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基于视锥细胞和离子通道的无外部电源光谱传感器。

Spectral Sensor Inspired by Cone Photoreceptors and Ion Channels without External Power.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 10;10(40):34385-34391. doi: 10.1021/acsami.8b11887. Epub 2018 Sep 25.

Abstract

In this study, we focused the mimicking of the cone photoreceptor along with ion channel system, which is similar to real optical system. By realizing the ion channel and photoreceptor based on photoresponsive material and photoelectric film, we achieved the wavelength-selective sensor with self-power ability. For the first time, we combined the photoreceptor and ion channel system without external power. For this, we used the channel membrane with pores coated with light-responsive material. We measured the sensing signals without any external power, because photoelectric film assists the sensitive operation of the ion channel system. As a result, we demonstrated a spectral ion channel sensor triggered by the photoelectric effect. Mimicking the slow and fast responses typically found in cone photoreceptor, when induced light causes photovoltaic effect from the pyrrole-coated polyvinylidene fluoride film, this helps to normally operate the ion channel system with slow and fast responses to the light wavelengths. Consequently, this research opens the new scientific fields to realize the photosensor very similar to the real vision sensory organ.

摘要

在这项研究中,我们专注于模拟与真实光系统相似的视锥光感受器及其离子通道系统。通过基于光响应材料和光电薄膜实现离子通道和光感受器,我们实现了具有自供电能力的波长选择传感器。我们首次在没有外部电源的情况下结合了光感受器和离子通道系统。为此,我们使用带有涂覆有光响应材料的孔的通道膜。由于光电薄膜有助于离子通道系统的敏感操作,因此我们无需任何外部电源即可测量传感信号。结果,我们展示了一种由光电效应触发的光谱离子通道传感器。模拟视锥光感受器中通常发现的慢响应和快响应,当诱导光从涂有吡咯的聚偏二氟乙烯膜产生光伏效应时,这有助于离子通道系统以慢响应和快响应正常运行对光波长。因此,这项研究开辟了新的科学领域,实现了非常类似于真实视觉感觉器官的光敏传感器。

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