The syntheses and cation recognition studies of two novel heteroditopic [2]catenanes that are capable of reversible rotary motion are described. Prepared by chloride anion templation, both catenanes possess a calixdiquinone unit able to bind Na+, K+, NH4+ and Ba2+ cations. Following characterization of thesalts of both catenanes by NMR, mass spectrometry and crystal structure determination, hexafluorophosphate salts were investigated for their behaviour upon addition of cations. Ba2+ complexation caused a partial intra-ring rotation of the two macrocycles in both species, which was reversed upon addition of the sequestering SO42- anion. © The Royal Society of Chemistry 2011
A novel [2]catenane is synthesized in good yield from an upper-rim functionalized calix[4]arene macr...
This thesis is concerned with the synthesis and study of novel anion templated rotaxanes and catenan...
Catenanes - molecules consisting of interlocked macrocyclic rings - have been prepared by templation...
The syntheses and cation recognition studies of two novel heteroditopic [2]catenanes that are capabl...
A heteroditopic [2]rotaxane consisting of a calix[4]diquinone-isophthalamide macrocycle and 3,5-bis-...
An anion templated double cyclization strategy to synthesize [2]catenanes in which two identical acy...
A novel anion templation route has been developed to synthesise two new catenanes, which are observe...
The lure of self-assembly lies in its capability to construct complex covalent molecular architectur...
The first example of a catenane capable of performing circumrotation via an anion switching methodol...
A novel anion templation route has been developed to synthesise two new catenanes, which are observe...
Chloride locks the rings: Debenzylation of a chloride-templated N-benzyl pyridinium catenane, allows...
We present the rational design and anion-binding properties of the first anion-templated pseudorotax...
We present the rational design and anion-binding properties of the first anion-templated pseudorotax...
This thesis describes the construction and exploration of a variety of interlocked structures that e...
Chloride locks the rings: Debenzylation of a chloride-templated N-benzyl pyridinium catenane, allows...
A novel [2]catenane is synthesized in good yield from an upper-rim functionalized calix[4]arene macr...
This thesis is concerned with the synthesis and study of novel anion templated rotaxanes and catenan...
Catenanes - molecules consisting of interlocked macrocyclic rings - have been prepared by templation...
The syntheses and cation recognition studies of two novel heteroditopic [2]catenanes that are capabl...
A heteroditopic [2]rotaxane consisting of a calix[4]diquinone-isophthalamide macrocycle and 3,5-bis-...
An anion templated double cyclization strategy to synthesize [2]catenanes in which two identical acy...
A novel anion templation route has been developed to synthesise two new catenanes, which are observe...
The lure of self-assembly lies in its capability to construct complex covalent molecular architectur...
The first example of a catenane capable of performing circumrotation via an anion switching methodol...
A novel anion templation route has been developed to synthesise two new catenanes, which are observe...
Chloride locks the rings: Debenzylation of a chloride-templated N-benzyl pyridinium catenane, allows...
We present the rational design and anion-binding properties of the first anion-templated pseudorotax...
We present the rational design and anion-binding properties of the first anion-templated pseudorotax...
This thesis describes the construction and exploration of a variety of interlocked structures that e...
Chloride locks the rings: Debenzylation of a chloride-templated N-benzyl pyridinium catenane, allows...
A novel [2]catenane is synthesized in good yield from an upper-rim functionalized calix[4]arene macr...
This thesis is concerned with the synthesis and study of novel anion templated rotaxanes and catenan...
Catenanes - molecules consisting of interlocked macrocyclic rings - have been prepared by templation...