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7. (a) Williams, A. (1997) Helical complexes and beyond. Chem. Eur. J. , 3 , 15-19; (b) Piguet, C.,
Bernardinelli, G., and Hopfgartner, G. (1997) Helicates as versatile supramolecular complexes.
Chem. Rev. , 97 , 2005-2062. (c) Albrecht, M. (1998) Dicatechol ligands: novel building-blocks
for metallo-supramolecular chemistry. Chem. Soc. Rev. , 27 , 281-287. (d) Caulder, D.L. and
Raymond, K.N. (1999) Supermolecules by Design. Acc. Chem. Res. , 32 , 975-982. (e) Albrecht,
M. (2000) How do they know? Influencing the relative stereochemistry of the complex units of
dinuclear triple-stranded helicate-type complexes. Chem. Eur. J. , 6 , 3485-3489. (f) Albrecht,
M. (2000) From molecular diversity to template-directed self-assembly - new trends in
metallo-supramolecular chemistry. J. Inclus. Phenom. Macrocycl. Chem. , 36 , 127-151.
(g) Albrecht, M. (2001) “Let's twist again” - double-stranded, triple-stranded, and circular
helicates. Chem. Rev. , 101 , 3457-3497. (h) Bunzli, J.-C.G. and Piguet, C. (2002) Lanthanide-
containing molecular and supramolecular polymetallic functional assemblies. Chem. Rev. , 102 ,
1897-1928. (i) Mamula, O. and von Zelewski, A. (2003) Supramolecuklar coordination com-
pounds with chiral pyridine and polypyridine ligands derived from terpenes. Coord. Chem.
Rev. , 242 , 87-95. (j) Hannon, M.J. and Childs, L.J. (2004) Helices and helicates: beautiful
supramolcular motifs with emerging applications. Supramol. Chem. , 16 , 7-22. (k) Albrecht, M.
(2004) Supramolecular templating in the formation of helicates. Top. Curr. Chem. , 248 , 105-
139. (l) Piguet, C., Borkovec, M., Hamkacek, J., and Zeckert, K. (2005) Strict self-assembly of
polymetallic helicates: the concept behind the semantics. Coord. Chem. Rev. , 249 , 705-726.
(m) He, C., Zhao, Y., Guo, D. et al. (2007) Chirality transfer through helical motifs in coordina-
tion compounds. Eur. J. Inorg. Chem. , 2007 , 3451-3463. (n) Albrecht, M. and Frohlich, R.
(2007) Symmetry driven self-assembly of metallo-supramolecular architectures. Bull. Chem.
Soc. Jpn , 80 , 797-808.
8. For an overview on different aspects of supramolecular chirality see : Crego-Calama, M. and
Reinhoudt, D.N. (2006) Top. Curr. Chem. , 265 .
9. Reviews and books on the stereoselective synthesis of coordination compounds: (a) von Zelew-
sky, A. (1996) Stereoschemistry of Coordination Compounds , John Wiley & Sons, Inc., New
York, (b) von Zelewsky, A. (1999) Stereoselective synthesis of coordination compounds.
Coord. Chem. Rev. , 190-192 , 811-825; (c) Knof, U. and von Zelewsky, A. (1999) Predeter-
mined chirality at metal centers. Angew. Chem. Int. Ed. , 38 , 302-322; (d) von Zelewsky, A.
and Mamula, O. (2000) The bright future of stereoselective synthesis of co-ordination com-
pounds. J. Chem. Soc. Dalton Trans. , 2000 , 219-231; (e) Amouri, H. and Gruselle, M. (2008)
Chirality in Transition Metal Chemistry , John Wiley & Sons, Inc., New York.
10. (a) Kersting, B., Meyer, M., Powers, R.E., and Raymond, K.N. (1996) Dinuclear catecholate
helicates: their inversion mechanism. J. Am. Chem. Soc. , 118 , 7221-7222; (b) Meyer, M., Ker-
sting, B., Powers, R.E., and Raymond, K.N. (1997) Rearrangement reactions in dinuclear triple
helicates. Inorg. Chem. , 36 , 5179-5191.
11. Baxter, P.N.W., Lehn, J.-M., Baum, G., and Fenske, D. (2000) Self-assembly and structure of
interconverting multinuclear inorganic arrays: A [45]-Ag 20 grid and an Ag 10 quadruple heli-
cate. Chem. Eur. J. , 6 , 4510-4517.
12. Hamblin, J., Jackson, A., Alcock, N.W., and Hannon, M.J. (2002) Triple helicates and planar
dimers arising from silver(I) coordination to directly linked bis-pyrdiylimine ligands. J. Chem.
Soc. Dalton Trans. , 2002 , 1635-1641.
13. Hasenknopf, B., Lehn, J.-M., Kneisel, B.O. et al. (1996) Self-assembly of a circular double
helicate. Angew. Chem. Int. Ed. , 35 , 1838-1840.
14. (a) Albrecht, M. and Kotila, S. (1996) Counter-ion induced self-assembly of a meso-
helicate type molecular box. Chem. Commun. , 1996 , 2309-2310; (b) Albrecht, M. (1997)
Self-assembly of dinuclear CH 2 -bridged titanium(IV)/catecholate complexes: influence of
the counterions and of methyl substitutents in the ligands. Chem.Eur.J. , 3 , 1466-1471;
(c) Albrecht, M., Schneider, M., and Rottele, H. (1999) Template-directed self-recognition
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