N
Na Liu
Researcher at Max Planck Society
Publications - 184
Citations - 18121
Na Liu is an academic researcher from Max Planck Society. The author has contributed to research in topics: Medicine & DNA origami. The author has an hindex of 51, co-authored 130 publications receiving 14896 citations. Previous affiliations of Na Liu include University of Stuttgart & University of Mainz.
Papers
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Journal ArticleDOI
Magnetic plasmon formation and propagation in artificial aromatic molecules.
Na Liu,Shaunak Mukherjee,Kui Bao,Lisa V. Brown,Jens Dorfmüller,Peter Nordlander,Naomi J. Halas +6 more
TL;DR: This work has shown that antiphase coupling gives rise to plasmonic "antiferromagnetic" behavior in multiple repeated heptamer structures, supporting the propagation of low-loss magnetic plasmons in this new waveguide geometry.
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DNA-Nanotechnology-Enabled Chiral Plasmonics: From Static to Dynamic
TL;DR: A reconfigurable plasmonic cross structure that can execute DNA-regulated conformational changes on the nanoscale is elucidated and selective manipulations of individual structural species coexisting in one ensemble can be achieved using pH tuning of reconfiguring plasMonic nanostructures in a programmable manner.
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Individual Nanoantennas Loaded with Three-Dimensional Optical Nanocircuits
TL;DR: The first optical nanoscale circuits with fully three-dimensional lumped elements are experimentally demonstrated, which pave the way toward extending conventional circuit concepts into the visible domain for applications in data storage, wireless optical links, and related venues.
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Observations of shape-dependent hydrogen uptake trajectories from single nanocrystals.
TL;DR: The single-particle trajectories were able to decipher specific instances where palladium silicide formation and Au/Pd interdiffusion occurred and helped to determine that this was more frequently seen in those particles within an ensemble having thicker Pd shells.
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Plasmonic gas and chemical sensing
TL;DR: A review of plasmonic sensing strategies can be found in this paper, where the authors discuss a multitude of techniques to detect chemical and catalytic events down to the single molecule level.