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1 to 10 of 20 Results
Jan 24, 2022 - CryoEM
Köntges, Wolfgang; Perkhun, Pavlo; Kammerer, Jochen; Alkarsifi, Riva; Würfel, Uli; Margeat, Olivier; Videlot-Ackermann, Christine; Simon, Jean-Jacques; Schröder, Rasmus R.; Ackermann, Jörg; Pfannmöller, Martin, 2022, "Visualizing morphological principles for efficient photocurrent generation in organic non-fullerene acceptor blends [Research data]", https://doi.org/10.11588/data/ZW8JL9, heiDATA, V1
Research Data associated with the related publication.
Dec 15, 2021 - Blasco Group
Vazquez-Martel, Clara; Becker, Lukas; Liebig, Wilfried V.; Elsner, Peter; Blasco, Eva, 2021, "Vegetable Oils as Sustainable Inks for Additive Manufacturing: A Comparative Study [Data]", https://doi.org/10.11588/data/7NFYJ0, heiDATA, V1
The use of biobased materials in additive manufacturing is arising as a promising approach to modernize the polymer industry reducing its environmental impact. Herein, novel sustainable formulations are developed for digital light processing (DLP) using five vegetable oils─sunflo...
Mar 4, 2024 - Blasco Group
Eichelmann, Robert; Monti, Joël; Hsu, Li-Yun; Kröger, Finn; Ballmann, Joachim; Blasco, Eva; Gade, Lutz H., 2024, "Two-Photon Microprinting of 3D Emissive Structures Using Tetraazaperylene-Derived Fluorophores [data]", https://doi.org/10.11588/data/C6UIWL, heiDATA, V1
The application of a new class of fluorophores based on a twisted tetraazaperylene core in the fabrication of emissive organic 3D microstructures has been investigated. The synthesis of a series of tetraazaperyleneamines and their corresponding octaazaperopyrenedioxides (OAPPDOs)...
Nov 30, 2021 - Göpfrich Group - Biophysical Engineering of Life
Abele, Tobias; Messer, Tobias; Jahnke, Kevin; Hippler, Marc; Bastmeyer, Martin; Wegener, Martin; Goepfrich, Kerstin, 2021, "Two-Photon 3D Laser Printing Inside Synthetic Cells [Research Data]", https://doi.org/10.11588/data/PUKJCV, heiDATA, V1
Towards the ambitious goal of manufacturing synthetic cells from the bottom up, various cellular components have already been reconstituted inside of lipid vesicles. However, the deterministic positioning of these components inside the compartment has remained elusive. Here, by u...
Thomas Lab(Institute of Organic Chemistry)
Jan 19, 2022
Open Research Data from the Thomas Lab at the Institute of Organic Chemistry of Heidelberg University.
Jan 19, 2022 - Thomas Lab
Pham, Truc Lam; Kovermann, Michael; Thomas, Franziska, 2022, "Switchable Zinc (II)-Responsive Globular β-Sheet Peptide [Research Data]", https://doi.org/10.11588/data/HV4MJW, heiDATA, V1
The natural function of many proteins depends on their ability to switch their conformation driven by environmental changes. In this work, we present a small, monomeric β-sheet peptide that switches between a molten globule and a folded state through Zn(II) binding. The solvent-e...
Jan 27, 2021 - CryoEM
Kammerer, Jochen A.; Duan, Xiaoyang; Neubrech, Frank; Schröder, Rasmus R.; Liu, Na; Pfannmöller, Martin, 2021, "Stabilizing γ-MgH₂ at Nanotwins in Mechanically Constrained Nanoparticles [Research Data and Source Code]", https://doi.org/10.11588/data/LMMXAI, heiDATA, V1
Research Data and Source Code associated with the related publication.
Mar 17, 2023SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien
Open Research Data from SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien. Research Area C: Material & Function.
SFB 1249: N-Heteropolyzyklen als Funktionsmaterialien logo
Mar 17, 2023
The SFB 1249 is an interdisciplinary Collaborative Research Centre at Heidelberg University with project partners at the Karlsruhe Institute of Technology (KIT), MPI for Solid State Research in Stuttgart, University of Kassel and the Heidelberg Institute for Theoretical Studies (...
Feb 28, 2022 - Göpfrich Group - Biophysical Engineering of Life
Goepfrich, Kerstin; Walther, Tobias, 2022, "Printing and Erasing of DNA-based Photoresists inside Synthetic Cells [RESEARCH DATA]", https://doi.org/10.11588/data/MKOC9S, heiDATA, V1
In the pursuit to produce functioning synthetic cells from the bottom up, DNA nanotechnology has proven to be a powerful tool. However, the crowded yet highly organized arrangement in living cells, bridging from the nano- to the micron-scale, remains challenging to recreate with...
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