1 to 10 of 9,453 Results
Apr 16, 2024 - SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien - B: Theory & Structure
Dreuw, Andreas; Tegeder, Petra, 2024, "Influence of N-introduction on the electronic structure and properties of polyacenes: experiment and quantum chemistry in concert [research data]", https://doi.org/10.11588/data/FEQZX9, heiDATA, V1
N-Heteropolycycles (NHPCs) represent a promising substance class for applications in functional organic materials, since their electronic structure and the resulting individual molecular properties are efficiently tuneable by number and position of nitrogen atoms in the aromatic... |
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MD5: 91f42f652d171d62c97d6b9418cb2ae1
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MD5: 9a01897fa23ad1a0d53668c8b31085d3
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Apr 16, 2024 - SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien - B: Theory & Structure
Stein, Arnulf; Rolf, Daniela; Lotze, Christian; Feldmann, Sascha; Gerbert, David; Günther, Benjamin; Jeindl, Andreas; Cartus, Johannes J.; Hofmann, Oliver T.; Gade, Lutz H.; Franke, Katharina J.; Tegeder, Petra, 2024, "Electronic Properties of Tetraazaperopyrene Derivatives on Au(111): Energy-Level Alignment and Interfacial Band Formation [research data]", https://doi.org/10.11588/data/0EK2MB, heiDATA, V1
N-heteropolycyclic aromatic compounds are promising organic electron-transporting semiconductors for applications in field-effect transistors. Here, we investigated the electronic properties of 1,3,8,10-tetraazaperopyrene derivatives adsorbed on Au(111) using a complementary expe... |
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MD5: 55ad8980f6799c9ef18a82562ab032ce
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Apr 16, 2024 - SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien - B: Theory & Structure
Sivanesan, Vipilan; Broch, Katharina; Tegeder, Petra, 2024, "Excited States Dynamics at Pentacene/Perfluoropentacene Interfaces: A Femtosecond Time-Resolved Second Harmonic Generation Study [research data]", https://doi.org/10.11588/data/PYEHCQ, heiDATA, V1
Understanding the dynamics of excited states after optical excitation at donor-acceptor (D/A) interfaces is of paramount importance for improving the efficiency and performance of optoelectronic devices. Here, we studied the ultrafast excited state dynamics after optical excitati... |
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MD5: 9173e7a7356bf0fbed66df5a30392f6f
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MD5: 9c18613973769f8ddfb60dd499a02400
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Mar 28, 2024 - Astronomische Grundlagen für den Kalender
Schmidt, Robert W., 2024, "Astronomische Grundlagen für den Kalender 2026 [Datensatz]", https://doi.org/10.11588/data/7NB1L5, heiDATA, V1
Die Astronomischen Grundlagen für den Kalender werden vom Astronomischen Rechen-Institut in Heidelberg berechnet und herausgegeben. Sie haben den Zweck, den Kalenderverlagen das Material für die Herstellung ihrer Kalender bereitzu- stellen. Eine gesetzliche Gewähr kann nicht Über... |