埋葬 发表于 2025-3-25 05:33:24
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PEDOT:PSS-Based Electrochemical Transistors for Ion-to-Electron Transduction and Sensor Signal Ampl and can serve as very sensitive transducers in amperometric sensor applications. To further improve their sensitivity, we outline various amplification circuits all realized in organic electrochemical transistors.一瞥 发表于 2025-3-25 19:37:45
0933-033X rganic electrical photo- and chemosenstive devices.Both a re.Organic semiconductors offer unique characteristics such as tunability of electronic properties via chemical synthesis, compatibility with mechanically flexible substrates, low-cost manufacturing, and facile integration with chemical and bHarridan 发表于 2025-3-25 23:16:11
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Polyelectrolyte-Based Fluorescent Sensors,itor glycosidase activity. In addition solution based polyelectrolyte sensors, amplified quenching properties of surface grafted conjugated polyelectrolytes by energy transfer and electron transfer type quenchers are compared.Ebct207 发表于 2025-3-26 06:34:25
Performance Requirements and Mechanistic Analysis of Organic Transistor-Based Phosphonate Gas Senso of interest for national security purposes. The response is consistent with models of organic transistor action. Integration of organic transistors into complete sensor systems and performance requirements of these systems are discussed.ureter 发表于 2025-3-26 09:51:56
Book 2008ield by discussing both optical and electrical sensor concepts. Novel transducers based on organic light-emitting diodes and organic thin-film transistors, as well as systems-on-a-chip architectures are presented. Functionalization techniques to enhance specificity are outlined, and models for the sensor response are described..残忍 发表于 2025-3-26 16:37:59
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Felix Behlingr algebraic approaches (for example, Vaughan Pratt has suggested an approach which generalises the Kahn networks in a different manner). What we hope to have shown is that four kinds of operator — namely atomic action (α.), summation (+), product (&. or |) and encapsulation (/β or β) — together give