A Wireless Sensor Network based on Laser-annealed ZnO Nanostructures for Advance Monitoring in Precise Agriculture

D. Polese, F. Maita, I. Lucarini, A. Ferraro, A. Luca, D. Cannatà, L. Maiolo
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Abstract

Plants own a complex way to communicate with each other based on the exchange of chemical and electrical signals. Indeed, plants are capable of creating extensive communication networks thus warning each other of the presence of pests. In response, plants trigger natural strategy against the infestation. The main tool used by plants for exchanging information is the emission and detection of specific volatile organic compounds in air. To this end, monitoring these compounds can be crucial to reveal the state of health of a cultivation far before visual symptoms arise. In this work, we present a wireless sensor network where each node is based on highly sensitive zinc oxide nanostructures enabling the detection and the discrimination of several chemical gases such as CO, CO2, NO, NO2, CH4, etc. The response of each sensor is tuned by using excimer laser annealing procedure, a technique that changes the electrical and morphological properties of the sensing material. This wireless sensor network can be an appealing solution to capture signals coming from the plants without the usage of bulky and expensive equipment.
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基于激光退火ZnO纳米结构的无线传感器网络用于精准农业的提前监测
植物拥有一种基于化学和电子信号交换的复杂方式来相互交流。事实上,植物能够建立广泛的通信网络,从而互相警告害虫的存在。作为回应,植物会触发对抗虫害的自然策略。植物交换信息的主要工具是空气中特定挥发性有机化合物的排放和检测。为此,监测这些化合物对于在视觉症状出现之前揭示种植的健康状况至关重要。在这项工作中,我们提出了一个无线传感器网络,其中每个节点都基于高灵敏度的氧化锌纳米结构,能够检测和识别几种化学气体,如CO, CO2, NO, NO2, CH4等。每个传感器的响应通过使用准分子激光退火程序来调整,这是一种改变传感材料的电学和形态特性的技术。这种无线传感器网络是一种很有吸引力的解决方案,可以在不使用笨重和昂贵设备的情况下捕获来自植物的信号。
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