Light-Addressing and Chemical Imaging Technologies for Electrochemical Sensing by Tatsuo Yoshinobu

Light-Addressing and Chemical Imaging Technologies for Electrochemical Sensing by Tatsuo Yoshinobu

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Light-Addressing and Chemical Imaging Technologies for Electrochemical Sensing by Tatsuo Yoshinobu

Visualizing chemical components in a specimen is an essential technology in many branches of science and practical applications. This book deals with electrochemical imaging techniques based on semiconductor devices with capability of spatially resolved sensing. Two types of such sensing devices have been extensively studied and applied in various fields, i.e., arrayed sensors and light-addressed sensors. An ion-sensitive field-effect transistor (ISFET) array and a charge-coupled device (CD) ion image sensor are examples of arrayed sensors. They take advantage of semiconductor microfabrication technology to integrate a large number of sensing elements on a single chip, each representing a pixel to form a chemical image. A light-addressable potentiometric sensor (LAPS), on the other hand, has no pixel structure. A chemical image is obtained by raster-scanning the sensor plate with a light beam, which can flexibly define the position and size of a pixel. This light-addressing approach is further applied in other LAPS-inspired methods. Scanning photo-induced impedance microscopy (SPIM) realized impedance mapping and light-addressable electrodes/light-activated electrochemistry (LAE) realized local activation of Faradaic processes. This book includes eight articles on state-of-the-art technologies of light-addressing/chemical imaging devices and their application to biology and materials science.

SKU Nicht verfügbar
ISBN 13 9783039430284
ISBN 10 3039430289
Titel Light-Addressing and Chemical Imaging Technologies for Electrochemical Sensing
Autor Tatsuo Yoshinobu
Buchzustand Nicht verfügbar
Bindungsart Hardback
Verlag Mdpi AG
Erscheinungsjahr 2020-10-01
Seitenanzahl 122
Hinweis auf dem Einband Die Abbildung des Buches dient nur Illustrationszwecken, die tatsächliche Bindung, das Cover und die Auflage können sich davon unterscheiden.
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