have been employed to fabricate these sensors comprising metal, metal oxides, metal oxide carbon composites and MOFs leading to the formation of nanoporous metal and carbon composites. These composites have exceptional properties such as large surface area, distinctive porosity, and high conductivity, making them promising candidates for several versatile sensing applications. This review covers recent advances and significant studies in the sensing field of various nanoporous metal and carbon composites. Key challenges and future opportunities in this exciting field are also part of this review.

摘要

高灵敏度、稳定、选择性强、高效、反应时间短的传感器在日常生活/工业中发挥着重要作用,是当今的需求。由于环境问题日益严重,纳米多孔碳和基于金属的材料因其有趣的多功能特性以及在传感应用中对不同分析物进行经济高效和快速检测而引起了人们的极大关注。与环境相关的问题,如污染,已经对世界构成了重大威胁。因此,有必要制造具有出色可靠性、选择性和良好灵敏度的基于性能的传感器材料,以监测各种分析物。在这方面,已经采用了不同的方法来制造这些传感器,包括金属、金属氧化物、金属氧化物碳复合材料和 MOFs,从而形成纳米多孔金属和碳复合材料。这些复合材料具有大表面积、独特的多孔性和高导电性等优异性能,使其成为多种多功能传感应用的有前途的候选材料。本综述涵盖了各种纳米多孔金属和碳复合材料传感领域的最新进展和重要研究。本综述还介绍了该令人兴奋的领域中的关键挑战和未来机遇。

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