Publikationen
Zeitschriftenartikel (108)
1.
Zeitschriftenartikel
Magnetic control of magnetotactic bacteria swarms. Physical Review Fluids 10, 083101 (2025)
2.
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Imaging biomineralizing bacteria in the native-state with X-ray fluorescence microscopy. Chemical Science 16 (26), S. 12068 - 12079 (2025)
3.
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Physiological magnetic field strength help magnetotactic bacteria navigate in simulated sediments. eLife, eLife.98001.3 (2025)
4.
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Biomimetic approach for sustainable magnetite nanoparticle synthesis using polycations. Advanced Functional Materials 34 (16), 2311856 (2024)
5.
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Synchrotron-based nano-X-ray absorption near-edge structure revealing intracellular heterogeneity of iron species in magnetotactic bacteria. Small science 2 (3), 2100089 (2022)
6.
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Interplay of surface interaction and magnetic torque in single-cell motion of magnetotactic bacteria in microfluidic confinement. eLife 11, eLife.71527 (2022)
7.
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Opportunities and utilization of branching and step-out behavior in magnetic microswimmers with a nonlinear response. Applied Physics Letters 118 (17), 174102 (2021)
8.
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Selective actuation and tomographic imaging of swarming magnetite nanoparticles. ACS Applied Nano Materials 4 (7), S. 6752 - 6759 (2021)
9.
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Wettability of magnetite nanoparticles guides growth from stabilized amorphous ferrihydrite. Journal of the American Chemical Society 143 (29), S. 10963 - 10969 (2021)
10.
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Stokesian dynamics simulations of a magnetotactic bacterium. The European Physical Journal E 44 (3), 40 (2021)
11.
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Magnetite-binding proteins from the magnetotactic bacterium Desulfamplus magnetovallimortis BW-1. Nanoscale 13 (48), S. 20396 - 20400 (2021)
12.
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Identification and elimination of genomic regions irrelevant for magnetosome biosynthesis by large-scale deletion in Magnetospirillum gryphiswaldense. BMC Microbiology 21 (1), 65 (2021)
13.
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Selection for function: from chemically synthesized prototypes to 3D-printed microdevices. Advanced Intelligent Systems 2 (10), 2000078 (2020)
14.
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Self-Confined Nucleation of Iron Oxide Nanoparticles in a Nanostructured Amorphous Precursor. Nano Letters 20 (7), S. 5001 - 5007 (2020)
15.
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High-speed motility originates from cooperatively pushing and pulling flagella bundles in bilophotrichous bacteria. eLife 9, e47551 (2020)
16.
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Magnetite-arginine nanoparticles as a multifunctional biomedical tool. Nanomaterials 10 (10), 2014 (2020)
17.
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Surface-enhanced Raman scattering microspectroscopy enables the direct characterization of biomineral-associated organic material on single calcareous microskeletons. The Journal of Physical Chemistry Letters 11 (20), S. 8623 - 8629 (2020)
18.
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Using Shape Diversity on the way to new Structure-Function Designs for Magnetic Micropropellers. Physical Review Applied 11, 034039 (2019)
19.
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Chemotaxis in external fields: simulations for active magnetic biological matter. PLoS Computational Biology 15 (12), e1007548 (2019)
20.
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Tiny particles building huge ore deposits – Particle-based crystallisation in banded iron formation-hosted iron ore deposits (Hamersley Province, Australia). Ore Geology Reviews 104, S. 160 - 174 (2019)
21.
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The in vivo mechanics of the magnetotactic backbone as revealed by correlative FLIM-FRET and STED microscopy. Scientific Reports 9, 19615 (2019)
22.
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Swimming with magnets: from biological organisms to synthetic devices. Physics Reports: Review Section of Physics Letters 789, S. 1 - 54 (2019)
23.
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Shaping magnetite with poly-L-arginine and pH: from small single crystals to large mesocrystals. The Journal of Physical Chemistry Letters 10 (18), S. 5514 - 5518 (2019)
24.
