Park Sungjun, Fukuda Kenjiro, Wang Ming, Lee Chulhyo, Yokota Tomoyuki, Jin Hanbit, Jinno Hiroaki, Kimura Hiroki, Zalar Peter, Matsuhisa Naoji, Umezu Shinjiro, Bazan Guillermo C, Someya Takao
Center for Emergent Matter Science, RIKEN, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.
Thin-Film Device Laboratory, RIKEN, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.
Adv Mater. 2018 Jul 8:e1802359. doi: 10.1002/adma.201802359.
Flexible organic optoelectronic devices simultaneously targeting mechanical conformability and fast responsivity in the near-infrared (IR) region are a prerequisite to expand the capabilities of practical optical science and engineering for on-skin optoelectronic applications. Here, an ultraflexible near-IR responsive skin-conformal photoplethysmogram sensor based on a bulk heterojunction photovoltaic active layer containing regioregular polyindacenodithiophene-pyridyl[2,1,3]thiadiazole-cyclopentadithiophene (PIPCP) is reported. The ultrathin (3 µm thick) photodetector exhibits unprecedented operational stability under severe mechanical deformation at a bending radius of less than 3 µm, even after more than 10 bending cycles. Deliberate optimization of the physical dimensions of the active layer used in the device enables precise on/off switching and high device yield simultaneously. The response frequency over 1 kHz under mechanically deformed conditions facilitates conformal electronic sensors at the machine/human interface. Finally, a mechanically stretchable, flexible, and skin-conformal photoplethysmogram (PPG) device with higher sensitivity than those of rigid devices is demonstrated, through conformal adherence to the flexuous surface of a fingerprint.
同时实现机械顺应性和近红外(IR)区域快速响应的柔性有机光电器件是拓展实用光学科学与工程在皮肤光电器件应用能力的前提条件。在此,报道了一种基于包含区域规整聚茚并二噻吩 - 吡啶[2,1,3]噻二唑 - 环戊二噻吩(PIPCP)的体异质结光伏活性层的超柔性近红外响应皮肤贴合式光电容积脉搏波传感器。这种超薄(3微米厚)的光电探测器在弯曲半径小于3微米的严重机械变形下表现出前所未有的操作稳定性,即使经过超过10次弯曲循环后依然如此。对器件中使用的活性层物理尺寸进行精心优化,能够同时实现精确的开/关切换和高器件成品率。在机械变形条件下超过1千赫兹的响应频率有利于在机器/人类界面处实现贴合式电子传感器。最后,通过贴合指纹的弯曲表面,展示了一种机械可拉伸、柔性且皮肤贴合式的光电容积脉搏波(PPG)器件,其灵敏度高于刚性器件。