复制(统计)
精准农业
介电谱
材料科学
计算机科学
纳米技术
环境科学
工艺工程
生物系统
农业
化学
数学
工程类
生物
生态学
统计
电极
物理化学
电化学
作者
Abdullah Bukhamsin,Khalil Moussi,Ran Tao,Gilles Lubineau,Ikram Blilou,K. Saláma,Jürgen Kosel
标识
DOI:10.1002/advs.202101261
摘要
Precision farming has the potential to increase global food production capacity whilst minimizing traditional inputs. However, the adoption and impact of precision farming are contingent on the availability of sensors that can discern the state of crops, while not interfering with their growth. Electrical impedance spectroscopy offers an avenue for nondestructive monitoring of crops. To that end, it is reported on the deployment of impedimetric sensors utilizing microneedles (MNs) that can be used to pierce the waxy exterior of plants to obtain sensitive impedance spectra in open-air settings with an average relative noise value of 3.83%. The sensors are fabricated using a novel micromolding and release method that is compatible with UV photocurable and thermosetting polymers. Assessments of the quality of the MNs under scanning electron microscopy show that the replication process is high in fidelity to the original design of the master mold and that it can be used for upward of 20 replication cycles. The sensor's performance is validated against conventional planar sensors for obtaining the impedance values of Arabidopsis thaliana. As a change is detected in impedance due to lighting and hydration, this raises the possibility for their widespread use in precision farming.
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