AXIALLY CHIRAL CATENANES AND PI-ELECTRON-DEFICIENT RECEPTORS
Citation
M. Asakawa et al., AXIALLY CHIRAL CATENANES AND PI-ELECTRON-DEFICIENT RECEPTORS, Chemistry, 3(3), 1997, pp. 463-481
Categorie Soggetti
Chemistry
SICI code
0947-6539(1997)3:3<463:ACCAPR>2.0.ZU;2-D
Abstract
The design of a new class of chiral [2]catenanes is reported. The self
-assembly of [2]catenanes comprising one or two 3,3'-bitolyl spacers i
n the pi-electron-deficient component, and bis-p-phenylene-34-crown-10
(BPP34C10) as the pi-electron-rich component, is described. The X-ray
crystal structures, together with solution-state dynamic H-1 NMR spec
troscopic studies, show that the degree of order characterizing the mo
lecular structures is substantially different from that of the ''paren
t'' [2]-catenane, comprising cyclobis(paraquat-p-phenylene) and BPP34C
10. When appropriately substituted in their ortho positions, bitolyl c
ompounds can support axial chirality: the self-assembly of axially chi
ral [2]catenanes, comprising one or two 3,3'-disubstituted-2,2'-dihydr
oxy-1,1'-binaphthyl spacers, has been achieved in good yields, showing
that the introduction of the bulky, axially chiral spacer and the con
sequent distortion of the cavity of the pi-electron-deficient componen
t still permits good molecular recognition between the components lead
ing to efficient catenane production. X-ray crystallography suggests t
hat this recognition is driven by hydrogen bonding and pi-pi stacking
interactions between the complementary subunits. The hydroxyl groups o
n the chiral spacer were further functionalized as benzoyl esters in a
[2]catenane as well as in the tetracationic cyclophanes; that is, che
mistry can be done on these catenanes. The chiral tetracationic cyclop
hanes exhibit good enantiomeric differentiation toward the D- and L-en
antiomers of aromatic amino acids in water and their N-acetylated deri
vatives in organic solvents.