Data publications from the Cluster of Excellence 3D Matter Made to Order (3DMM2O). The Cluster is a collaboration of Karlsruhe Institute of Technology (KIT) and Heidelberg University. It pursues an interdisciplinary approach through conjunction of natural, engineering, and social sciences. 3DMM2O establishes scalable digital 3D Additive Manufacturing transcending from the molecular to the macroscopic scale. The goal is the ultimate digitalization of 3D manufacturing and material processing.
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1 to 10 of 1,956 Results
Jul 2, 2024 - Blasco Group
Hsu, Li-Yun; Gomez Melo, Santiago; Vazquez-Martel, Clara; Spiegel, Christoph A.; Ziebert, Falko; Schwarz, Ulrich S.; Blasco, Eva, 2024, "Alignment and Actuation of Liquid Crystals via 3D Confinement and Two-Photon Laser Printing [data]", https://doi.org/10.11588/data/CHNSX7, heiDATA, V1
Liquid crystalline (LC) materials are especially suited for the preparation of active 3D/4D microstructures using two-photon laser printing. To achieve the desired actuation, the alignment of the LCs has to be controlled during the printing process. In most cases studied to date,...
ZIP Archive - 25.5 MB - MD5: 113678614c0ec939535e47584917e373
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ZIP Archive - 37.7 MB - MD5: ea743b6844ca80e28074a86ac9619a61
Jun 13, 2024 - AG Wittbrodt
Afting, Cassian; Mainik, Philipp; Vazquez-Martel, Clara; Abele, Tobias; Kaul, Verena; Kale, Girish; Göpfrich, Kerstin; Lemke, Steffen; Blasco, Eva; Wittbrodt, Joachim, 2024, "Minimal-Invasive 3D Laser Printing of Microimplants in Organismo [data]", https://doi.org/10.11588/data/MVBFOY, heiDATA, V1
Multi-photon 3D laser printing has gathered much attention in recent years as a means of manufacturing biocompatible scaffolds that can modify and guide cellular behavior in vitro. However, in vivo tissue engineering efforts have been limited so far to the implantation of beforeh...
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