En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells
Müller A, Zhou YS, Zhang LJ, Bögge H, Schmidtmann M, Dressel M, van Slageren J (2004)
CHEMICAL COMMUNICATIONS (18): 2038-2039.
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Autor*in
Müller, AchimUniBi ;
Zhou, Y. S.;
Zhang, L. J.;
Bögge, HartmutUniBi;
Schmidtmann, Marc;
Dressel, M;
van Slageren, J
Einrichtung
Abstract / Bemerkung
The highly charged nanocontainer capsule of the type {pentagon}(12){linker}(30) = {(Mo)Mo5O21(H2O)(6)}(12){Mo2O4 (SO4)}(30) with 20 nanosized pores and channels allows the entrance of cations like Pr3+: the latter are positioned at two different sites and have two different coordination shells, corresponding to a coordination chemistry under confined conditions; a fascinating aspect is that capsule encapsulated water shells fixed by hydrogen bonds act formally as polydentate ligands.
Erscheinungsjahr
2004
Zeitschriftentitel
CHEMICAL COMMUNICATIONS
Ausgabe
18
Seite(n)
2038-2039
ISSN
1359-7345
eISSN
1364-548X
Page URI
https://pub.uni-bielefeld.de/record/1606538
Zitieren
Müller A, Zhou YS, Zhang LJ, et al. En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells. CHEMICAL COMMUNICATIONS. 2004;(18):2038-2039.
Müller, A., Zhou, Y. S., Zhang, L. J., Bögge, H., Schmidtmann, M., Dressel, M., & van Slageren, J. (2004). En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells. CHEMICAL COMMUNICATIONS(18), 2038-2039. https://doi.org/10.1039/b407753a
Müller, Achim, Zhou, Y. S., Zhang, L. J., Bögge, Hartmut, Schmidtmann, Marc, Dressel, M, and van Slageren, J. 2004. “En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells”. CHEMICAL COMMUNICATIONS, no. 18: 2038-2039.
Müller, A., Zhou, Y. S., Zhang, L. J., Bögge, H., Schmidtmann, M., Dressel, M., and van Slageren, J. (2004). En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells. CHEMICAL COMMUNICATIONS, 2038-2039.
Müller, A., et al., 2004. En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells. CHEMICAL COMMUNICATIONS, (18), p 2038-2039.
A. Müller, et al., “En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells”, CHEMICAL COMMUNICATIONS, 2004, pp. 2038-2039.
Müller, A., Zhou, Y.S., Zhang, L.J., Bögge, H., Schmidtmann, M., Dressel, M., van Slageren, J.: En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells. CHEMICAL COMMUNICATIONS. 2038-2039 (2004).
Müller, Achim, Zhou, Y. S., Zhang, L. J., Bögge, Hartmut, Schmidtmann, Marc, Dressel, M, and van Slageren, J. “En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells”. CHEMICAL COMMUNICATIONS 18 (2004): 2038-2039.
Daten bereitgestellt von European Bioinformatics Institute (EBI)
3 Zitationen in Europe PMC
Daten bereitgestellt von Europe PubMed Central.
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Elistratova J, Akhmadeev B, Korenev V, Sokolov M, Nizameev I, Gubaidullin A, Voloshina A, Mustafina A., Soft Matter 14(38), 2018
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Lai TL, Awada M, Floquet S, Roch-Marchal C, Watfa N, Marrot J, Haouas M, Taulelle F, Cadot E., Chemistry 21(38), 2015
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Capsules with highly active pores and interiors: versatile platforms at the nanoscale.
Müller A, Gouzerh P., Chemistry 20(17), 2014
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Müller A, Gouzerh P., Chemistry 20(17), 2014
PMID: 24644235
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