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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Zeitschriftenaufsatz | Veröffentlicht | Englisch
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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.
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CHEMICAL COMMUNICATIONS
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18
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2038-2039
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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. doi:10.1039/b407753a
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.

3 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Self-assembly of Gd3+-bound keplerate polyanions into nanoparticles as a route for the synthesis of positive MRI contrast agents. Impact of the structure on the magnetic relaxivity.
Elistratova J, Akhmadeev B, Korenev V, Sokolov M, Nizameev I, Gubaidullin A, Voloshina A, Mustafina A., Soft Matter 14(38), 2018
PMID: 30246848
Tunable Keplerate Type-Cluster "Mo132 " Cavity with Dicarboxylate Anions.
Lai TL, Awada M, Floquet S, Roch-Marchal C, Watfa N, Marrot J, Haouas M, Taulelle F, Cadot E., Chemistry 21(38), 2015
PMID: 26224211

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