Anion templation strategies have facilitated the synthesis of various catenane and rotaxane hosts capable of strong and selective binding of anions in competitive solvents. However, this approach has primarily relied on positively charged precursors, limiting the structural diversity and the range of potential applications of the anion-templated mechanically interlocked molecules. Here we demonstrate the synthesis of a rare electroneutral [2]catenane using a powerful, doubly charged sulfate template and a complementary diamidocarbazole-based hydrogen bonding precursor. Owing to the unique three-dimensional hydrogen bonding cavity and the embedded carbazole fluorophores, the resulting catenane receptor functions as a sensitive fluorescent tu...
An active metal template strategy was used to synthesise a neutral indolocarbazole containing [2]rot...
Anions have many important roles in biological systems, as well as in the environment and as such th...
The main aim of this project is to develop novel acyclic, macrocyclic and mechanically interlocked r...
CONSPECTUS: The promise of mechanically interlocked architectures, such as rotaxanes and catenanes, ...
This review describes the concept and exploitation of a strategic anion templation methodology in th...
An anion templated double cyclization strategy to synthesize [2]catenanes in which two identical acy...
The main aim: of this project is to develop novel acyclic and macrocyclic hosts for the binding and ...
Nature achieves impressively strong and selective complexation of small molecule anions through the ...
The first example of a [2]catenane structure to be synthesized using anion templation is described. ...
The anion-templated synthesis of a halogen-bonding catenane, which recognizes chloride and bromide i...
The chloride-templated synthesis of a novel [3]rotaxane, capable of binding anionic guests, and inco...
This thesis is concerned with the synthesis and study of novel anion templated rotaxanes and catenan...
This thesis describes the synthesis of macrocyclic and interlocked receptors which exploit halogen- ...
This tutorial review describes the evolution of the field of chemical templation, in particular, emp...
Developing a multi ion acceptor such as catenane, rotaxane and pseudorotaxane was carried out in an ...
An active metal template strategy was used to synthesise a neutral indolocarbazole containing [2]rot...
Anions have many important roles in biological systems, as well as in the environment and as such th...
The main aim of this project is to develop novel acyclic, macrocyclic and mechanically interlocked r...
CONSPECTUS: The promise of mechanically interlocked architectures, such as rotaxanes and catenanes, ...
This review describes the concept and exploitation of a strategic anion templation methodology in th...
An anion templated double cyclization strategy to synthesize [2]catenanes in which two identical acy...
The main aim: of this project is to develop novel acyclic and macrocyclic hosts for the binding and ...
Nature achieves impressively strong and selective complexation of small molecule anions through the ...
The first example of a [2]catenane structure to be synthesized using anion templation is described. ...
The anion-templated synthesis of a halogen-bonding catenane, which recognizes chloride and bromide i...
The chloride-templated synthesis of a novel [3]rotaxane, capable of binding anionic guests, and inco...
This thesis is concerned with the synthesis and study of novel anion templated rotaxanes and catenan...
This thesis describes the synthesis of macrocyclic and interlocked receptors which exploit halogen- ...
This tutorial review describes the evolution of the field of chemical templation, in particular, emp...
Developing a multi ion acceptor such as catenane, rotaxane and pseudorotaxane was carried out in an ...
An active metal template strategy was used to synthesise a neutral indolocarbazole containing [2]rot...
Anions have many important roles in biological systems, as well as in the environment and as such th...
The main aim of this project is to develop novel acyclic, macrocyclic and mechanically interlocked r...