Current Status and Prospects of Aquatic Environment Biosensor Technology Utilizing Metal Particles and Artificial Intelligence Technology

Current Status and Prospects of Aquatic Environment Biosensor Technology Utilizing Metal Particles and Artificial Intelligence Technology
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초록

This paper discusses the current development and prospects of water environment biosensors that combine metal nanoparticles with artificial intelligence (AI) technology. Water pollution, particularly the detection of harmful substances such as heavy metals, poses serious threats to human health and the environment, increasing the need for rapid and accurate monitoring technologies. Traditional analytical methods are costly, complex, and difficult to apply on-site, prompting the demand for efficient alternatives. Biosensors, which integrate biological components with analytical systems, offer advantages such as miniaturization and low costs. Electrochemical biosensors are known for their high sensitivities and stabilities. Metal nanoparticles are considered ideal materials for biosensors due to their excellent reactivity and plasmonic properties, enabling sensitive detection of harmful substances. Recently, the integration of AI, particularly machine learning, has expanded the application of biosensors by enabling rapid data processing and real-time monitoring. AI-based metal nanoparticle biosensors offer more precise analysis than conventional methods and have the potential to contribute to solving a variety of environmental problems, including water quality monitoring.

키워드

Metal nanoparticles; Biosensors; Artificial intelligence; Water quality monitoring; Machine learning; IONS; SMARTPHONE; SENSOR
제목
Current Status and Prospects of Aquatic Environment Biosensor Technology Utilizing Metal Particles and Artificial Intelligence Technology
제목 (타언어)
Current Status and Prospects of Aquatic Environment Biosensor Technology Utilizing Metal Particles and Artificial Intelligence Technology
저자
Hwang, Heesun; Kim, Sangsik
DOI
10.14478/ace.2024.1087
발행일
2025-02
유형
Review
저널명
공업화학
권
36
호
1
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