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1 to 10 of 107 Results
Sep 17, 2024 - Bunz Group
Dr. Fuchs, Kathleen; Oberhof, Nils; Sauter, Gabriel; Pollien, Audrey; Brödner, Kerstin; Dr. Rominger, Frank; Dr. Freudenberg, Jan; Prof. Dr. Dreuw, Andreas; Prof. Dr. Tegeder, Petra; Prof. Dr. Bunz, Uwe H. F., 2024, "Azaacene Diradicals Based on Non-Kekulé Meta-Quinodimethane with Large Two-Photon Cross-Sections in the Infrared Spectral Region [data]", https://doi.org/10.11588/data/R3IMSQ, heiDATA, V1
Research Data associated with the related publication. Abstract: Non-Kekulé quinoidal azaacences m-A (1a,b) were synthesized and compared to their para- and ortho-quinodimethane analogues. m-A display high diradical characters (1b: y0 = 0.88) due to their meta-quinodimethane (m-Q...
Aug 30, 2024 - Göpfrich Group - Biophysical Engineering of Life
Walther, Tobias; Afting, Cassian; Drozdowski, Oliver M.; Schlagheck, Christina; Schwarz, Ulrich S.; Wittbrodt, Joachim; Göpfrich, Kerstin, 2024, "DNA microbeads for spatio-temporally controlled morphogen release within organoids [Research data]", https://doi.org/10.11588/data/T87EPK, heiDATA, V1
Organoids have proven to be powerful in vitro model systems that mimic features of the corresponding tissue in vivo. However, across tissue types and species, organoids still often fail to reach full maturity and function because biochemical cues cannot be provided from within th...
Jul 29, 2024 - SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien - C: Material & Function
Herrmann, Niklas; Hertzog, Manuel; Mischok, Andreas; Gather, Malte C.; Zaumseil, Jana, 2024, "Polarization-Dependent Strong and Weak Light- Matter Coupling in Aligned Perylene Diimide Thin-Films [data]", https://doi.org/10.11588/data/SMJYVJ, heiDATA, V1
Underlying data for figures in the paper "Polarization-Dependent Strong and Weak Light- Matter Coupling in Aligned Perylene Diimide Thin-Films"
Jul 29, 2024 - Blasco Group
Zhu, Guangda; Coelln, Nadine von; Hou, Yi; Vazquez‐Martel, Clara; Spiegel, Christoph A; Tegeder, Petra; Blasco, Eva, 2024, "Digital Light 3D Printing of Double Thermoplastics with Customizable Mechanical Properties and Versatile Reprocessability [data]", https://doi.org/10.11588/data/BULQRJ, heiDATA, V1
Digital light processing (DLP) is a 3D printing technology offering high resolution and speed. Printable materials are usually based on multifunctional monomers, resulting in the formation of thermosets that cannot be reprocessed or recycled. Some efforts have been made in DLP 3D...
Jul 8, 2024 - Blasco Group
Spiegel, Christoph; Vazquez-Martel, Clara; Gastaldi, Matteo; Barolo, Claudia; Roppolo, Ignazio; Blasco, Eva, 2024, "4D Printing of Light Activated Shape Memory Polymers with Organic Dyes [data]", https://doi.org/10.11588/data/CV4HOB, heiDATA, V1, UNF:6:ckAzCZCf0qptY+3AFztk5g== [fileUNF]
Light based 3D printing technologies, such as digital light processing (DLP), allow for the additive manufacturing of complex 3D objects at fast speeds and with high resolution. Typical printable formulations for DLP consist of (a mixture of) monomer(s), a photoinitiator and very...
Jul 8, 2024 - Blasco Group
Tran, Hoang Bao Duc; Vazquez-Martel, Clara; Catt, Samantha O.; Jia, Yixuan; Tsotsalas, Manuel; Spiegel, Christoph A.; Blasco, Eva, 2024, "4D Printing of Adaptable “Living” Materials Based on Alkoxyamine Chemistry [data]", https://doi.org/10.11588/data/RFGMKY, heiDATA, V1
4D printing has emerged as a powerful strategy capable of revolutionizing additive manufacturing by enabling objects to dynamically transform over time on demand. Despite significant progress, the full potential remains unrealized, particularly in the utilization of dynamic coval...
Jul 8, 2024 - Blasco Group
Spiegel, Christoph A.; Hackner, Maximilian; Bothe, Viktoria P.; Spatz, Joachim P.; Blasco, Eva, 2024, "4D Printing of Shape Memory Polymers: From Macro to Micro [data]", https://doi.org/10.11588/data/2HHUP2, heiDATA, V1, UNF:6:vhPDtznOEiaHwKhkImuSYA== [fileUNF]
A novel and versatile shape memory ink system allowing 4D printing with light at the macroscale as well as the microscale is presented. Digital light processing (DLP) and direct laser writing (DLW) are selected as suitable 3D printing technologies to cover both regimes. First, a...
Jul 8, 2024 - Blasco Group
Spiegel, Christoph A.; Jia, Yixuan; Welle, Alexander; Heißler, Stefan; Sedghamiz, Elaheh; Liu, Modan; Wenzel, Wolfgang; Hackner, Maximilian; Spatz, Joachim P.; Tsotsalas, Manuel; Blasco, Eva, 2024, "Covalent Adaptable Microstructures via Combining Two‐Photon Laser Printing and Alkoxyamine Chemistry: Toward Living 3D Microstructures [data]", https://doi.org/10.11588/data/034J0R, heiDATA, V1
Manufacturing programmable materials, whose mechanical properties can be adapted on demand, is highly desired for their application in areas ranging from robotics, to biomedicine, or microfluidics. Herein, the inclusion of dynamic and living bonds, such as alkoxyamines, in a prin...
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,...
Jun 18, 2024 - Blasco Group
Vazquez-Martel, Clara; Florido Martins, Lilliana; Genthner, Elisa; Almeida, Carlos; Martel Quintana, Antera; Bastmeyer, Martin; Gómez Pinchetti, Juan Luis; Blasco, Eva, 2024, "Printing Green: Microalgae-based materials for 3D printing with light [data]", https://doi.org/10.11588/data/KSMIGY, heiDATA, V1
Microalgae have emerged as sustainable feedstocks due to their ability to fix CO2 during cultivation, rapid growth rates, and capability to produce a wide variety of metabolites. Several microalgae accumulate lipids in high concentrations, especially triglycerides, along with lip...
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