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Titlebook: Organic Semiconductor Devices for Light Detection; Jonas Kublitski Book 2022 The Editor(s) (if applicable) and The Author(s), under exclus

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楼主: BREED
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2190-5053 revious chapters, is demonstrated. Finally, an overview of the field is given with a selection of open points for future investigation.978-3-030-94466-7978-3-030-94464-3Series ISSN 2190-5053 Series E-ISSN 2190-5061
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Enhancing Sub-Bandgap External Quantum Efficiency by Photomultiplication in Narrowband Organic Nearimited by the low EQE provided by these devices. This chapter is adapted from work published in J. Kublitski, A. Fischer, S. Xing, L. Baisinger, E. Bittrich, J. Benduhn, D. Spoltore, K. Vandewal, K. Leo, “Enhancing Sub-Bandgap External Quantum Efficiency by Photomultiplication for Narrowband Organic
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Fundamentals of Light Detection, electromagnetic radiation, is given in Sect. ., in addition to important quantities used to characterize light sources and detectors. Classic detecting devices based on traditional semiconductors technologies are considered in Sect. ., where basic concepts of semiconductors physics are introduced.
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Jonas KublitskiNominated as an outstanding PhD thesis by TU Dresden.Summarizes important aspects of light detection.Explains the sources of dark and noise current in organic photodetectors
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https://doi.org/10.1007/978-3-030-94464-3Organic Semiconductors; Organic Photodetectors; Dark Current; Noise Current; Trap States; Photomultiplica
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Materials and Experimental Methods,In this chapter, the materials and experimental methods are introduced. Firstly, the sample preparation is explained (Sect. 4.1), followed by the materials used in this thesis Sect. 4.2. The materials are grouped according to their function in the device operation.
发表于 2025-3-25 02:43:38 | 显示全部楼层
Reverse Dark Current in Organic Photodetectors: Generation Paths in Fullerene Based Devices, . . . ., . ., . .. ., . . . . . [.].
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