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Light-Addressable Potentiometric Sensors for Quantitative Spatial Imaging of Chemical Species

机译:可轻可寻址电位传感器,用于化学物质的定量空间成像

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摘要

A light-addressable potentiometric sensor (LAPS) is a semiconductor-based chemical sensor, in which a measurement site on the sensing surface is defined by illumination. This light addressability can be applied to visualize the spatial distribution of pH or the concentration of a specific chemical species, with potential applications in the fields of chemistry, materials science, biology, and medicine. In this review, the features of this chemical imaging sensor technology are compared with those of other technologies. Instrumentation, principles of operation, and various measurement modes of chemical imaging sensor systems are described. The review discusses and summarizes state-of-the-art technologies, especially with regard to the spatial resolution and measurement speed; for example, a high spatial resolution in a submicron range and a readout speed in the range of several tens of thousands of pixels per second have been achieved with the LAPS. The possibility of combining this technology with microfluidic devices and other potential future developments are discussed.
机译:光可寻址电位传感器(圈)是基于半导体的化学传感器,其中感测表面上的测量部位由照明限定。这种光可寻度可以应用于可视化pH的空间分布或特定化学物质的浓度,具有化学,材料科学,生物学和医学领域的潜在应用。在本文中,将该化学成像传感器技术的特征与其他技术的特征进行了比较。描述了仪表,操作原理和化学成像传感器系统的各种测量模式。审查讨论和总结了最先进的技术,特别是在空间分辨率和测量速度方面;例如,通过圈圈已经实现了亚微米范围中的高空间分辨率和读出速度在每秒数千个像素的范围内。讨论了将这种技术与微流体装置和其他潜在的未来发展相结合的可能性。

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