A novel supramolecular cage built from the self-assembly of tris(2-pyridylmethyl)amine zinc complexes through imine condensation chemistry is reported. The cage recognition properties over a variety of structurally related guests, together with the kinetic study of the template assembly and disassembly, have been investigated in detail. This knowledge has been used to selectively modulate the rate of both assembly and disassembly processes. In particular, a novel disassembly method induced by strain release of the guest has been developed
An inherently nonlinear pyridine dipyrrolate ligand, namely 2,6-bis(3,4-diethyl-5-carboxy-1<i>H</i>...
An area of supramolecular chemistry that has recently been growing in popularity is the synthesis of...
Driven by C–H activation-directed self-assembly, a series of organometallic cages, <b>4a</b>–<b>4e</...
A novel supramolecular cage built from the self-assembly of tris(2-pyridylmethyl)amine zinc complexe...
Confined molecular environments have peculiar characteristics that make their properties unique in t...
This thesis concerns the rational design and controlled self-assembly of supramolecular architecture...
Metal assisted self-assembly is a useful tool for the creation of supramolecular structures that can...
The field of supramolecular chemistry has enabled organic chemists to construct molecules of higher ...
ABSTRACT: We synthesize a series of imine cage molecules where increasing the chain length of the al...
A supramolecular approach that uses hydrogen-bonding interaction as a driving force to accomplish ex...
Dynamic covalent chemistry (DCC) has, in recent years, provided valuable tools to synthesize molecul...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
Driven by C-H activation-directed self-assembly, a series of organometallic cages, 4a-4e, was obtain...
The use of di(2-pyridyl)ketone in subcomponent self-assembly is introduced. When combined with a fle...
Supramolecular cage complexes are of great interest, not only for their structural elegance, but als...
An inherently nonlinear pyridine dipyrrolate ligand, namely 2,6-bis(3,4-diethyl-5-carboxy-1<i>H</i>...
An area of supramolecular chemistry that has recently been growing in popularity is the synthesis of...
Driven by C–H activation-directed self-assembly, a series of organometallic cages, <b>4a</b>–<b>4e</...
A novel supramolecular cage built from the self-assembly of tris(2-pyridylmethyl)amine zinc complexe...
Confined molecular environments have peculiar characteristics that make their properties unique in t...
This thesis concerns the rational design and controlled self-assembly of supramolecular architecture...
Metal assisted self-assembly is a useful tool for the creation of supramolecular structures that can...
The field of supramolecular chemistry has enabled organic chemists to construct molecules of higher ...
ABSTRACT: We synthesize a series of imine cage molecules where increasing the chain length of the al...
A supramolecular approach that uses hydrogen-bonding interaction as a driving force to accomplish ex...
Dynamic covalent chemistry (DCC) has, in recent years, provided valuable tools to synthesize molecul...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
Driven by C-H activation-directed self-assembly, a series of organometallic cages, 4a-4e, was obtain...
The use of di(2-pyridyl)ketone in subcomponent self-assembly is introduced. When combined with a fle...
Supramolecular cage complexes are of great interest, not only for their structural elegance, but als...
An inherently nonlinear pyridine dipyrrolate ligand, namely 2,6-bis(3,4-diethyl-5-carboxy-1<i>H</i>...
An area of supramolecular chemistry that has recently been growing in popularity is the synthesis of...
Driven by C–H activation-directed self-assembly, a series of organometallic cages, <b>4a</b>–<b>4e</...