Innovative Center for Flexible Devices (iFLEX), Max Planck - NTU Joint Lab for Artificial Senses School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Institute of Materials Research and Engineering, Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis, #08-03, Singapore, 138634, Singapore.
Adv Mater. 2021 Apr;33(14):e2007848. doi: 10.1002/adma.202007848. Epub 2021 Mar 4.
Plant electrophysiology lays the foundation for smart plant interrogation and intervention. However, plant trichomes with hair-like morphologies present topographical features that challenge stable and high-fidelity non-invasive electrophysiology, due to the inadequate dynamic shape adaptability of conventional electrodes. Here, this issue is overcome using a morphable ionic electrode based on a thermogel, which gradually transforms from a viscous liquid to a viscoelastic gel. This transformation enables the morphable electrode to lock into the abrupt hairy surface irregularities and establish a conformal and adhesive interface. It achieves down to one tenth of the impedance and 4-5 times the adhesive strengths of conventional hydrogel electrodes on hairy leaves. As a result of the improved electrical and mechanical robustness, the morphable electrode can record more than one order of magnitude higher signal-to-noise ratio on hairy plants and maintains high-fidelity recording despite plant movements, achieving superior performance to conventional hydrogel electrodes. The reported morphable electrode is a promising tool for hairy plant electrophysiology and may be applied to diversely textured plants for advanced sensing and modulation.
植物电生理学为智能植物检测和干预奠定了基础。然而,具有毛发状形态的植物表皮毛存在拓扑特征,由于传统电极的动态形状适应性不足,给稳定和高保真的非侵入式电生理学带来了挑战。在这里,使用基于热凝胶的可变形离子电极克服了这个问题,该电极逐渐从粘性液体转变为粘弹性凝胶。这种转变使可变形电极能够锁定在突然的毛发状表面不规则处,并建立一个贴合的界面。它将毛发状叶片上的阻抗降低到传统水凝胶电极的十分之一,黏附强度提高 4-5 倍。由于电和机械稳健性的提高,可变形电极可以在有毛植物上记录高出一个数量级的信噪比,并且即使在植物运动时也能保持高保真记录,性能优于传统水凝胶电极。所报道的可变形电极是一种有前途的毛状植物电生理学工具,它可以应用于各种质地的植物,用于高级传感和调制。