王丹丹,沈庆绪.纳米银导电材料在柔性传感器中的应用进展[J].包装工程,2025,(9):64-76.
WANG Dandan,SHEN Qingxu.Progress in the Application of Nano-silver Conductive Materials in Flexible Sensors[J].Packaging Engineering,2025,(9):64-76.
纳米银导电材料在柔性传感器中的应用进展
Progress in the Application of Nano-silver Conductive Materials in Flexible Sensors
投稿时间:2024-11-07  
DOI:10.19554/j.cnki.1001-3563.2025.09.008
中文关键词:  纳米银  柔性传感器  智能包装  医疗健康
英文关键词:nano-silver  flexible sensor  intelligent packaging  medical health
基金项目:天津市科技计划项目(23YDTPJC00270);天津职业大学科研基金项目(20231103)
作者单位
王丹丹 天津职业大学,天津 300410 
沈庆绪 天津电子信息职业技术学院,天津 300350 
AuthorInstitution
WANG Dandan Tianjin Vocational Institute, Tianjin 300410, China 
SHEN Qingxu Tianjin Electronic Information College, Tianjin 300350, China 
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中文摘要:
      目的 分析纳米银导电材料的制备及性能特点,并总结其在柔性传感器中的应用及研究进展,为相关研究人员提供参考。方法 通过查阅近年来国内外纳米银导电材料及柔性传感器的相关参考文献,对不同形貌纳米银导电材料制备及特点进行比较,针对纳米银导电材料在柔性传感器上的研究进行分析,并总结其在智能包装、医疗健康及环境监测等领域的应用。结果 纳米银颗粒的表面等离子体共振特性,使之成为生物传感器研究中较为广泛的材料;纳米银线的高长径比带来的优良柔韧性使之在应变传感器等柔性要求较高的传感器中应用较多;而纳米银片柔韧性和稳定性相对较差,在柔性传感器中研究及应用相对较少。应用纳米银导电材料不同的特性,将其用于传感器的制备,在智能包装、医疗健康及环境监测等领域应用效果良好。结论 纳米银导电材料优异的性能使之在柔性传感器中应用广泛。未来,除优化纳米银导电材料的制备及传感器的结构以外,探索纳米银导电材料跨学科发展,将纳米银导电材料与传感器、人工智能等相结合,将成为医疗健康、智能包装等领域重要研究方向。
英文摘要:
      The work aims to analyze the preparation and performance characteristics of nano-silver conductive materials, and summarize their application and research progress in flexible sensors, so as to provide reference for relevant researchers. The preparation and characteristics of nano-silver conductive materials with different morphologies were compared by referring to the relevant references of nano-silver materials and flexible sensors in China and abroad in recent years. The research on nano-silver conductive materials in flexible sensors was analyzed, and their applications in intelligent packaging, medical health and environmental monitoring were summarized. The surface plasmon resonance characteristics of silver nanoparticles made them widely used in biosensor research. The excellent flexibility brought by the high aspect ratio of silver nano-wire made it widely used in the sensor with high flexibility requirement such as strain sensor. However, the flexibility and stability of nano-silver sheets were relatively poor, and the research and application in flexible sensors were relatively few. Nano-silver conductive materials with different characteristics were used in the preparation of sensors, and had good results in intelligent packaging, medical health and environmental monitoring. The excellent performance of nano-silver conductive materials make them widely used in the flexible sensors. In the future, in addition to optimizing the preparation of nano-silver conductive materials and the structure of sensors, the exploration on the interdisciplinary development of nano-silver conductive materials and the combination of nano-silver conductive materials with sensors, artificial intelligence, etc., will become an important research direction in medical health, intelligent packaging and other fields.
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