4.8 Article

Fluorenyl Based Macrocyclic Polyradicaloids

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 139, 期 37, 页码 13173-13183

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jacs.7b07335

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资金

  1. MOE Tier 3 programme [MOE2014-T3-1-004]
  2. MOE Tier 2 grant [MOE2014-T2-1-080]
  3. Global Research Laboratory through National Research Foundation of Korea (NRF) - Ministry of Science, ICT (Information and Communication Technologies) and Future Planning [2013K1A1A2A02050183]
  4. Eusko Jaurlaritza
  5. Spanish Government MINECO/FEDER [IT588-13, CTQ2016-80955]
  6. CONACyT-Mexico [591700]
  7. National Research Foundation of Korea [2013K1A1A2A02050183] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  8. Grants-in-Aid for Scientific Research [16K13952] Funding Source: KAKEN

向作者/读者索取更多资源

Synthesis of stable open-shell polyradicaloids including control of intramolecular spin-spin interactions is a challenging topic in organic chemistry and materials science. Herein, we report the synthesis and physical characterization of two series of fluorenyl based macrocyclic polyradicaloids. In one series (FR-MCn, n = 4-6), the fluorenyl radicals are directly linked at 3,6-positions; whereas in the other series (MC-FnAn, n = 3-5), an additional ethynylene moiety is inserted between the neighboring fluorenyl units. To access stable macrocyclic polyradicaloids, three synthetic methods were developed. All of these stable macrocycles can be purified by normal silica gel column chromatography under ambient conditions. In all cases, moderate polyradical characters were calculated by restricted active space spin-flip method due to the moderate intramolecular antiferromagnetic spin-spin interactions. The excitation energies from the low-spin ground state to the lowest high-spin excited state were evaluated by superconducting quantum interference device measurements. Their physical properties were also compared with the respective linear fluorenyl radical oligomers (FR-n, n = 3-6). It is found that the geometry, i.e., the distortional angle and spacer (w or w/o ethynylene) between the neighboring fluorenyl units, has significant effect on their polyradical character, excitation energy, one-photon absorption, two-photon absorption and electrochemical properties. In addition, the macrocyclic tetramers FR-MC4 and MC-F4A4 showed global antiaromatic character due to cyclic pi-conjugation with 36 and 44 pi-electrons, respectively.

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