@inproceedings{37833,
  author       = {{Margraf, Linda and Krause, Daniel and Weigelt, Matthias}},
  editor       = {{Stetter, B. and Herzog, M. and Spancken, S. and Stein, T.}},
  location     = {{Karlsruhe}},
  title        = {{{ Surprising effects of frontal neural correlates of augmented feedback-processing in extensive motor learning}}},
  year         = {{2022}},
}

@phdthesis{46799,
  abstract     = {{Forschungsarbeiten zum Professionswissen von Sportlehrer*innen beschränkt sich weitgehend auf den Sportunterricht. Dem außerunterrichtlichen Schulsport wurde bisher wenig Aufmerksamkeit geschenkt. Hier setzt die vorliegende Arbeit an, die sich auf das Professionswissen von Sportlehrer*innen zur Gestaltung eines bewegungsorientierten Schulalltags konzentriert. Als theoretische Rahmung liegen den Überlegungen das Kompetenzmodell von Baumert und Kunter (2011) und das Zahnradmodell der "Bewegten Schule" von Städler (2016) zugrunde. 
Die empirische Untersuchung basiert auf einem dreistufigen Vorgehen. Zuerst wurde im Rahmen von fünf Fokusgruppeninterviews mit Expert*innen die aus Praxissicht relevanten Wissensfacetten des Professionswissens zur Gestaltung eines bewegungsorientierten Schulalltags erhoben. Die Auswertung erfolgte auf Basis der qualitativen Inhaltsanalyse nach Mayring (2015). Darauf aufbauend wurden die Facetten in einer Fragebogenerhebung von Expert*innen hinsichtlich ihrer jeweiligen Relevanz bewertet, anschließend wurden die Ergebnisse bilanzierend zusammengeführt.
Es konnten 46 Wissensfacetten des Professionswissens identifiziert werden, die in 11 übergreifenden Kategorien geclustert wurden. Die Bereiche des Professionswissens nach Baumert und Kunter (2011) werden vollständig abgebildet und eine Zuordnung dem Zahnradmodell von Städler (2016) fand statt.
Ein Professionswissen im Bereich Organisation und Beratung scheint relevant zur Gestaltung eines bewegungsorientierten Schulalltags zu sein. Die Erkenntnisse können als Ansatzpunkt für Forschungsarbeiten sowie für die universitäre Ausbildung dienen. 
}},
  author       = {{Satzinger, Nicole}},
  keywords     = {{Professionswissen, Sportlehrerausbildung}},
  title        = {{{Professionswissen von angehenden Sportlehrkräften zur Gestaltung ei-nes bewegungsorientierten Schulalltags. Eine empirische Untersuchung im Bereich des Professionswissens von Lehrpersonen.}}},
  year         = {{2022}},
}

@article{42714,
  abstract     = {{Physical self-concept (PSC) and motor competencies are important factors in view of the development of a physically active lifestyle. There are research gaps regarding longitudinal studies of these relationships. This article presents findings of a longitudinal study (n = 200; 58% girls, M = 8.84 ± 0.63 years) at three primary schools. The aim of this study was to analyze the relationship between actual motor competencies (AMC) and perceived motor competencies (PMC) and PSC. Therefore, manifest path models in cross-lagged design were performed. Results show that correlations between PMC and AMC increased over time and were stronger in object control than in locomotor. Effects of AMC on PSC were more strongly mediated by PMC in object control than in locomotor. To promote physical activity, developing strategies should be aimed at the acquisition of AMC, particularly in object control, and PMC, especially in locomotor, during childhood.}},
  author       = {{Strotmeyer, Anne and Herrmann, Christian and Kehne, Miriam}},
  issn         = {{1469-0292}},
  journal      = {{Psychology of Sport and Exercise}},
  keywords     = {{Applied Psychology}},
  publisher    = {{Elsevier BV}},
  title        = {{{A longitudinal analysis of reciprocal relationships between actual and perceived motor competencies and physical self-concept in primary-school age children}}},
  doi          = {{10.1016/j.psychsport.2022.102269}},
  volume       = {{63}},
  year         = {{2022}},
}

