可扩展性
环境监测
环境科学
持续性
可持续发展
钥匙(锁)
环境退化
环境安全
环境友好型
转化式学习
计算机科学
环境资源管理
生化工程
比例(比率)
过程(计算)
环境危害
环境影响评价
环境分析
环境数据
风险分析(工程)
功能(生物学)
范围(计算机科学)
生物多样性
系统工程
功能生态学
生态学
作者
Mohammad Javad Bathaei,Yaren Bathaei,Zheng-Wei Liao,Maryam Yazdanmehr,Sarab S. Sethi,Denys Nikolayev,Filipe A. Cardoso,Clémentine M. Boutry
标识
DOI:10.1002/advs.202511452
摘要
The emergence of a new family of wireless biodegradable sensors marks a groundbreaking leap in ecological and environmental sensing. These biodegradable devices can collect a wide range of data in agriculture, climate research, forestry, water management, and biodiversity protection. Manufactured primarily from environmentally safe transient materials for sensing and data transmission, these systems undergo controlled degradation after use, minimizing environmental electronic waste. Here, a critical review of key aspects in the development and application of biodegradable sensors is performed for ecological and environmental monitoring. First, the different materials utilized in the development of biodegradable environmental monitoring devices and their applications are explored. The relevant degradation mechanisms, including hydrolysis, oxidation, photodegradation, and micro-organism action are examined as a function of environmental conditions. Then compatible and non-toxic fabrication techniques are investigated for building biodegradable sensors, emphasizing their scalability and potential for mass production. Finally, system-level considerations are discussed for sustainable powering of these devices, ensuring efficient operation while maintaining environmental sustainability. By surveying a broad spectrum of applications and ongoing advancements, it is argued that biodegradable sensors have a transformative potential in advancing sustainable, widespread, and cost-effective ecological and environmental monitoring solutions.
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