Innovative Center for Flexible Devices (iFLEX), School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Republic of Singapore.
Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore, 138634, Republic of Singapore.
Adv Sci (Weinh). 2023 Dec;10(35):e2305552. doi: 10.1002/advs.202305552. Epub 2023 Oct 5.
Plant wearable sensors facilitate the real-time monitoring of plant physiological status. In situ monitoring of the plant chlorophyll content over days can provide valuable information on the photosynthetic capacity, nitrogen content, and general plant health. However, it cannot be achieved by current chlorophyll measuring methods. Here, a miniaturized and plant-wearable chlorophyll meter for rapid, non-destructive, in situ, and long-term chlorophyll monitoring is developed. The reflectance-based chlorophyll sensor with 1.5 mm thickness and 0.2 g weight (1000 times lighter than the commercial chlorophyll meter), includes a light emitting diode (LED) and two symmetric photodetectors (PDs) on a flexible substrate, and is patched onto the leaf upper epidermis with a conformal light guiding layer. A chlorophyll content index (CCI) calculated based on the sensor shows a better linear relationship with the leaf chlorophyll content (r > 0.9) than the traditional chlorophyll meter. This meter can wirelessly communicate with a smartphone to monitor the leaf chlorophyll change under various stresses and indicate the unhealthy status of plants for long-term application of plants under various stresses earlier than chlorophyll meter and naked-eye observation. This wearable chlorophyll sensing patch is promising in smart and precision agriculture.
植物可穿戴传感器可实现植物生理状态的实时监测。数天内对植物叶绿素含量的原位监测可提供有关光合作用能力、氮含量和植物整体健康状况的有价值信息。然而,这是目前的叶绿素测量方法无法实现的。在这里,开发了一种用于快速、非破坏性、原位和长期叶绿素监测的小型植物可穿戴叶绿素计。基于反射率的叶绿素传感器厚度为 1.5 毫米,重量为 0.2 克(比商业叶绿素计轻 1000 倍),包括柔性基板上的一个发光二极管 (LED) 和两个对称的光电探测器 (PD),并用一个共形导光层贴附在叶片上表皮。基于传感器计算的叶绿素含量指数 (CCI) 与叶片叶绿素含量呈更好的线性关系 (r > 0.9),优于传统的叶绿素计。该仪表可以与智能手机进行无线通信,以监测各种胁迫下叶片叶绿素的变化,并指示植物的不健康状态,从而比叶绿素计和肉眼观察更早地指示植物在各种胁迫下的长期应用。这种可穿戴叶绿素感应贴片有望在智能和精准农业中得到应用。