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Ectosymbiotic bacteria at the origin of magnetoreception in a marine protist. Nature Microbiology 4 (7), S. 1088 - 1095 (2019)
25.
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Magnetic nanoparticles in human cervical skin. Frontiers in medicine 6, 123 (2019)
26.
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Reducing conditions favor magnetosome production in Magnetospirillum magneticum AMB-1. Frontiers in Microbiology 10, 582 (2019)
27.
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Decoding biomineralization: interaction of a Mad10 derived-peptide with magnetite thin films. Nano Letters 19 (11), S. 8207 - 8215 (2019)
28.
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Magnetic nanoparticle chains in gelatin ferrogels: bioinspiration from magnetotactic bacteria. Advanced Functional Materials 29 (45), 1905996 (2019)
29.
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Biologically encoded magnonics. Nature Communications 10, 4345 (2019)
30.
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Biohybrid and bioinspired magnetic microswimmers. Small 14 (29), 1704374 (2018)
31.
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Bead-based hydrodynamic simulations of rigid magnetic micropropellers. Frontiers in Robotics and AI 5, 109 (2018)
32.
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Native-state imaging of calcifying and noncalcifying microalgae reveals similarities in their calcium storage organelles. Proceedings of the National Academy of Sciences of the United States of America 115 (43), S. 11000 - 11005 (2018)
33.
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Self-organization and stability of magnetosome chains—a simulation study. PLoS One 13 (1), e0190265 (2018)
34.
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The importance of the helical structure of a MamC-derived magnetite-interacting peptide for its function in magnetite formation. Acta Crystallographica Section D: Structural Biology 74, S. 10 - 20 (2018)
35.
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A bacteria-based remotely tunable photonic device. Advanced Optical Materials 5 (1), 1600617 (2017)
36.
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Trace-element incorporation into intracellular pools uncovers calcium-pathways in a coccolithophore. Advanced Science 4 (10), 1700088 (2017)
37.
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Templated and self-limiting calcite formation directed by coccolith organic macromolecules. Chemical Communications 53 (55), S. 7740 - 7743 (2017)
38.
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Magnetosome organization in magnetotactic bacteria unraveled by ferromagnetic resonance spectroscopy. Biophysical Journal 113 (3), S. 637 - 644 (2017)
39.
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Genetically engineered organization: protein template, biological recognition sites, and nanoparticles. Advanced Materials Interfaces 4 (1), 1600285 (2017)
40.
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Single crystalline superstructured stable single domain magnetite nanoparticles. Scientific Reports 7, 45484 (2017)
41.
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Magnetotactic bacteria powered biohybrids target E. coli biofilms. ACS Nano 11 (10), S. 9968 - 9978 (2017)
42.
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Materials nanoarchitecturing via cation-mediated protein assembly: making limpet teeth without mineral. Advanced Materials 29 (27), 1701171 (2017)
43.
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Pattern formation and collective effects in populations of magnetic microswimmers. Journal of Physics D: Applied Physics 50 (11), 11LT03 (2017)
44.
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Combined experimental and theoretical approach to the kinetics of magnetite crystal growth from primary particles. The Journal of Physical Chemistry Letters 8 (6), S. 1132 - 1136 (2017)
45.
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Control of biogenic nanocrystal formation in biomineralization. Israel Journal of Chemistry 56 (4), S. 227 - 241 (2016)
46.
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Elongated magnetite nanoparticle formation from a solid ferrous precursor in a magnetotactic bacterium. Journal of the Royal Society Interface 13 (124), 20160665 (2016)
47.
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Materials science: magnetic nanoparticles line up. Nature 535 (7611), S. 235 - 236 (2016)
48.
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Following iron speciation in the early stages of magnetite magnetosome biomineralization. Journal of Materials Research 31 (5), S. 547 - 555 (2016)
49.
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Macromolecular recognition directs calcium ions to coccolith mineralization sites. Science 353 (6299), S. 590 - 593 (2016)
50.
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Lattice distortions in coccolith calcite crystals originate from occlusion of biomacromolecules. Journal of Structural Biology 196 (2), S. 147 - 154 (2016)