@phdthesis{44642,
  author       = {{Waltert, Carolin}},
  title        = {{{Gesundheit und Stress im Studium - Bedeutung gesundheitsrelevanter Lebensstile}}},
  year         = {{2022}},
}

@article{47044,
  author       = {{Bauer, A. and Buhmann, H. W. and Güldenpenning, Iris}},
  journal      = {{Kanusport}},
  pages        = {{40--43}},
  title        = {{{Die ausgekugelte Schulter im Kanusport. Behandlung und Vorbeugen}}},
  volume       = {{10}},
  year         = {{2022}},
}

@inbook{47060,
  author       = {{Weigelt, Matthias and Güldenpenning, Iris}},
  booktitle    = {{Kognition und Motorik: Sportpsychologische Grundlagen und Anwendungen im Sport}},
  editor       = {{Klatt, S. and Strauß, B.}},
  pages        = {{118--133}},
  publisher    = {{Hogrefe Verlag GmbH & Company KG}},
  title        = {{{Kognitive Grundlagen von Täuschungshandlungen im Sport}}},
  year         = {{2022}},
}

@book{56470,
  author       = {{Teubert, Hilke and Zobe, Christina}},
  publisher    = {{Zugriff am DATUM unter https://wimasu.de/kleine-spiele-im-sportunterricht-planen-spielen-auswerten/}},
  title        = {{{Kleine Spiele planen, spielen und auswerten. Beitrag zur Spielesammlung für den Sportunterricht by Teubert & Friends}}},
  year         = {{2022}},
}

@book{56446,
  author       = {{Teubert, Hilke}},
  publisher    = {{Zugriff unter https://wimasu.de/8-schoene-kennenlern-und-kooperationsspiele-fuer-den-sportunterricht/}},
  title        = {{{8 schöne Kennenlern- und Kooperationsspiele für den Sportunterricht}}},
  year         = {{2022}},
}

@inbook{56447,
  author       = {{Teubert, Hilke}},
  booktitle    = {{Kompetenzorientierung und Bewegungsexpertise im Turnen. 11. Jahrestagung der dvs-Kommission Gerätturnen vom 01.-03.09.2020}},
  editor       = {{Menze-Sonneck, Andrea and Vinken, Pia Maria}},
  pages        = {{111--119}},
  publisher    = {{Feldhaus Verlag}},
  title        = {{{Einblicke in die Online-Lehre der Fachausbildung Bewegen an Geräten im „Corona-Sommersemester 2020“ an der Universität Paderborn}}},
  year         = {{2022}},
}

@book{56469,
  author       = {{Teubert, Hilke}},
  publisher    = {{Eingeschränkter Zugriff am DATUM unter https://wimasu.de/shop/kleine-spiele-kennenlernen-kooperieren/}},
  title        = {{{Kennenlernen und Kooperieren. Die Große Spielesammlung für den Sportunterricht.}}},
  year         = {{2022}},
}

