Synthesis and coordination chemistry of a water-soluble verdazyl radical. structures and magnetic properties of M(H2O)2(vdCO2)2·2H2O (M = Co, Ni; vdCO2= 1,5-dimethyl-6-oxo-verdazyl-3-carboxylate)

2002 ◽  
pp. 1688-1689 ◽  
Author(s):  
Tosha M. Barclay ◽  
Robin G. Hicks ◽  
Martin T. Lemaire ◽  
Laurence K. Thompson ◽  
Zhiqiang Xu
2003 ◽  
Vol 42 (2) ◽  
pp. 516-524 ◽  
Author(s):  
Brandy A. Harper ◽  
D. Andrew Knight ◽  
Clifford George ◽  
Susan L. Brandow ◽  
Walter J. Dressick ◽  
...  

2005 ◽  
Vol 2005 (19) ◽  
pp. 3884-3893 ◽  
Author(s):  
Ramesh Kapoor ◽  
Ashok Kataria ◽  
Paloth Venugopalan ◽  
Pratibha Kapoor ◽  
Geeta Hundal ◽  
...  

2016 ◽  
Vol 45 (21) ◽  
pp. 8696-8699 ◽  
Author(s):  
Jie Li ◽  
Taishan Wang ◽  
Yongqiang Feng ◽  
Ying Zhang ◽  
Mingming Zhen ◽  
...  

A new water-soluble gadolinium metallofullerenol with an enhanced effective magnetic moment and improved T1-weighted relaxivity and magnetic resonance imaging performance in the liver.


Author(s):  
George E. Kostakis ◽  
Ian J. Hewitt ◽  
Ayuk M. Ako ◽  
Valeriu Mereacre ◽  
Annie K. Powell

With the discovery of the phenomenon of single-molecule magnetism, coordination chemists have turned their attention to synthesizing cluster aggregates of paramagnetic ions. This has led to a plethora of coordination clusters with various topologies and diverse magnetic properties. In this paper, we present ways of describing and understanding such compounds as well as outlining a new approach, which we have recently developed, to describing cluster topology. Our approach is based upon and pays tribute to the huge contribution made to coordination chemistry through the development of the Schläfli symbols for describing architectures. To illustrate the developments that are taking place in modern coordination chemistry, we start with some basic definitions of relevance to what follows. Then we describe approaches to discovering new magnetically interesting 3d/4f clusters, assigning their topological descriptions. Finally, we show how the concepts behind the construction of metal–organic frameworks can be extended to using clusters as nodes in the frameworks to give super metal–organic frameworks.


2012 ◽  
Vol 85 (2) ◽  
pp. 385-396 ◽  
Author(s):  
Luca Gonsalvi ◽  
Antonella Guerriero ◽  
Frédéric Hapiot ◽  
Donald A. Krogstad ◽  
Eric Monflier ◽  
...  

In this article, a brief review of the recent functionalizations of the cage-like water-soluble phosphine 1,3,5-triaza-7-phosphaadamantane (PTA), involving N-quaternization (lower rim) and introduction of a side arm in C-6 position (upper rim) will be presented, highlighting selected examples in their use as ligands for ruthenium(II), iridium(I), and rhodium(I) moieties together with applications of the related complexes in homogeneous catalysis.


2009 ◽  
Vol 62 (9) ◽  
pp. 1142 ◽  
Author(s):  
Christopher J. Sumby ◽  
Ben A. Leita ◽  
Boujemaa Moubaraki ◽  
Keith S. Murray ◽  
Peter J. Steel

The coordination chemistry of three bridging doubly-tridentate ligands, including the known compound 3,6-bis(di-2-pyridylmethyl)pyridazine (1), which is structurally similar to 1,4-bis(di-2-pyridylmethyl)phthalazine (2), and two pyrimidine-linked compounds 4,6-bis(di-2-pyridylmethyl)pyrimidine (3), and 4,6-bis(di-2-pyridylamino)pyrimidine (4), was investigated with FeII, NiII, and PdII metal salts. Ligands 3 and 4 were synthesized in one-pot reactions from easily obtained starting materials; compound 3 was synthesized from di-2-pyridylmethane and 4,6-diiodopyrimidine in 48% yield, while ligand 4 was prepared by reacting di-2-pyridylamine with 4,6-dichloropyrimidine in 27% yield. During the synthesis of 4, an additional compound, 4-chloro-6-(di-2-pyridylamino)pyrimidine (5), with only one tridentate binding site was obtained in 30% yield. Reactions of 1, 3, and 4 with FeII or NiII salts gave two types of complexes, either discrete M2L or M2L2 assemblies. The PdII complexes obtained were also characterized as discrete M2L complexes. The compounds were characterized by a combination of NMR and IR spectroscopy, microanalysis and X-ray crystallography. Noticeable differences in the structures obtained for NiII coordination complexes with the carbon-linked (3) and nitrogen-linked (4) ligands were observed, whereby the nitrogen linker adopted a trigonal planar geometry and prevented tridentate facial coordination of the octahedral metal centres. The magnetic properties of dinuclear FeII complexes of 1 were examined to see if they showed spin-crossover effects, a feature recently observed by others in other dinuclear helicate complexes, but the complexes remained high-spin at all temperatures between 300 and 2 K.


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