Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives

Müller A, Das SK, Talismanov S, Roy S, Beckmann E, Bögge H, Schmidtmann M, Merca A, Berkle A, Allouche L, Zhou YS, et al. (2003)
Angewandte Chemie. International Edition 42(41): 5039-5044.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Müller, AchimUniBi ; Das, Samar K.; Talismanov, S.; Roy, S.; Beckmann, E.; Bögge, HartmutUniBi; Schmidtmann, Marc; Merca, AliceUniBi; Berkle, A.; Allouche, L.; Zhou, Y. S.; Zhang, L. J.
Alle
Stichworte
ion transport/uptake; encapsulation; porous materials; confined geometries; nanotechnology
Erscheinungsjahr
2003
Zeitschriftentitel
Angewandte Chemie. International Edition
Band
42
Ausgabe
41
Seite(n)
5039-5044
ISSN
1433-7851
eISSN
1521-3773
Page URI
https://pub.uni-bielefeld.de/record/1609821

Zitieren

Müller A, Das SK, Talismanov S, et al. Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives. Angewandte Chemie. International Edition. 2003;42(41):5039-5044.
Müller, A., Das, S. K., Talismanov, S., Roy, S., Beckmann, E., Bögge, H., Schmidtmann, M., et al. (2003). Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives. Angewandte Chemie. International Edition, 42(41), 5039-5044. https://doi.org/10.1002/anie.200352358
Müller, Achim, Das, Samar K., Talismanov, S., Roy, S., Beckmann, E., Bögge, Hartmut, Schmidtmann, Marc, et al. 2003. “Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives”. Angewandte Chemie. International Edition 42 (41): 5039-5044.
Müller, A., Das, S. K., Talismanov, S., Roy, S., Beckmann, E., Bögge, H., Schmidtmann, M., Merca, A., Berkle, A., Allouche, L., et al. (2003). Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives. Angewandte Chemie. International Edition 42, 5039-5044.
Müller, A., et al., 2003. Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives. Angewandte Chemie. International Edition, 42(41), p 5039-5044.
A. Müller, et al., “Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives”, Angewandte Chemie. International Edition, vol. 42, 2003, pp. 5039-5044.
Müller, A., Das, S.K., Talismanov, S., Roy, S., Beckmann, E., Bögge, H., Schmidtmann, M., Merca, A., Berkle, A., Allouche, L., Zhou, Y.S., Zhang, L.J.: Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives. Angewandte Chemie. International Edition. 42, 5039-5044 (2003).
Müller, Achim, Das, Samar K., Talismanov, S., Roy, S., Beckmann, E., Bögge, Hartmut, Schmidtmann, Marc, Merca, Alice, Berkle, A., Allouche, L., Zhou, Y. S., and Zhang, L. J. “Trapping cations in specific positions in tuneable "artificial cell" channels: New nanochemistry perspectives”. Angewandte Chemie. International Edition 42.41 (2003): 5039-5044.

20 Zitationen in Europe PMC

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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.
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Achim Müller. Interview by Guido Clever.
Müller A., Angew Chem Int Ed Engl 52(3), 2013
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Real-time ion-flux imaging in the growth of micrometer-scale structures and membranes.
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En route to coordination chemistry under confined conditions in a porous capsule: Pr3+ with different coordination shells.
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