On-surface polyarylene synthesis by cycloaromatization of isopropyl substituents

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作者
Amogh Kinikar
Marco Di Giovannantonio
José I. Urgel
Kristjan Eimre
Zijie Qiu
Yanwei Gu
Enquan Jin
Akimitsu Narita
Xiao-Ye Wang
Klaus Müllen
Pascal Ruffieux
Carlo A. Pignedoli
Roman Fasel
机构
[1] Swiss Federal Laboratories for Materials Science and Technology,Empa
[2] Max Planck Institute for Polymer Research,Institute of Physical Chemistry
[3] Johannes Gutenberg-Universität Mainz,Department of Chemistry, Biochemistry and Pharmaceutical Sciences
[4] University of Bern,Organic and Carbon Nanomaterials Unit
[5] Istituto di Struttura della Materia-CNR (ISM-CNR),State Key Laboratory of Elemento
[6] IMDEA Nanoscience,Organic Chemistry, College of Chemistry
[7] Okinawa Institute of Science and Technology Graduate University,undefined
[8] Nankai University,undefined
来源
Nature Synthesis | 2022年 / 1卷
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摘要
Immobilization of organic molecules on metal surfaces and their coupling via thermally induced C–C bond formation is an important technique in organic and polymer synthesis. Using this approach, insoluble and reactive carbon nanostructures can be synthesized and the reactions monitored in situ using scanning probe microscopy methods. The diversity of conceivable products, however, is limited by the number and variety of known on-surface reactions. Here, we introduce the on-surface synthesis of polyarylenes by intermolecular oxidative coupling of isopropyl substituents of arenes. This [3+3] dimerization reaction forms a new phenylene ring and can be regarded as a formal cycloaromatization. The synthetic value of this reaction is proved by the synthesis of polyarylenes and co-polyarylenes, which we demonstrate by synthesizing poly(2,7-pyrenylene-1,4-phenylene). Scanning tunnelling microscopy and non-contact atomic force microscopy studies, complemented by density functional theory calculations, offer mechanistic insight into the on-surface cycloaromatization reaction.
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页码:289 / 296
页数:7
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