PhoenixD Forschung
Publikationen

Publikationen im Rahmen des Exzellenzclusters PhoenixD

Die Forschungsleistung des Exzellenzclusters PhoenixD zeigt sich in den zahlreichen Publikationen, die seit 2019 veröffentlicht wurden. Eine kontinuierlich aktualisierte Übersicht finden Sie auf dieser Seite. In externen Publikationsportalen können Sie nach Veröffentlichungen mit der Identifikationsnummer (Project-ID) 390833453 und dem Kürzel EXC-2122 suchen.

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2026


Allayarov, I., Evlyukhin, A. B., & Lesina, A. C. (2026). Dipole‐Quadrupole Model and Multipole Analysis of Resonant Membrane Metasurfaces. Laser & photonics reviews. Vorzeitige Online-Publikation. https://doi.org/10.1002/lpor.202502674
Bhatia, Y., Bethmann, K., Mahlau, Y., Zheng, L., Ostermann, J., & Roth, B. (2026). Inverse-designed 3D-printed coupling element for polymer photonic circuits realized via two-photon polymerization. in L. Vivien, S. He, S. He, & C. Alonso-Ramos (Hrsg.), Smart Photonic and Optoelectronic Integrated Circuits 2026 Artikel 1390106 (Proceedings of SPIE - The International Society for Optical Engineering; Band 13901). SPIE. https://doi.org/10.1117/12.3079578
Biermann, T., Mesecke, L., Teves, S., Eckert, G., Hill, O., Ziesche, I., Wolf, A., & Lachmayer, R. (2026). Embedded Printing of Integrated Quantum Dot Waveguide Deformation Sensors. Sensors, 26(4), Artikel 1160. https://doi.org/10.3390/s26041160
Deja, Y., Bhatia, Y., Zheng, L., Günther, A., Steinbach, L., Kilic, M., Schneider, A., Renz, F., & Roth, B. (2026). Flexible 3D-printed optical waveguides for photonic networks and multi-sensing applications. in C. Moser, E. Blasco, D. Chanda, & G. von Freymann (Hrsg.), Advanced Fabrication Technologies for Micro/Nano Optics and Photonics XIX Artikel 138990C (Proceedings of SPIE - The International Society for Optical Engineering; Band 13899). SPIE. https://doi.org/10.1117/12.3080434
Denda, N. M., Albayrak, O., Menzel, H., König, C., Behrens, P., & Schneider, A. M. (2026). Molecular Dynamics Simulations and Electric Field Poling of Covalently Bonded Chromophores at Poly(methyl Methacrylate). The Journal of Physical Chemistry B. Vorzeitige Online-Publikation. https://doi.org/10.1021/acs.jpcb.6c01187
Denkena, B., Böß, V., Heide, K. M., Skryhunets, A., & Malek, T. (2026). Modeling and Simulation of Multi-Layer WAAM Structures for Digital Twin Integration. Journal of Manufacturing and Materials Processing, 10(3), Artikel 106. https://doi.org/10.3390/jmmp10030106
Evertz, A., Fütterer, L., & Overmeyer, L. (2026). Review on Rotative Printing for High-Volume Polymer Waveguide Processing. in R. Lachmayer, M. Oel, & S. Kaierle (Hrsg.), Innovative Produktentwicklung durch additive Fertigung: Innovative Product Development by Additive Manufacturing 2025 (S. 195-211). Springer Berlin Heidelberg. https://doi.org/10.1007/978-3-662-72573-3_12
Falkner, M., Bastos, A., Xia, P., Teves, S., Wüllner, U., Biermann, T., & Lachmayer, R. (2026). Volumetric Additive Manufacturing of a Laser Diode Collimator Lens with Xolography. in B. Gu, H. Chen, & H. Helvajian (Hrsg.), Laser 3D Manufacturing XIII Artikel 138840H (Proceedings of SPIE - The International Society for Optical Engineering; Band 13884). SPIE. https://doi.org/10.1117/12.3079656
Granzow, B. N., Bond, S. D., Seidl, D. T., & Endtmayer, B. (2026). A note on the reliability of goal-oriented error estimates for Galerkin finite element methods with nonlinear functionals. Applied mathematics letters, 172, Artikel 109742. https://doi.org/10.1016/j.aml.2025.109742
