Pokaż uproszczony rekord

dc.contributor.authorFlamholc, Rafał
dc.contributor.authorPlazuk, Damian
dc.contributor.authorZakrzewski, Janusz
dc.contributor.authorMetivier, Remi
dc.contributor.authorNakatani, Keitaro
dc.contributor.authorMakal, Anna
dc.contributor.authorWozniak, Krzysztof
dc.date.accessioned2014-12-10T13:38:43Z
dc.date.available2014-12-10T13:38:43Z
dc.date.issued2014-06-15
dc.identifier.citationD. Plażuk, J. Zakrzewski, R. Metivier, K. Nakatani, A. Makal, K. Woźniak, A new class of pyrenyl solid-state emitters: 1-pyrenyl ynones. Synthesis via the Friedel–Crafts route, molecular and electronic structure and photophysical properties RSC Adv., 2014, 4, 31594-31601pl_PL
dc.identifier.issn2046-2069
dc.identifier.otherDOI: 10.1039/c4ra03961k
dc.identifier.urihttp://hdl.handle.net/11089/5875
dc.description.abstractFriedel–Crafts acylation of pyrene with alkynoic acids in the presence of trifluoroacetic anhydride and triflic acid constitutes a direct and efficient route to 1-pyrenyl ynones. These compounds in chloroform solution emit fluorescence at longer wavelengths, with higher quantum yields and longer lifetimes than a typical saturated acylpyrene derivative, 1-acetylpyrene. Moreover, in contrast to 1-acetylpyrene, they are moderate solid-state emitters. Comparative DFT studies revealed strong stabilization of the LUMOs of 1-pyrenyl ynones in comparison to the LUMO of 1-acetylpyrene. The single-crystal X-ray structure of 1-(pyren-1-yl)but-2-yn-1-one showed π-interactions of pyrenyl moieties in the crystal lattice. Investigations of the solid-state fluorescence of this compound revealed emission from long-lived excited states, including excimer species.pl_PL
dc.description.sponsorshipFinancial support from the National Science Centre (Grant Harmonia UMO-2012/04/M/ST5/00712) is gratefully acknowledged. This research was also supported in part by the PL-Grid Infrastructure. Publikacja w ramach programu Royal Society of Chemistry "Gold for Gold" 2014 finansowanego przez Uniwersytet Łódzkipl_PL
dc.language.isoenpl_PL
dc.publisherThe Royal Society of Chemistrypl_PL
dc.relation.ispartofseriesRSC Advances;2014,4
dc.rightsUznanie autorstwa-Użycie niekomercyjne 3.0 Polska*
dc.rights.urihttp://creativecommons.org/licenses/by-nc/3.0/pl/*
dc.titleA new class of pyrenyl solid-state emitters: 1-pyrenyl ynones. Synthesis via the Friedel–Crafts route, molecular and electronic structure and photophysical propertiespl_PL
dc.typeArticlepl_PL
dc.page.number31594-31601pl_PL
dc.contributor.authorAffiliationDepartment of Organic Chemistry, Faculty of Chemistry, University of Łódź - Flamholc, Rafał; Płażuk, Damian; Zakrzewski, Januszpl_PL
dc.contributor.authorAffiliationPPSM, ENS Cachan, CNRS - Metivier, Remi; Nakatani, Keitaropl_PL
dc.contributor.authorAffiliationDepartment of Chemistry, Warsaw University, Makal, Anna; Wozniak, Krzysztofpl_PL
dc.referencesT. M. Figueira-Duarte and K. Mullen, ¨ Chem. Rev., 2011, 111, 7260–7314pl_PL
dc.referencesF. Ciardelli, G. Ruggeri and A. Pucci, Chem. Soc. Rev., 2013, 42, 857–870.pl_PL
dc.referencesA. M. Breul, M. D. Hager and U. S. Schubert, Chem. Soc. Rev., 2013, 42, 5366–5407pl_PL
dc.referencesG. Drummen, Molecules, 2012, 17, 14067–14090.pl_PL
dc.referencesG. Bains, A. B. Patel and V. Narayanaswami, Molecules, 2011, 16, 7909–7935pl_PL
dc.referencesR. M´etivier, I. Leray, M. Roy-Auberger, N. Zanier-Szydlowski and B. Valeur, New J. Chem., 2002, 26, 411–415.pl_PL
dc.referencesR. M´etivier, I. Leray, J.-P. Lefevre, M. Roy-Auberger, N. ZanierSzydlowski and B. Valeur, Phys. Chem. Chem. Phys., 2003, 5, 758–766.pl_PL
dc.referencesA. Bencini and V. Lippolis, Coord. Chem. Rev., 2012, 256, 149– 169.pl_PL