@article{59617,
  abstract     = {{<jats:p>There is an increasing interest in sensing applications for a variety of analytes in aqueous environments, as conventional methods do not work reliably under humid conditions or they require complex equipment with experienced operators. Hydrogel sensors are easy to fabricate, are incredibly sensitive, and have broad dynamic ranges. Experiments on their robustness, reliability, and reusability have indicated the possible long-term applications of these systems in a variety of fields, including disease diagnosis, detection of pharmaceuticals, and in environmental testing. It is possible to produce hydrogels, which, upon sensing a specific analyte, can adsorb it onto their 3D-structure and can therefore be used to remove them from a given environment. High specificity can be obtained by using molecularly imprinted polymers. Typical detection principles involve optical methods including fluorescence and chemiluminescence, and volume changes in colloidal photonic crystals, as well as electrochemical methods. Here, we explore the current research utilizing hydrogel-based sensors in three main areas: (1) biomedical applications, (2) for detecting and quantifying pharmaceuticals of interest, and (3) detecting and quantifying environmental contaminants in aqueous environments.</jats:p>}},
  author       = {{Völlmecke, Katharina and Afroz, Rowshon and Bierbach, Sascha and Brenker, Lee Josephine and Frücht, Sebastian and Glass, Alexandra and Giebelhaus, Ryland and Hoppe, Axel and Kanemaru, Karen and Lazarek, Michal and Rabbe, Lukas and Song, Longfei and Velasco Suarez, Andrea and Wu, Shuang and Serpe, Michael and Kuckling, Dirk}},
  issn         = {{2310-2861}},
  journal      = {{Gels}},
  number       = {{12}},
  publisher    = {{MDPI AG}},
  title        = {{{Hydrogel-Based Biosensors}}},
  doi          = {{10.3390/gels8120768}},
  volume       = {{8}},
  year         = {{2022}},
}

@article{59619,
  abstract     = {{<jats:title>Abstract</jats:title><jats:p>A frustrated Lewis pair‐catalyzed hydroboration of aromatic and aliphatic nitriles was developed. The catalyst provides the primary amines in high yields of 77–99% with catalyst loading as low as 2 mol%. The reaction displays high functional group tolerance towards esters, amides, nitro groups and aliphatic halides. The addition of the diborylated amines to ethyl 3‐phenylpropiolate proceeds with Z‐selectivity with d.r. of &gt;99:1 in 77–90% yield over two steps. The reaction mechanism was investigated by control and computational experiments.</jats:p><jats:p><jats:boxed-text content-type="graphic" position="anchor"><jats:graphic xmlns:xlink="http://www.w3.org/1999/xlink" mimetype="image/png" position="anchor" specific-use="enlarged-web-image" xlink:href="graphic/adsc202200525-toc-0001-m.png"><jats:alt-text>magnified image</jats:alt-text></jats:graphic></jats:boxed-text>
</jats:p>}},
  author       = {{Sieland, Benedikt and Hoppe, Axel and Stepen, Arne J. and Paradies, Jan}},
  issn         = {{1615-4150}},
  journal      = {{Advanced Synthesis &amp; Catalysis}},
  keywords     = {{hydroboration, nitrile, amine, frustrated Lewis pair, density functional theory}},
  number       = {{18}},
  pages        = {{3143--3148}},
  publisher    = {{Wiley}},
  title        = {{{Frustrated Lewis Pair‐Catalyzed Hydroboration of Nitriles: FLP Versus Borenium Catalysis}}},
  doi          = {{10.1002/adsc.202200525}},
  volume       = {{364}},
  year         = {{2022}},
}

@article{32088,
  abstract     = {{Subwavelength dielectric resonators assembled into metasurfaces have become a versatile tool for miniaturizing optical components approaching the nanoscale. An important class of metasurface functionalities is associated with asymmetry in both the generation and transmission of light with respect to reversals of the positions of emitters and receivers. The nonlinear light–matter interaction in metasurfaces offers a promising pathway towards miniaturization of the asymmetric control of light. Here we demonstrate asymmetric parametric generation of light in nonlinear metasurfaces. We assemble dissimilar nonlinear dielectric resonators into translucent metasurfaces that produce images in the visible spectral range on being illuminated by infrared radiation. By design, the metasurfaces produce different and completely independent images for the reversed direction of illumination, that is, when the positions of the infrared emitter and the visible light receiver are exchanged. Nonlinearity-enabled asymmetric control of light by subwavelength resonators paves the way towards novel nanophotonic components via dense integration of large quantities of nonlinear resonators into compact metasurface designs.}},
  author       = {{Kruk, Sergey S. and Wang, Lei and Sain, Basudeb and Dong, Zhaogang and Yang, Joel and Zentgraf, Thomas and Kivshar, Yuri}},
  issn         = {{1749-4885}},
  journal      = {{Nature Photonics}},
  keywords     = {{Atomic and Molecular Physics, and Optics, Electronic, Optical and Magnetic Materials}},
  pages        = {{561–565}},
  publisher    = {{Springer Science and Business Media LLC}},
  title        = {{{Asymmetric parametric generation of images with nonlinear dielectric metasurfaces}}},
  doi          = {{10.1038/s41566-022-01018-7}},
  volume       = {{16}},
  year         = {{2022}},
}

