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Titlebook: Organic Semiconductors in Sensor Applications; Daniel A. Bernards,George G. Malliaras,Róisín M. O Book 2008 Springer-Verlag Berlin Heidelb

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Organic Semiconductors in Sensor Applications978-3-540-76314-7Series ISSN 0933-033X Series E-ISSN 2196-2812
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https://doi.org/10.1007/978-3-540-76314-7Copolymer; Homopolymer; Organic devices; Organic semiconductors; Sensor; electronic properties; polymer; se
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Daniel A. Bernards,George G. Malliaras,Róisín M. OCovers the major developments and applications of organic material electronic photoactive and chemosenstive devices.Explains processing of organic electrical photo- and chemosenstive devices.Both a re
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Lab-on-a-Chip Devices with Organic Semiconductor-Based Optical Detection,In this chapter we describe the use of organic semiconductor-based light sources and photodiodes for integrated optical detection in lab-on-a-chip devices. The application of this low-cost detection technology to portable diagnostic devices for the point-of-care is also outlined.
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Water Soluble Poly(fluorene) Homopolymers and Copolymers for Chemical and Biological Sensors,fluorescent assays. The molecular structure of the backbone is important to minimize losses due to photoinduced charge transfer. Signal generation involves coordination of electrostatic forces with efficient FRET. Targets that can be detected using these approaches include DNA, RNA, peptides, protei
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Polyelectrolyte-Based Fluorescent Sensors,d quenchers can be used in bioassays to monitor activities of protease, phospholipase A2, and phospholipase C by varying substrates. Enhanced fluorescence yields from cyanine dye J aggregates formed by supramolecular self-assembly between the dyes and polysaccharides can be utilized in assays to mon
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Structurally Integrated Photoluminescent Chemical and Biological Sensors: An Organic Light-Emittingical and biological analytes, including multiple analytes. In this platform, the excitation source is an array of organic light-emitting device (OLED) pixels that is structurally integrated with the sensing component. Steps towards advanced integration with additionally a thin-film-based photodetect
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Solid-State Chemosensitive Organic Devices for Vapor-Phase Detection,solid-state sensors. In addition, recent advances in lasing to enhance the sensitivity of fluorescent conjugated polymer sensors are treated in detail. A brief discussion of chemosensing heterojunction photoconductors and the benefits of this novel sensor platform conclude the chapter.
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