dc.referencesJ. Xie, M. M´enand, S. Maisonneuve and R. M´etivier, J. Org. Chem., 2007, 72, 5980–5985pl_PL
dc.referencesL. Z¨ophel, V. Enkelmann and K. Mullen, ¨ Org. Lett., 2013, 15, 804–807.pl_PL
dc.referencesX. Feng, J.-Y. Hu, F. Iwanaga, N. Seto, C. Redshaw, M. R. J. Elsegood and T. Yamato, Org. Lett., 2013, 15, 1318– 1321.pl_PL
dc.referencesY. Niko, S. Kawauchi, S. Otsu, K. Tokumaru and G.-i. Konishi, J. Org. Chem., 2013, 78, 3196–3207pl_PL
dc.referencesM. Ottonelli, M. Piccardo, D. Duce, S. Thea and G. Dellepiane, J. Phys. Chem. A, 2012, 116, 611–630.pl_PL
dc.referencesC. X. Yao, H. B. Kraatz and R. P. Steer, Photochem. Photobiol. Sci., 2005, 4, 191–199.pl_PL
dc.referencesY. Niko, Y. Hiroshige, S. Kawauchi and G.-i. Konishi, Tetrahedron, 2012, 68, 6177–6185pl_PL
dc.referencesY. Niko, Y. Hiroshige, S. Kawauchi and G. I. Konishi, J. Org. Chem., 2012, 77, 3986–3996.pl_PL
dc.referencesY. Niko, S. Kawauchi and G. I. Konishi, Tetrahedron Lett., 2011, 52, 4843–4847.pl_PL
dc.referencesA. Jana, S. Atta, S. K. Sarkar and N. D. P. Singh, Tetrahedron, 2010, 66, 9798–9807.pl_PL
dc.referencesK. Szczubiałka, Ł. Moczek, A. Goliszek, M. Nowakowska, A. Kotzev and A. Laschewsky, J. Fluorine Chem., 2005, 126, 1409–1418.pl_PL
dc.referencesL. Bucsiova, P. Hrdloviˇc and ˇS. Chmela, J. Photochem. Photobiol., A, 2001, 143, 59–68.pl_PL
dc.referencesY. Niko and G.-i. Konishi, J. Synth. Org. Chem Jpn., 2012, 70, 918–927.pl_PL
dc.referencesD. A. Fleming, C. J. Thode and M. E. Williams, Chem. Mater., 2006, 18, 2327–2334.pl_PL
dc.referencesS. P. Sau and P. J. Hrdlicka, J. Org. Chem., 2011, 77, 5–16pl_PL
dc.referencesD. Pla˙zuk and J. Zakrzewski, J. Organomet. Chem., 2009, 694, 1802–1806.pl_PL
dc.referencesB. Willy and T. J. J. Muller, ¨ ARKIVOC, 2008, i, 195–208pl_PL
dc.referencesM. Navidi and B. Movassagh, Monatsh. Chem., 2013, 144, 1363–1367.pl_PL
dc.referencesW. Sun, Y. Wang, X. Wu and X. Yao, Green Chem., 2013, 15, 2356–2360pl_PL
dc.referencesB. Huang, L. Yin and M. Cai, New J. Chem., 2013, 37, 3137– 3144pl_PL
dc.referencesM. Navidi, B. Movassagh and S. Rayati, Appl. Catal., A, 2013, 452, 24–28.pl_PL
dc.referencesN. M. Carballeira, Chem. Phys. Lipids, 2013, 172–173, 58–66pl_PL
dc.referencesU. Koch and P. L. A. Popelier, J. Phys. Chem., 1995, 99, 9747– 9754.pl_PL
dc.referencesV. Karunakaran, D. D. Prabhu and S. Das, J. Phys. Chem. C, 2013, 117, 9404–9415pl_PL
dc.referencesU. R¨osch, S. Yao, R. Wortmann and F. Wurthner, ¨ Angew. Chem., Int. Ed., 2006, 45, 7026–7030.pl_PL
dc.referencesS. Varghese and S. Das, J. Phys. Chem. Lett., 2011, 2, 863–873pl_PL
dc.referencesS. P. Anthony, ChemPlusChem, 2012, 77, 518–531.pl_PL
dc.referencesM. Shimizu and T. Hiyama, Chem.–Asian J., 2010, 5, 1516– 1531.pl_PL
dc.referencesY. Hong, J. W. Y. Lam and B. Z. Tang, Chem. Commun., 2009, 4332–4353.pl_PL
dc.referencesQ. Feng, M. Wang, B. Dong, C. Xu, J. Zhao and H. Zhang, CrystEngComm, 2013, 15, 3623–3629pl_PL
dc.referencesP. Kotchapradist, N. Prachumrak, R. Tarsang, S. Jungsuttiwong, T. Keawin, T. Sudyoadsuk and V. Promarak, J. Mater. Chem. C, 2013, 1, 4916–4924.pl_PL
dc.referencesY. Li, D. Wang, L. Wang, Z. Li, Q. Cui, H. Zhang and H. Yang, J. Lumin., 2012, 132, 1010–1014.pl_PL
dc.referencesD. Plażuk, J. Zakrzewski, K. Nakatani, A. Makal, K. Woźniak and S. Domagala, RSC Adv., 2012, 2, 3512–3524.pl_PL
dc.contributor.authorEmailjanzak@uni.lodz.plpl_PL


Pliki tej pozycji

Thumbnail
Thumbnail
Thumbnail
Thumbnail
Thumbnail

Pozycja umieszczona jest w następujących kolekcjach

Pokaż uproszczony rekord

Uznanie autorstwa-Użycie niekomercyjne 3.0 Polska
Poza zaznaczonymi wyjątkami, licencja tej pozycji opisana jest jako Uznanie autorstwa-Użycie niekomercyjne 3.0 Polska