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首页> 外文期刊>Advanced Functional Materials >Understanding Photocapacitive and Photofaradaic Processes in Organic Semiconductor Photoelectrodes for Optobioelectronics
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Understanding Photocapacitive and Photofaradaic Processes in Organic Semiconductor Photoelectrodes for Optobioelectronics

机译:了解有机半导体光电子中的光电容和光照相工艺,用于光学电池

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Photoactive organic semiconductor substrates are envisioned as a novel class of bioelectronic devices that transduce light into stimulating biological signals with relevance for retinal implants or guided cellular differentiation. The direct interface between the semiconductor and the electrolyte gives rise to different competing optoelectronic transduction mechanisms. A detailed understanding of such faradaic or capacitive processes and the underlying material science is necessary to develop and optimize future devices. Here, the problem in organic photoelectrodes is addressed based on a planar p-n junction containing phthalocyanine (H2Pc) and N,N '-dimethyl perylenetetracarboxylic diimide (PTCDI). The detailed characterization of photoelectrochemical current transients is combined with spectroscopic measurements, impedance spectroscopy, and local photovoltage measurements to establish a model that predicts quantitatively faradaic or capacitive current transients. The decisive elements of the model are the energy levels present at the interface and the voltage building up in the photoelectrode. The result of the efforts is a comprehensive model of photocapacitive and photofaradaic effects that can be applied to developing wireless bioelectronic photostimulation devices.
机译:光活性有机半导体基板被设想为新型的生物电子器件,该类生物电子器件将光线转换成刺激的生物信号,其具有视网膜植入物或引导蜂窝分化的相关性。半导体和电解质之间的直接接口产生不同的竞争光电转导机构。详细了解留言或电容过程以及潜在的材料科学是开发和优化未来设备所必需的。这里,基于含有酞菁(H2PC)和N,N'-二甲基丙齐羧酸二酰亚胺(PTCDI)的平面P-N结来寻址有机光电仪中的问题。光电化学电流瞬变的详细表征与光谱测量,阻抗光谱学和局部光电测量相结合,以建立预测定量游览或电容电流瞬变的模型。该模型的决定性元素是界面处存在的能级和在光电极中构建的电压。努力的结果是可以应用于开发无线生物电解刺激装置的光电容和光途径效果的综合模型。

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