Nanopatterning of Surfaces with Monometallic and Heterobimetallic 1D Coordination Polymers: A Molecular Tectonics Approach at the Solid/Liquid Interface

被引:30
作者
El Garah, Mohamed [1 ]
Marets, Nicolas [3 ,4 ]
Mauro, Matteo [2 ,5 ]
Aliprandi, Alessandro [2 ]
Bonacchi, Sara [1 ]
De Cola, Luisa [2 ]
Ciesielski, Artur [1 ]
Bulach, Veronique [3 ,4 ]
Hosseini, Mir Wais [3 ,4 ]
Samori, Paolo [1 ]
机构
[1] Univ Strasbourg, ISIS, Lab Nanochim, F-67000 Strasbourg, France
[2] Univ Strasbourg, ISIS, Lab Chim & Biomat Supramol, F-67000 Strasbourg, France
[3] Univ Strasbourg, UMR UdS CNRS, Lab Tecton Mol, F-67081 Strasbourg, France
[4] Univ Strasbourg, Inst Le Bel, icFRC, F-67081 Strasbourg, France
[5] Univ Strasbourg, Inst Etud Avancees USIAS, F-67083 Strasbourg, France
关键词
PORPHYRINS BEARING PYRIDYL; N-OXIDE GROUPS; ELECTRONIC-STRUCTURE; NETWORKS; DESIGN; COMPLEXES; ARRAYS; FRAMEWORKS; CHEMISTRY; SPECTRA;
D O I
10.1021/jacs.5b02283
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The self-assembly of multiple molecular components into complex supramolecular architectures is ubiquitous in nature and constitutes one of the most powerful strategies to fabricate multifunctional nanomaterials making use of the bottom-up approach. When spatial confinement in two dimensions on a solid substrate is employed, this approach can be exploited to generate periodically ordered structures from suitably designed molecular tectons. In this study we demonstrate that physisorbed directional periodic arrays of monometallic or heterobimetallic coordination polymers can be generated on a highly oriented pyrolitic graphite surface by combinations of a suitably designed directional organic tecton or metallatecton based on a porphyrin or nickel(II) metalloporphyrin backbone bearing both a pyridyl unit and a terpyridyl unit acting as coordinating sites for CoCl2. The periodic. architectures were visualized at the solid/liquid interface with a submolecular resolution by scanning tunneling microscopy and corroborated by combined density functional and time-dependent density functional theory calculations. The capacity to nanopattern the surface for the first time with two distinct metallic centers exhibiting different electronic and optical properties is a key step toward the bottom-up construction of robust multicomponent and, thus, multifunctional molecular nanostructures and nano devices.
引用
收藏
页码:8450 / 8459
页数:10
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