Höner, J. C., Schaate, A., Schneider, A. M., Blaser, J., Koller, H., Krysiak, Y., & Behrens, P. (2026). Novel zeolite framework LMU-2: unveiling of CHA-related structure with active sites by Co-complex structure-directing agent. Microporous and Mesoporous Materials, 402, Artikel 113960. https://doi.org/10.1016/j.micromeso.2025.113960
Kizakis, M. G. K., Treger, M., Dräger, G., König, C., & Heretsch, P. (2026). Navigating the Landscape of Cycloartanyl Cations: Synthesis of Fortunefuroic Acid I, Parkeol, 25,26,27-Trinor-3α-hydroxy-17,13-friedolanosta-8,12-dien-23-one, and Spirochensilide A. Journal of the American Chemical Society, 148(13), 13912-13920. https://doi.org/10.1021/jacs.5c22292
Kumar, S., Fröhlich, M., Velja, S., Kögel, M., Strolka, O., Niebur, A., Ginzburg, S., Ramzan, M. S., Meyer, J. C., Lauth, J., & Cocchi, C. (2026). Atomistic Origin of Photoluminescence Quenching in Colloidal MoS2and WS2Nanoplatelets. Nano letters, 26(9), 3064-3072. https://doi.org/10.1021/acs.nanolett.5c05893
Li, Y., Zheng, L., Caspary, R., & Roth, B. (2026). Initial phase pre-encoded design of cascaded diffractive optical elements with enhanced azimuthal robustness for multi-channel reconfigurable holography. Optics and Laser Technology, 200, Artikel 115126. Vorzeitige Online-Publikation. https://doi.org/10.1016/j.optlastec.2026.115126
Li, F., Liu, X., Klepzig, L. F., Rudolph, D., Lauth, J., Walla, P. J., & Menzel, H. (2026). Origin and Manipulation of the Orientation of Colloidal 2D Nanoplatelets in Electrospun Fibers. ACS Applied Optical Materials, 4(1), 129-139. https://doi.org/10.1021/acsaom.5c00494
Mahlau, Y., Augenstein, Y., Hughes, T., Lindauer, M., & Rosenhahn, B. (Angenommen/Im Druck). Gradient-Informed Bayesian and Interior Point Optimization for Efficient Inverse Design in Nanophotonics. Optics Express. https://arxiv.org/abs/2602.18148
Mapa, J. L., Petersen, L., Theidel, D., Mosel, P., Fischer, C., Mathew, B., Froehlich, S., Weber, K. A., Oberta, P., Vahlbruch, J. W., Merdji, H., Morgner, U., & Kovacev, M. (2026). X-ray and electron emission from peeling adhesive tape. Applied physics letters, 128(19), Artikel 191101. https://doi.org/10.1063/5.0317330
Mortazavi, B., Shahrokhi, M., Shojaei, F., & Zhuang, X. (2026). Anisotropic optical, mechanical, and thermal properties in thickness-dependent semiconducting 2D penta-AuPS from first principles. Results in Engineering, 30, Artikel 110999. https://doi.org/10.1016/j.rineng.2026.110999
Mortazavi, B., Karlický, F., Zhuang, X., & Shahrokhi, M. (2026). First-principles investigation of novel stable, strong, and highly attractive semiconducting nanoporous C3N and CN monolayers. Results in Chemistry, 21, Artikel 103088. https://doi.org/10.1016/j.rechem.2026.103088
Mortazavi, B., Shojaei, F., Shahrokhi, M., & Zhuang, X. (2026). Machine learning-assisted first-principles study of structural, electronic, optical, thermal, and mechanical properties of novel s-triazine-based organic framework monolayers. CARBON, 248, Artikel 121092. https://doi.org/10.1016/j.carbon.2025.121092
Mortazavi, B., Shojaei, F., Zhuang, X., & Shahrokhi, M. (2026). Novel bora- and aza-triangulene-based graphyne and graphdiyne: Stable and stretchable narrow-gap semiconductors explored by first principles and machine learning. Computational Materials Today, 10, Artikel 100057. https://doi.org/10.1016/j.commt.2026.100057