Photoswitchable Intramolecular Through-Space Magnetic Interaction
The interaction between two TEMPO spin centers connected to a photoswitchable overcrowded alkene changes from noncoupled (three-line EPR spectrum) in the trans state, where the two spin centers are separated by ∼22 Å, to strongly coupled (five-line EPR spectrum) in the cis state, where the separatio...
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Published in | Journal of the American Chemical Society Vol. 133; no. 21; pp. 8162 - 8164 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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American Chemical Society
01.06.2011
Amer Chemical Soc |
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ISSN | 0002-7863 1520-5126 1520-5126 |
DOI | 10.1021/ja202882q |
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Abstract | The interaction between two TEMPO spin centers connected to a photoswitchable overcrowded alkene changes from noncoupled (three-line EPR spectrum) in the trans state, where the two spin centers are separated by ∼22 Å, to strongly coupled (five-line EPR spectrum) in the cis state, where the separation is ∼7 Å, upon photoswitching. Importantly, the performance of the alkene switching unit is essentially unaffected by the spin centers. |
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AbstractList | The interaction between two TEMPO spin centers connected to a photoswitchable overcrowded alkene changes from noncoupled (three-line EPR spectrum) in the trans state, where the two spin centers are separated by ∼22 Å, to strongly coupled (five-line EPR spectrum) in the cis state, where the separation is ∼7 Å, upon photoswitching. Importantly, the performance of the alkene switching unit is essentially unaffected by the spin centers. The interaction between two TEMPO spin centers connected to a photoswitchable overcrowded alkene changes from noncoupled (three-line EPR spectrum) in the trans state, where the two spin centers are separated by ∼22 Å, to strongly coupled (five-line EPR spectrum) in the cis state, where the separation is ∼7 Å, upon photoswitching. Importantly, the performance of the alkene switching unit is essentially unaffected by the spin centers.The interaction between two TEMPO spin centers connected to a photoswitchable overcrowded alkene changes from noncoupled (three-line EPR spectrum) in the trans state, where the two spin centers are separated by ∼22 Å, to strongly coupled (five-line EPR spectrum) in the cis state, where the separation is ∼7 Å, upon photoswitching. Importantly, the performance of the alkene switching unit is essentially unaffected by the spin centers. The interaction between two TEMPO spin centers connected to a photoswitchable overcrowded alkene changes from noncoupled (three-line EPR spectrum) in the trans state, where the two spin centers are separated by similar to 22 angstrom, to strongly coupled (five-line EPR spectrum) in the cis state, where the separation is similar to 7 angstrom, upon photoswitching. Importantly, the performance of the alkene switching unit is essentially unaffected by the spin centers. |
Author | Browne, Wesley R Hou, Lili Wang, Jiaobing Feringa, Ben L |
AuthorAffiliation | University of Groningen |
AuthorAffiliation_xml | – name: University of Groningen |
Author_xml | – sequence: 1 givenname: Jiaobing surname: Wang fullname: Wang, Jiaobing – sequence: 2 givenname: Lili surname: Hou fullname: Hou, Lili – sequence: 3 givenname: Wesley R surname: Browne fullname: Browne, Wesley R – sequence: 4 givenname: Ben L surname: Feringa fullname: Feringa, Ben L email: b.l.feringa@rug.nl |
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Title | Photoswitchable Intramolecular Through-Space Magnetic Interaction |
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