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Aug 11, 2020 -
Data analysis of the phd work: "Experimental realization of U(1) gauge invariance in ultracold atomic mixtures"
ZIP Archive - 1.2 GB -
MD5: d428bff6f35d78050b267180db851e5b
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Feb 16, 2024 -
Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]
PNG Image - 27.2 KB -
MD5: 8369d19a3d16117c0f68de8dd2547a18
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Feb 16, 2024 -
Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]
PNG Image - 25.0 KB -
MD5: 18b0d6cc3185cc2151cfa3038628bb9b
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Feb 16, 2024 -
Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]
JPEG Image - 476.3 KB -
MD5: a56208e558a72303a968a5a660a4c84b
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Feb 16, 2024 -
Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]
TIFF Image - 33.0 MB -
MD5: 3cbb52face4cfe5b5c467e440baf0aec
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Feb 16, 2024 -
Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]
JPEG Image - 486.7 KB -
MD5: 6012ae2eec6942b532c26df8b95bb3c1
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Feb 16, 2024 -
Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]
TIFF Image - 33.0 MB -
MD5: 41276168cf582087ea79ed58501f50de
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Feb 16, 2024 -
Triggered contraction of self-assembled micron-scale DNA nanotube rings [Research Data]
TIFF Image - 33.0 MB -
MD5: 41276168cf582087ea79ed58501f50de
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Dec 11, 2018 - KnopLab
Constantinou, Iordania; Jendrusch, Michael; Aspert, Théo; Görlitz, Frederik; Schulze, André; Charvin, Gilles; Knop, Michael, 2018, "3D Focusing in Simple Microfluidic Devices for Continuous-flow Single-cell Imaging [data set]", https://doi.org/10.11588/data/L5J7WO, heiDATA, V1
Accompanying data for the manuscript "3D Focusing in Simple Microfluidic Devices for Continuous-flow Single-cell Imaging". |
Nov 23, 2022 - Institute of Organic Chemistry - AK Mastalerz
Yang, Xuan; Elbert, Sven Michael; Rominger, Frank; Mastalerz, Michael, 2022, "A Series of Soluble Thieno-fused Coronene Nanoribbons of Precise Lengths [Data]", https://doi.org/10.11588/data/30AOAT, heiDATA, V1
Among graphene nanoribbons (GNRs), reports on coronene-based GNRs were very rare, despite the unique optoelectronic properties of coronene. Herein, the synthesis of a series of structurally precise and soluble thieno-fused coronene nanoribbons (CR-1 to CR-4) with up to four coron... |