@article{29790,
  abstract     = {{The free exciton transition (near-band-edge emission, NBE) of ZnO at ≈388 nm can be strongly enhanced and even stimulated by an underlying photonic structure. 1D Photonic crystals, so-called distributed Bragg reflectors, are utilized to suppress the deep-level emission of ZnO (DLE, ≈500–530 nm). The reflector stacks are fabricated in a layer-by-layer procedure by wet-chemical synthesis. They consist of low-ε porous SiO2 layers and high-ε TiO2 layers. Varying the thickness of the SiO2 layers allows tuning the optical bandgap in a wide range between ≈420 and 800 nm. A ZnO layer is deposited on top of the reflector stacks by sol–gel synthesis. The spontaneous photoluminescence (PL) emission of the ZnO film is modulated by the photonic structure. When the optical bandgap of the reflector is in resonance with the deep-level emission of ZnO (DLE, ≈500–530 nm), then this defect-related emission mode is suppressed. Strong NBE emission is observed even when the ZnO layer does not show any NBE emission (due to low crystallinity) in the absence of the photonic structure. With this cost-efficient synthesis method, emitters for, e.g., luminescent gas sensors can be fabricated.}},
  author       = {{Kothe, Linda and Albert, Maximilian and Meier, Cedrik and Wagner, Thorsten and Tiemann, Michael}},
  issn         = {{2196-7350}},
  journal      = {{Advanced Materials Interfaces}},
  keywords     = {{Mechanical Engineering, Mechanics of Materials}},
  publisher    = {{Wiley}},
  title        = {{{Stimulation and Enhancement of Near‐Band‐Edge Emission in Zinc Oxide by Distributed Bragg Reflectors}}},
  doi          = {{10.1002/admi.202102357}},
  volume       = {{9}},
  year         = {{2022}},
}

@article{44088,
  abstract     = {{Hole polarons and defect-bound exciton polarons in lithium niobate are investigated by means of density-functional theory, where the localization of the holes is achieved by applying the +U approach to the oxygen 2p orbitals. We find three principal configurations of hole polarons: (i) self-trapped holes localized at displaced regular oxygen atoms and (ii) two other configurations bound to a lithium vacancy either at a threefold coordinated oxygen atom above or at a two-fold coordinated oxygen atom below the defect. The latter is the most stable and is in excellent quantitative agreement with measured g factors from electron paramagnetic resonance. Due to the absence of mid-gap states, none of these hole polarons can explain the broad optical absorption centered between 2.5 and 2.8 eV that is observed in transient absorption spectroscopy, but such states appear if a free electron polaron is trapped at the same lithium vacancy as the bound hole polaron, resulting in an exciton polaron. The dielectric function calculated by solving the Bethe–Salpeter equation indeed yields an optical peak at 2.6 eV in agreement with the two-photon experiments. The coexistence of hole and exciton polarons, which are simultaneously created in optical excitations, thus satisfactorily explains the reported experimental data.}},
  author       = {{Schmidt, Falko and Kozub, Agnieszka L. and Gerstmann, Uwe and Schmidt, Wolf Gero and Schindlmayr, Arno}},
  issn         = {{2073-4352}},
  journal      = {{Crystals}},
  number       = {{11}},
  publisher    = {{MDPI AG}},
  title        = {{{A density-functional theory study of hole and defect-bound exciton polarons in lithium niobate}}},
  doi          = {{10.3390/cryst12111586}},
  volume       = {{12}},
  year         = {{2022}},
}

