Photocatalyst Group, Research and Development Department, Local Independent Administrative Agency Kanagawa Institute of industrial Science and TEChnology (KISTEC), 407 East Wing, Innovation Center Building, KSP, 3-2-1 Sakado, Takatsu-ku, Kawasaki, Kanagawa 213-0012, Japan.
Materials Analysis Group, Kawasaki Technical Support Department, KISTEC, Ground Floor East Wing, Innovation Center Building, KSP, 3-2-1 Sakado, Takatsu-ku, Kawasaki, Kanagawa 213-0012, Japan.
Sensors (Basel). 2017 Jul 15;17(7):1638. doi: 10.3390/s17071638.
Detecting the bio-potential changes of plants would be useful for monitoring their growth and health in the field. A sensitive plant monitoring system with flexible boron-doped diamond (BDD) electrodes prepared from BDD powder and resin (Nafion or Vylon-KE1830) was investigated. The properties of the electrodes were compared with those of small BDD plate-type electrodes by monitoring the bioelectric potentials of potted and hybrid species in the genus . While flexible BDD electrodes have wide potential windows, their cyclic voltammograms are different from those of the BDD plate. Further, the potential gap between a pair of electrodes attached to the plants changes as the plants are stimulated artificially with a finger touch, suggesting that the bioelectric potentials in the plant also changed, manifesting as changes in the potential gap between the electrodes. The BDD electrodes were assessed for their response reproducibility to a finger stimulus for 30 days. It was concluded that the plant monitoring system worked well with flexible BDD electrodes. Further, the electrodes were stable, and as reliable as the BDD plate electrodes in this study. Thus, a flexible and inexpensive BDD electrode system was successfully fabricated for monitoring the bioelectric potential changes in plants.
检测植物的生物电位变化对于监测其在田间的生长和健康状况将非常有用。本研究制备了一种由 BDD 粉末和树脂(Nafion 或 Vylon-KE1830)组成的柔性掺硼金刚石(BDD)电极,对其进行了研究,考察了一种敏感的植物监测系统。通过监测属内盆栽和杂交种的生物电势,比较了电极的性能与小型 BDD 板型电极的性能。虽然柔性 BDD 电极具有较宽的电位窗口,但它们的循环伏安图与 BDD 板的不同。此外,当用手指触摸人工刺激植物时,一对附着在植物上的电极之间的电位差发生变化,这表明植物的生物电位也发生了变化,表现为电极之间的电位差发生了变化。评估了 BDD 电极对 30 天内手指刺激的响应重现性。研究结果表明,该植物监测系统采用柔性 BDD 电极工作良好。此外,在本研究中,这些电极与 BDD 板电极一样稳定可靠。因此,成功地制备了一种用于监测植物生物电位变化的柔性且廉价的 BDD 电极系统。