Synthetic supramolecular host molecules are able to mimic enzymes by using their cavities as an artificial active site. Previous research has shown that synthetic hosts are able to accelerate chemical transformations using mechanisms such as constrictive binding or enclosed proximity of reactants. These methods have generally led to modest activity and poor turnover. This thesis will describe a different approach to coordination cage catalysis, one that utilises electrostatic effects to leverage activity. In Chapter 2 it will be shown that such mechanisms can be exploited to promote Michael addition, using a simple cationic Pd2L4 cage to stabilise anionic intermediates. These electrostatic effects dramatically increase the acidity of sev...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
The scholastic significance of supramolecular chemistry continues to grow with the recent developmen...
In chapter 1, the development of design principles for achieving cation-controlled catalysis is desc...
Self-assembled cages have emerged as novel platforms to explore bio-inspired catalysis. While many d...
Self-assembled cages have emerged as novel platforms to explore bio-inspired catalysis. While many d...
Enzymes are catalysts found in nature that show high rate accelerations and substrate selectivity co...
Though many enzymes can promote chemical reactions by tuning substrate properties purely through the...
Catalysis in confined spaces, such as those provided by supramolecular cages, is quickly gaining mom...
Chemical reactions are required for the conversion of feedstocks to valuable materials, such as diff...
Chapter 1 – A summary and overview of the application of self-assembled synthetic microenvironment c...
Traditional homogeneous catalysis applies catalysts based on organometallic complexes which are tune...
Density functional theory calculations at the SMD/M06-2X/6-31+G(d,p)//M06-2X/6-31G(d) level of theor...
Enzymes are capable of exquisite selectivity in catalysis chemical reactions because of a well-evolv...
Enzymes are capable of exquisite selectivity in catalysis chemical reactions because of a well-evolv...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
The scholastic significance of supramolecular chemistry continues to grow with the recent developmen...
In chapter 1, the development of design principles for achieving cation-controlled catalysis is desc...
Self-assembled cages have emerged as novel platforms to explore bio-inspired catalysis. While many d...
Self-assembled cages have emerged as novel platforms to explore bio-inspired catalysis. While many d...
Enzymes are catalysts found in nature that show high rate accelerations and substrate selectivity co...
Though many enzymes can promote chemical reactions by tuning substrate properties purely through the...
Catalysis in confined spaces, such as those provided by supramolecular cages, is quickly gaining mom...
Chemical reactions are required for the conversion of feedstocks to valuable materials, such as diff...
Chapter 1 – A summary and overview of the application of self-assembled synthetic microenvironment c...
Traditional homogeneous catalysis applies catalysts based on organometallic complexes which are tune...
Density functional theory calculations at the SMD/M06-2X/6-31+G(d,p)//M06-2X/6-31G(d) level of theor...
Enzymes are capable of exquisite selectivity in catalysis chemical reactions because of a well-evolv...
Enzymes are capable of exquisite selectivity in catalysis chemical reactions because of a well-evolv...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
The scholastic significance of supramolecular chemistry continues to grow with the recent developmen...
In chapter 1, the development of design principles for achieving cation-controlled catalysis is desc...