A triaxial supramolecular weave

被引:0
作者
Urszula Lewandowska
Wojciech Zajaczkowski
Stefano Corra
Junki Tanabe
Ruediger Borrmann
Edmondo M. Benetti
Sebastian Stappert
Kohei Watanabe
Nellie A. K. Ochs
Robin Schaeublin
Chen Li
Eiji Yashima
Wojciech Pisula
Klaus Müllen
Helma Wennemers
机构
[1] Laboratory of Organic Chemistry,Department of Molecular Design and Engineering
[2] D-CHAB,Department of Materials
[3] ETH Zürich,Department of Molecular Physics
[4] Vladimir-Prelog-Weg 3,undefined
[5] Max Planck Institute for Polymer Research,undefined
[6] Ackermannweg 10,undefined
[7] Graduate School of Engineering,undefined
[8] Nagoya University,undefined
[9] Chikusa-ku,undefined
[10] Laboratory for Surface Science and Technology,undefined
[11] ETH Zürich,undefined
[12] Vladimir-Prelog-Weg 5,undefined
[13] Scientific Center for Optical and Electron Microscopy,undefined
[14] ETH Zürich,undefined
[15] Auguste-Piccard-Hof 1,undefined
[16] Faculty of Chemistry,undefined
[17] Lodz University of Technology,undefined
[18] Zeromskiego 116,undefined
[19] Institute of Physical Chemistry,undefined
[20] Johannes Gutenberg University Mainz,undefined
[21] Duesbergweg 10-14,undefined
来源
Nature Chemistry | 2017年 / 9卷
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摘要
Despite recent advances in the synthesis of increasingly complex topologies at the molecular level, nano- and microscopic weaves have remained difficult to achieve. Only a few diaxial molecular weaves exist—these were achieved by templation with metals. Here, we present an extended triaxial supramolecular weave that consists of self-assembled organic threads. Each thread is formed by the self-assembly of a building block comprising a rigid oligoproline segment with two perylene-monoimide chromophores spaced at 18 Å. Upon π stacking of the chromophores, threads form that feature alternating up- and down-facing voids at regular distances. These voids accommodate incoming building blocks and establish crossing points through CH–π interactions on further assembly of the threads into a triaxial woven superstructure. The resulting micrometre-scale supramolecular weave proved to be more robust than non-woven self-assemblies of the same building block. The uniform hexagonal pores of the interwoven network were able to host iridium nanoparticles, which may be of interest for practical applications.
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页码:1068 / 1072
页数:4
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