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Elastic FRET sensors for contactless pressure measurement

机译:弹性FRET传感器用于非接触式压力测量

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Contactless pressure monitoring based on F?rster resonance energy transfer between donor/acceptor pairs immobilized within elastomers is demonstrated. The donor/acceptor energy transfer is employed by dispersing terbium(III) tris[(2-hydroxybenzoyl)-2-aminoethyl] amine complex (LLC, donor) and CdSe/ZnS quantum dots (QD655, acceptor) in styrene-ethylene/buthylene-styrene (SEBS) and poly(dimethylsiloxane) (PDMS). The continuous monitoring of QD luminescence showed a reversible intensity change as the pressure signal is alternated between two stable states indicating a pressure sensitivity of 6350 cps kPa?1. Time-resolved measurements show the pressure impact on the FRET signal due to an increase of decay time (270 μs up to 420 μs) for the donor signal and parallel drop of decay time (170 μs to 155 μs) for the acceptor signal as the net pressure applied. The LLC/QD655 sensors enable a contactless readout as well as space resolved monitoring to enable miniaturization towards smaller integrated stretchable opto-electronics. Elastic FRET sensors can potentially lead to developing profitable analysis systems capable to outdo conventional wired electronic systems (inductive, capacitive, ultrasonic and photoelectric sensors) especially for point-of-care diagnostics, biological monitoring required for wearable electronics.
机译:展示了基于固定在弹性体中的供体/受体对之间的共振共振能量转移进行的非接触压力监测。通过分散ter( III )三[(2-羟基苯甲酰基)-2-氨基乙基]胺络合物(LLC,施主)和CdSe / ZnS量子点(QD655,受主)来进行供体/受体能量转移)在苯乙烯-乙烯/丁苯-苯乙烯(SEBS)和聚二甲基硅氧烷(PDMS)中。随着压力信号在两个稳定状态之间交替变化,对QD发光的连续监测显示出可逆的强度变化,表明压力敏感性为6350 cps kPa ?1 。时间分辨的测量结果显示,由于供体信号的衰减时间增加(270μs至420μs),而受主信号的衰减时间平行下降(170μs至155μs),因此对FRET信号的压力影响很大。施加净压力。 LLC / QD655传感器可实现非接触式读数以及空间分辨率监控,从而可实现朝着较小的集成可伸缩光电器件的微型化。弹性FRET传感器可能潜在地导致开发出有利可图的分析系统,该系统能够超越传统的有线电子系统(电感,电容,超声和光电传感器),尤其是在现场诊断,可穿戴电子设备所需的生物监控方面。

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