Cyclooctatetraene‐Embedded Carbon Nanorings

Author:

Lei Sheng‐Nan12,Zhu Ling3,Xue Ning4,Xiao Xuedong12,Shi Le12,Wang Duan‐Chao12,Liu Zhe12,Guan Xin‐Ru12,Xie Yuan12,Liu Ke12,Hu Lian‐Rui3,Wang Zhaohui4,Stoddart J. Fraser1567,Guo Qing‐Hui128ORCID

Affiliation:

1. Stoddart Institute of Molecular Science Department of Chemistry Zhejiang University Hangzhou 310027 China

2. ZJU-Hangzhou Global Scientific and Technological Innovation Center Hangzhou 311215 China

3. Shanghai Key Laboratory of Green Chemistry and Chemical Processes Shanghai Frontiers Science Center of Molecule Intelligent Syntheses School of Chemistry and Molecular Engineering East China Normal University Shanghai 200062 China

4. Key Laboratory of Organic Optoelectronics and Molecular Engineering Department of Chemistry Tsinghua University Beijing 100084 China

5. Chong Yuet Ming Chemistry Building The University of Hong Kong Hong Kong SAR

6. Simpson Querrey Institute for BioNanotechnology 303 East Superior Street Chicago IL-60611 USA

7. School of Chemistry University of New South Wales Sydney NSW-2052 Australia

8. MOE Key Laboratory of Bioorganic Phosphorous and Chemical Biology Department of Chemistry Tsinghua University Beijing 100084 China

Abstract

AbstractWith the prosperity of the development of carbon nanorings, certain topologically or functionally unique units‐embedded carbon nanorings have sprung up in the past decade. Herein, we report the facile and efficient synthesis of three cyclooctatetraene‐embedded carbon nanorings (COTCNRs) that contain three (COTCNR1 and COTCNR2) and four (COTCNR3) COT units in a one‐pot Yamamoto coupling. These nanorings feature hoop‐shaped segments of Gyroid (G‐), Diamond (D‐), and Primitive (P‐) type carbon schwarzites. The conformations of the trimeric nanorings COTCNR1 and COTCNR2 are shape‐persistent, whereas the tetrameric COTCNR3 possesses a flexible carbon skeleton which undergoes conformational changes upon forming host–guest complexes with fullerenes (C60 and C70), whose co‐crystals may potentially serve as fullerene‐based semiconducting supramolecular wires with electrical conductivities on the order of 10−7 S cm−1 (for C60COTCNR3) and 10−8 S cm−1 (for C70COTCNR3) under ambient conditions. This research not only describes highly efficient one‐step syntheses of three cyclooctatetraene‐embedded carbon nanorings which feature hoop‐shaped segments of distinctive topological carbon schwarzites, but also demonstrates the potential application in electronics of the one‐dimensional fullerene arrays secured by COTCNR3.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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