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research article

A ruthenium-based metallostar: synthesis, sensitized luminescence and 1H relaxivity

Moriggi, Loïck  
•
Aebischer, Annina
•
Cannizzo, Caroline  
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2009
Dalton Transactions

Ru-based metallostars Na4{Ru[Ln2bpy-DTTA2(H2O)4]3} (Ln = Y, Gd, and Eu) have been self-assembled in aqueous solution and their relaxivity and optical properties unravelled. The ynthesis and the purification of the new, highly stable heptametallic entities have been optimized for the diamagnetic Y3+ complex and followed by 1H NMR. The europium(III) ruthenium-based etallostar {Ru[Eu2bpy-DTTA2(H2O)4]3}4- displays sensitized 5D0 →7FJ luminescence upon excitation of the tris(2,2¢-bipyridyl)ruthenium(II) unit in the ultraviolet around 293 nm, as well as in the visible round 450 nm (1MLCT state). NMRD profiles at two temperatures (25 ◦C and 37 ◦C) were performed n {Ru[Gd2bpy-DTTA2(H2O)4]3}4-. NMRD profiles of the ruthenium-based {Ru[Gd2bpy- TTA2(H2O)4]3}4- and the iron-based {Fe[Gd2bpy-DTTA2(H2O)4]3}4- metallostars were fitted with BM theory coupled to the model-free Lipary-Szabo method for internal motion as well as with the mdified Florence approach. Comparison of both fitting methods shows that the Florence approach is ble to fit NMRD profiles up to 100 MHz, fails however at higher frequencies because it does not ccount for internal motion. Overall, the results detailed point to the heptametallic self-assembled difices being potential relaxivity and luminescence bimodal bioprobes for use in animal odels.

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Type
research article
DOI
10.1039/b818599a
Web of Science ID

WOS:000263990200006

Author(s)
Moriggi, Loïck  
Aebischer, Annina
Cannizzo, Caroline  
Sour, Angélique  
Borel, Alain  
Bünzli, Jean-Claude G.  
Helm, Lothar  
Date Issued

2009

Published in
Dalton Transactions
Issue

12

Start page

2088

End page

2095

Subjects

MRI

•

contrast agent

•

gadolinium

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCIB  
LCSL  
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/42917
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