@article{33687,
  author       = {{Odziomek, Mateusz and Giusto, Paolo and Kossmann, Janina and Tarakina, Nadezda V. and Heske, Julian Joachim and Rivadeneira, Salvador M. and Keil, Waldemar and Schmidt, Claudia and Mazzanti, Stefano and Savateev, Oleksandr and Perdigón‐Toro, Lorena and Neher, Dieter and Kühne, Thomas and Antonietti, Markus and López‐Salas, Nieves}},
  issn         = {{0935-9648}},
  journal      = {{Advanced Materials}},
  keywords     = {{Mechanical Engineering, Mechanics of Materials, General Materials Science}},
  number       = {{40}},
  publisher    = {{Wiley}},
  title        = {{{“Red Carbon”: A Rediscovered Covalent Crystalline Semiconductor}}},
  doi          = {{10.1002/adma.202206405}},
  volume       = {{34}},
  year         = {{2022}},
}

@article{37942,
  author       = {{Andexer, Jennifer N. and Beifuss, Uwe and Brasholz, Malte and Breinbauer, Rolf and Breugst, Martin and Dumele, Oliver and Ernst, Martin and Ganardi, Ruth and Giese, Michael and Gulder, Tobias A. M. and Hüttel, Wolfgang and Kath‐Schorr, Stephanie and Körber, Karsten and Kordes, Markus and Lindel, Thomas and Mück‐Lichtenfeld, Christian and Niemeyer, Jochen and Pfau, Roland and Pfrengle, Fabian and Pietruszka, Jörg and Röckl, Johannes L. and Schaschke, Norbert and Sebode, Hanna and Senge, Mathias O. and Straub, Bernd F. and Teichert, Johannes and Waldvogel, Siegfried R. and Werner, Thomas and Winter, Christian}},
  issn         = {{1439-9598}},
  journal      = {{Nachrichten aus der Chemie}},
  keywords     = {{General Chemical Engineering, General Chemistry}},
  number       = {{3}},
  pages        = {{42--69}},
  publisher    = {{Wiley}},
  title        = {{{Trendbericht Organische Chemie 2022}}},
  doi          = {{10.1002/nadc.20224122453}},
  volume       = {{70}},
  year         = {{2022}},
}

@article{37938,
  author       = {{Terazzi, Constanza and Laatz, Karoline and von Langermann, Jan and Werner, Thomas}},
  issn         = {{2168-0485}},
  journal      = {{ACS Sustainable Chemistry and Engineering}},
  keywords     = {{T1, T3, CSSD}},
  number       = {{40}},
  pages        = {{13335--13342}},
  publisher    = {{American Chemical Society (ACS)}},
  title        = {{{Synthesis of Cyclic Carbonates Catalyzed by CaI<sub>2</sub>–Et<sub>3</sub>N and Studies on Their Biocatalytic Kinetic Resolution}}},
  doi          = {{10.1021/acssuschemeng.2c03210}},
  volume       = {{10}},
  year         = {{2022}},
}

@article{37940,
  author       = {{Ren, Changyue and Spannenberg, Anke and Werner, Thomas}},
  issn         = {{2193-5807}},
  journal      = {{Asian Journal of Organic Chemistry}},
  keywords     = {{T1, T2, CSSD}},
  number       = {{9}},
  publisher    = {{Wiley}},
  title        = {{{Synthesis of Bifunctional Phosphonium Salts Bearing Perfluorinated Side Chains and Their Application in the Synthesis of Cyclic Carbonates from Epoxides and CO            <sub>2</sub>}}},
  doi          = {{10.1002/ajoc.202200156}},
  volume       = {{11}},
  year         = {{2022}},
}

@misc{62144,
  author       = {{Weber, Arne and Werner, Thomas and Grandane, Aiga and Stefanow, V. and Lenz, O.}},
  title        = {{{Verfahren zur Herstellung von Cedrendiol}}},
  year         = {{2022}},
}

