Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state?
Polycyclic aromatic hydrocarbons with an open-shell singlet biradical ground state are of fundamental interest and have potential applications in materials science. However, the inherent high reactivity makes their synthesis and characterization very challenging. In this work, a convenient synthetic...
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sg-ntu-dr.10356-975772020-03-07T12:34:44Z Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? Li, Yuan Heng, Wee-Kuan Lee, Byung Sun Aratani, Naoki Zafra, José L. Bao, Nina Lee, Richmond Sung, Young Mo Sun, Zhe Huang, Kuo-Wei Webster, Richard David López Navarrete, Juan T. Kim, Dongho Osuka, Atsuhiro Casado, Juan Ding, Jun Wu, Jishan School of Physical and Mathematical Sciences Polycyclic aromatic hydrocarbons with an open-shell singlet biradical ground state are of fundamental interest and have potential applications in materials science. However, the inherent high reactivity makes their synthesis and characterization very challenging. In this work, a convenient synthetic route was developed to synthesize two kinetically blocked heptazethrene (HZ-TIPS) and octazethrene (OZ-TIPS) compounds with good stability. Their ground-state electronic structures were systematically investigated by a combination of different experimental methods, including steady-state and transient absorption spectroscopy, variable temperature NMR, electron spin resonance (ESR), superconducting quantum interfering device (SQUID), FT Raman, and X-ray crystallographic analysis, assisted by unrestricted symmetry-broken density functional theory (DFT) calculations. All these demonstrated that the heptazethrene derivative HZ-TIPS has a closed-shell ground state while its octazethrene analogue OZ-TIPS with a smaller energy gap exists as an open-shell singlet biradical with a large measured biradical character (y = 0.56). Large two-photon absorption (TPA) cross sections (σ(2)) were determined for HZ-TIPS (σ(2)max = 920 GM at 1250 nm) and OZ-TIPS (σ(2)max = 1200 GM at 1250 nm). In addition, HZ-TIPS and OZ-TIPS show a closely stacked 1D polymer chain in single crystals. 2013-07-12T02:05:29Z 2019-12-06T19:44:15Z 2013-07-12T02:05:29Z 2019-12-06T19:44:15Z 2012 2012 Journal Article Li, Y., Heng, W.-K., Lee, B. S., Aratani, N., Zafra, J. L., Bao, N., et al. (2012). Kinetically Blocked Stable Heptazethrene and Octazethrene: Closed-Shell or Open-Shell in the Ground State? Journal of the American Chemical Society, 134(36), 14913-14922. https://hdl.handle.net/10356/97577 http://hdl.handle.net/10220/11258 10.1021/ja304618v en Journal of the American chemical society © 2012 American Chemical Society. |
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Polycyclic aromatic hydrocarbons with an open-shell singlet biradical ground state are of fundamental interest and have potential applications in materials science. However, the inherent high reactivity makes their synthesis and characterization very challenging. In this work, a convenient synthetic route was developed to synthesize two kinetically blocked heptazethrene (HZ-TIPS) and octazethrene (OZ-TIPS) compounds with good stability. Their ground-state electronic structures were systematically investigated by a combination of different experimental methods, including steady-state and transient absorption spectroscopy, variable temperature NMR, electron spin resonance (ESR), superconducting quantum interfering device (SQUID), FT Raman, and X-ray crystallographic analysis, assisted by unrestricted symmetry-broken density functional theory (DFT) calculations. All these demonstrated that the heptazethrene derivative HZ-TIPS has a closed-shell ground state while its octazethrene analogue OZ-TIPS with a smaller energy gap exists as an open-shell singlet biradical with a large measured biradical character (y = 0.56). Large two-photon absorption (TPA) cross sections (σ(2)) were determined for HZ-TIPS (σ(2)max = 920 GM at 1250 nm) and OZ-TIPS (σ(2)max = 1200 GM at 1250 nm). In addition, HZ-TIPS and OZ-TIPS show a closely stacked 1D polymer chain in single crystals. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Li, Yuan Heng, Wee-Kuan Lee, Byung Sun Aratani, Naoki Zafra, José L. Bao, Nina Lee, Richmond Sung, Young Mo Sun, Zhe Huang, Kuo-Wei Webster, Richard David López Navarrete, Juan T. Kim, Dongho Osuka, Atsuhiro Casado, Juan Ding, Jun Wu, Jishan |
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Article |
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Li, Yuan Heng, Wee-Kuan Lee, Byung Sun Aratani, Naoki Zafra, José L. Bao, Nina Lee, Richmond Sung, Young Mo Sun, Zhe Huang, Kuo-Wei Webster, Richard David López Navarrete, Juan T. Kim, Dongho Osuka, Atsuhiro Casado, Juan Ding, Jun Wu, Jishan |
spellingShingle |
Li, Yuan Heng, Wee-Kuan Lee, Byung Sun Aratani, Naoki Zafra, José L. Bao, Nina Lee, Richmond Sung, Young Mo Sun, Zhe Huang, Kuo-Wei Webster, Richard David López Navarrete, Juan T. Kim, Dongho Osuka, Atsuhiro Casado, Juan Ding, Jun Wu, Jishan Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? |
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Li, Yuan |
title |
Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? |
title_short |
Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? |
title_full |
Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? |
title_fullStr |
Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? |
title_full_unstemmed |
Kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? |
title_sort |
kinetically blocked stable heptazethrene and octazethrene : closed-shell or open-shell in the ground state? |
publishDate |
2013 |
url |
https://hdl.handle.net/10356/97577 http://hdl.handle.net/10220/11258 |
_version_ |
1681043449702252544 |