#LiedlLab
Chiral Plasmonic Crystals Self-Assembled by DNA Origami
Periodic lattices of high refractive index materials manipulate light in exceptional manners. Resulting remarkable properties range from photonic band gaps to chiral active matter, which critically depend on parameters of crystal lattices such as the unit cell, lattice type, and periodicity. In self-assembled materials, the lattice properties are inherited by the geometry and size of the macromolecules or colloidal particles assembling the unit cell. DNA origami allows for excellent control over the size and shape of assembled macromolecules while simultaneously allowing control over the interaction between them and ultimately the crystal’s structure. Here, we present the assembly of chiral, rhombohedral crystals in one, two, and three dimensions built by a DNA origami tensegrity triangle. Subsequent modification of the lattice with gold nanorods converts the lattices into chiral plasmonic metamaterials active in the visible and near-infrared spectral range. We demonstrate their chiral activity and corroborate the experimental results with simulated data.
doi.org
March 4, 2025 at 1:39 PM
@KeyserLab @LennartHilbert @VasilyZaburdaev @KGanzinger @LabTinnefeld @liedllab @hendrik_dietz @SchwarzUlrich
.@IGuido_Lab and I are organizing a focus session on "Bioinspired Systems" at the DPG spring meeting in Regensburg. We would be very happy to receive your abstract for posters and talks! https://www.dpg-tagung.de/r22/submission.html?language=en Deadline: 15.12. Please share!
DPG Conference Server
www.dpg-tagung.de
November 21, 2024 at 6:14 PM
Links:
https://github.com/RosettaCommons/RFdiffusion#binder-design

GitHub - liedllab/TopModel: A structure checker in python
December 3, 2024 at 9:59 PM