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Article: Radically enhanced molecular switches
Title | Radically enhanced molecular switches |
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Authors | |
Issue Date | 2012 |
Citation | Journal of the American Chemical Society, 2012, v. 134, n. 39, p. 16275-16288 How to Cite? |
Abstract | The mechanism governing the redox-stimulated switching behavior of a tristable [2]rotaxane consisting of a cyclobis(paraquat-p-phenylene) (CBPQT 4+) ring encircling a dumbbell, containing tetrathiafulvalene (TTF) and 1,5-dioxynaphthalene (DNP) recognition units which are separated from each other along a polyether chain carrying 2,6-diisopropylphenyl stoppers by a 4,4′-bipyridinium (BIPY 2+) unit, is described. The BIPY 2+ unit acts to increase the lifetime of the metastable state coconformation (MSCC) significantly by restricting the shuttling motion of the CBPQT 4+ ring to such an extent that the MSCC can be isolated in the solid state and is stable for weeks on end. As controls, the redox-induced mechanism of switching of two bistable [2]rotaxanes and one bistable [2]catenane composed of CBPQT 4+ rings encircling dumbbells or macrocyclic polyethers, respectively, that contain a BIPY 2+ unit with either a TTF or DNP unit, is investigated. Variable scan-rate cyclic voltammetry and digital simulations of the tristable and bistable [2]rotaxanes and [2]catenane reveal a mechanism which involves a bisradical state coconformation (BRCC) in which only one of the BIPY •+ units in the CBPQT 2(•+) ring is oxidized to the BIPY 2+ dication. This observation of the BRCC was further confirmed by theoretical calculations as well as by X-ray crystallography of the [2]catenane in its bisradical tetracationic redox state. It is evident that the incorporation of a kinetic barrier between the donor recognition units in the tristable [2]rotaxane can prolong the lifetime and stability of the MSCC, an observation which augurs well for the development of nonvolatile molecular flash memory devices. © 2012 American Chemical Society. |
Persistent Identifier | http://hdl.handle.net/10722/332998 |
ISSN | 2023 Impact Factor: 14.4 2023 SCImago Journal Rankings: 5.489 |
ISI Accession Number ID |
DC Field | Value | Language |
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dc.contributor.author | Fahrenbach, Albert C. | - |
dc.contributor.author | Zhu, Zhixue | - |
dc.contributor.author | Cao, Dennis | - |
dc.contributor.author | Liu, Wei Guang | - |
dc.contributor.author | Li, Hao | - |
dc.contributor.author | Dey, Sanjeev K. | - |
dc.contributor.author | Basu, Subhadeep | - |
dc.contributor.author | Trabolsi, Ali | - |
dc.contributor.author | Botros, Youssry Y. | - |
dc.contributor.author | Goddard, William A. | - |
dc.contributor.author | Stoddart, J. Fraser | - |
dc.date.accessioned | 2023-10-06T05:15:59Z | - |
dc.date.available | 2023-10-06T05:15:59Z | - |
dc.date.issued | 2012 | - |
dc.identifier.citation | Journal of the American Chemical Society, 2012, v. 134, n. 39, p. 16275-16288 | - |
dc.identifier.issn | 0002-7863 | - |
dc.identifier.uri | http://hdl.handle.net/10722/332998 | - |
dc.description.abstract | The mechanism governing the redox-stimulated switching behavior of a tristable [2]rotaxane consisting of a cyclobis(paraquat-p-phenylene) (CBPQT 4+) ring encircling a dumbbell, containing tetrathiafulvalene (TTF) and 1,5-dioxynaphthalene (DNP) recognition units which are separated from each other along a polyether chain carrying 2,6-diisopropylphenyl stoppers by a 4,4′-bipyridinium (BIPY 2+) unit, is described. The BIPY 2+ unit acts to increase the lifetime of the metastable state coconformation (MSCC) significantly by restricting the shuttling motion of the CBPQT 4+ ring to such an extent that the MSCC can be isolated in the solid state and is stable for weeks on end. As controls, the redox-induced mechanism of switching of two bistable [2]rotaxanes and one bistable [2]catenane composed of CBPQT 4+ rings encircling dumbbells or macrocyclic polyethers, respectively, that contain a BIPY 2+ unit with either a TTF or DNP unit, is investigated. Variable scan-rate cyclic voltammetry and digital simulations of the tristable and bistable [2]rotaxanes and [2]catenane reveal a mechanism which involves a bisradical state coconformation (BRCC) in which only one of the BIPY •+ units in the CBPQT 2(•+) ring is oxidized to the BIPY 2+ dication. This observation of the BRCC was further confirmed by theoretical calculations as well as by X-ray crystallography of the [2]catenane in its bisradical tetracationic redox state. It is evident that the incorporation of a kinetic barrier between the donor recognition units in the tristable [2]rotaxane can prolong the lifetime and stability of the MSCC, an observation which augurs well for the development of nonvolatile molecular flash memory devices. © 2012 American Chemical Society. | - |
dc.language | eng | - |
dc.relation.ispartof | Journal of the American Chemical Society | - |
dc.title | Radically enhanced molecular switches | - |
dc.type | Article | - |
dc.description.nature | link_to_subscribed_fulltext | - |
dc.identifier.doi | 10.1021/ja306044r | - |
dc.identifier.scopus | eid_2-s2.0-84867087723 | - |
dc.identifier.volume | 134 | - |
dc.identifier.issue | 39 | - |
dc.identifier.spage | 16275 | - |
dc.identifier.epage | 16288 | - |
dc.identifier.eissn | 1520-5126 | - |
dc.identifier.isi | WOS:000309335000032 | - |