@article{43016, author = {{Möhring, Julia and Krumhöfner, Anika and Gräfin von Plettenberg, Elisabeth Gudila Sophia Ida Maria}}, journal = {{-}}, publisher = {{Reinhard Mohn Stiftung, Kreissportbund Gütersloh e.V., Bezirksregierung Detmold}}, title = {{{Bewegungsförderung in Ganztagsschulen}}}, year = {{2021}}, } @techreport{33210, author = {{Leineweber, Jonas}}, title = {{{Veranstaltungsbericht: Immaterielles Kulturerbe in Nordrhein-Westfalen – Steigerlied und Trinkhallenkultur im Ruhrgebiet erhalten Auszeichnung anlässlich der Neuaufnahmen in das nordrhein-westfälische Landesinventar}}}, year = {{2021}}, } @techreport{33209, author = {{Leineweber, Jonas}}, title = {{{Tagungsbericht: Immaterielles Kulturerbe und regionale Identität. Gesellschaftliche Repräsentation und Partizipation im Schützenwesen}}}, year = {{2021}}, } @article{39383, abstract = {{Zinc oxide nanoparticles (ZnO NP) used for the channel region in inverted coplanar setup in Thin Film Transistors (TFT) were the focus of this study. The regions between the source electrode and the ZnO NP and the drain electrode were under investigation as they produce a Schottky barrier in metal-semiconductor interfaces. A more general Thermionic emission theory must be evaluated: one that considers both metal/semiconductor interfaces (MSM structures). Aluminum, gold, and nickel were used as metallization layers for source and drain electrodes. An organic-inorganic nanocomposite was used as a gate dielectric. The TFTs transfer and output characteristics curves were extracted, and a numerical computational program was used for fitting the data; hence information about Schottky Barrier Height (SBH) and ideality factors for each TFT could be estimated. The nickel metallization appears with the lowest SBH among the metals investigated. For this metal and for higher drain-to-source voltages, the SBH tended to converge to some value around 0.3 eV. The developed fitting method showed good fitting accuracy even when the metallization produced different SBH in each metal-semiconductor interface, as was the case for gold metallization. The Schottky effect is also present and was studied when the drain-to-source voltages and/or the gate voltage were increased.}}, author = {{Kaufmann, Ivan Rodrigo and Zerey, Onur and Meyers, Thorsten and Reker, Julia and Vidor, Fábio and Hilleringmann, Ulrich}}, issn = {{2079-4991}}, journal = {{Nanomaterials}}, keywords = {{General Materials Science, General Chemical Engineering}}, number = {{5}}, publisher = {{MDPI AG}}, title = {{{A Study about Schottky Barrier Height and Ideality Factor in Thin Film Transistors with Metal/Zinc Oxide Nanoparticles Structures Aiming Flexible Electronics Application}}}, doi = {{10.3390/nano11051188}}, volume = {{11}}, year = {{2021}}, } @inproceedings{39395, author = {{Reker, Julia and Meyers, Thorsten and Vidor, Fabio F. and Joubert, Trudi-Heleen and Hilleringmann, Ulrich}}, booktitle = {{2021 Smart Systems Integration (SSI)}}, publisher = {{IEEE}}, title = {{{Complementary Inverter Circuits on Flexible Substrates}}}, doi = {{10.1109/ssi52265.2021.9466966}}, year = {{2021}}, } @inproceedings{39381, author = {{Hilleringmann, Ulrich and Petrov, Dmitry and Mwammenywa, Ibrahim and Kagarura, Geoffrey M.}}, booktitle = {{2021 IEEE AFRICON}}, publisher = {{IEEE}}, title = {{{Local Power Control using Wireless Sensor System for Microgrids in Africa}}}, doi = {{10.1109/africon51333.2021.9570970}}, year = {{2021}}, } @inproceedings{39385, author = {{Andrews, George and Hilleringmann, Ulrich and Joubert, Trudi-Heleen}}, booktitle = {{2021 IEEE AFRICON}}, publisher = {{IEEE}}, title = {{{The Viability of a Non-Flow Capacitive Biosensing Microsystem for Whole Cell Counting}}}, doi = {{10.1109/africon51333.2021.9570870}}, year = {{2021}}, } @inproceedings{39386, author = {{Andrews, George and Hilleringmann, Ulrich and Joubert, Trudi-Heleen}}, booktitle = {{2021 IEEE AFRICON}}, publisher = {{IEEE}}, title = {{{The Viability of a Non-Flow Capacitive Biosensing Microsystem for Whole Cell Counting}}}, doi = {{10.1109/africon51333.2021.9570870}}, year = {{2021}}, } @inbook{43143, author = {{Gerhardts, Lara and Dehmel, Lukas and Meister, Dorothee M.}}, booktitle = {{Jahrbuch Medienpädagogik 16. Medienpädagogik in Zeiten einer tiefgreifenden Mediatisierung}}, editor = {{Wolf, Karsten D and Rummler, Klaus and Bettinger, Patrick and Aßmann, Sandra}}, pages = {{129--159}}, title = {{{Die berufliche Tabletaneignung von Lehrkräften als Beispiel der Mediatisierung pädagogischer Handlungskontexte. Theoretische Perspektiven und empirische Befunde}}}, doi = {{https://doi.org/10.21240/mpaed/jb16/2021.01.15.X}}, year = {{2021}}, } @inbook{43142, author = {{Dehmel, Lukas}}, booktitle = {{Erwachsenenpädagogische Digitalisierungsforschung. Impulse - Befunde - Perspektiven. Bielefeld}}, editor = {{ Bernhard-Skala,, Christian and Bolten-Bühler, Ricarda and Koller, Julia and Rohs, Matthias and Wahl, Johannes }}, pages = {{205--219}}, publisher = {{wbv}}, title = {{{Zur Entgrenzung der Arbeit des medienpädagogischen Weiterbildungspersonals im Kontext tiefgreifender Mediatisierung}}}, year = {{2021}}, }