Synthesis and Characterization of Bisthienylethene‐Porphyrin Photoswitchable Copolymers
The bisthienylethene (BTE) class is one of the most intensely studied type of photochromatic dye which attract great attention from researchers seeking to exploit light responsive switches in an extensive diversity of fields. BTE is the subject of many avenues of research. We report here the synthes...
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Published in | European journal of organic chemistry Vol. 2021; no. 48; pp. 6636 - 6645 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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Weinheim
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28.12.2021
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Abstract | The bisthienylethene (BTE) class is one of the most intensely studied type of photochromatic dye which attract great attention from researchers seeking to exploit light responsive switches in an extensive diversity of fields. BTE is the subject of many avenues of research. We report here the synthesis of a new diarylethene‐porphyrin photoswitchable copolymer via the electropolymerization of zinc octaethyl porphyrin and pyridine substituted diarylethene. The electropolymerization was monitored by electrochemical quartz crystal microbalance (EQCM). The copolymer was characterized by electrochemistry, UV‐Vis spectroscopy, X‐ray photoelectron spectroscopy (XPS), and atomic force microscopy (AFM). The incorporated diarylethene maintains its reversible photochromism upon the UV‐Vis radiation with multiple cycles of ring‐opening and closing. Attention is focused on the ways the polymer environment affects BTE photochromism.
The synthesis of a new diarylethene‐porphyrin photoswitchable copolymer through the electropolymerization of zinc octaethyl porphyrin and pyridine substituted diarylethene is reported. The incorporated diarylethene maintains its reversible photochromism upon exposure to UV‐Vis radiation with multiple cycles of ring opening and closing. |
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AbstractList | The bisthienylethene (BTE) class is one of the most intensely studied type of photochromatic dye which attract great attention from researchers seeking to exploit light responsive switches in an extensive diversity of fields. BTE is the subject of many avenues of research. We report here the synthesis of a new diarylethene‐porphyrin photoswitchable copolymer via the electropolymerization of zinc octaethyl porphyrin and pyridine substituted diarylethene. The electropolymerization was monitored by electrochemical quartz crystal microbalance (EQCM). The copolymer was characterized by electrochemistry, UV‐Vis spectroscopy, X‐ray photoelectron spectroscopy (XPS), and atomic force microscopy (AFM). The incorporated diarylethene maintains its reversible photochromism upon the UV‐Vis radiation with multiple cycles of ring‐opening and closing. Attention is focused on the ways the polymer environment affects BTE photochromism. The bisthienylethene (BTE) class is one of the most intensely studied type of photochromatic dye which attract great attention from researchers seeking to exploit light responsive switches in an extensive diversity of fields. BTE is the subject of many avenues of research. We report here the synthesis of a new diarylethene‐porphyrin photoswitchable copolymer via the electropolymerization of zinc octaethyl porphyrin and pyridine substituted diarylethene. The electropolymerization was monitored by electrochemical quartz crystal microbalance (EQCM). The copolymer was characterized by electrochemistry, UV‐Vis spectroscopy, X‐ray photoelectron spectroscopy (XPS), and atomic force microscopy (AFM). The incorporated diarylethene maintains its reversible photochromism upon the UV‐Vis radiation with multiple cycles of ring‐opening and closing. Attention is focused on the ways the polymer environment affects BTE photochromism. The synthesis of a new diarylethene‐porphyrin photoswitchable copolymer through the electropolymerization of zinc octaethyl porphyrin and pyridine substituted diarylethene is reported. The incorporated diarylethene maintains its reversible photochromism upon exposure to UV‐Vis radiation with multiple cycles of ring opening and closing. |
Author | Ibrahim, Helen Boudon, Corinne Xu, Hualong Ruhlmann, Laurent Huo, Zhaohui Badets, Vasilica Yi, Tao Goldmann, Michel |
Author_xml | – sequence: 1 givenname: Zhaohui surname: Huo fullname: Huo, Zhaohui organization: Guangdong University of Education – sequence: 2 givenname: Vasilica surname: Badets fullname: Badets, Vasilica organization: Institut de Chimie, UMR CNRS 7177 – sequence: 3 givenname: Helen surname: Ibrahim fullname: Ibrahim, Helen organization: Université Paris 6 – sequence: 4 givenname: Michel surname: Goldmann fullname: Goldmann, Michel organization: Université Paris Descartes – sequence: 5 givenname: Hualong surname: Xu fullname: Xu, Hualong organization: Fudan University – sequence: 6 givenname: Tao surname: Yi fullname: Yi, Tao organization: Fudan University – sequence: 7 givenname: Corinne surname: Boudon fullname: Boudon, Corinne organization: Institut de Chimie, UMR CNRS 7177 – sequence: 8 givenname: Laurent orcidid: 0000-0003-1154-2422 surname: Ruhlmann fullname: Ruhlmann, Laurent email: lruhlmann@unistra.fr organization: Institut de Chimie, UMR CNRS 7177 |
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Snippet | The bisthienylethene (BTE) class is one of the most intensely studied type of photochromatic dye which attract great attention from researchers seeking to... |
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SubjectTerms | Atomic force microscopy Bisthienylethene Chemical Sciences Copolymers Electrochemistry Electropolymerization Inorganic chemistry Photochromism Photocyclisation Photoelectrons Polymer Polymerization Porphyrin Porphyrins Quartz crystals Spectrum analysis Switches X ray photoelectron spectroscopy |
Title | Synthesis and Characterization of Bisthienylethene‐Porphyrin Photoswitchable Copolymers |
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