Hexadecaphyrin-(1.0.0.0.1.1.0.1.1.0.0.0.1.1.0.1): A Dual Site Ligand That Supports Thermal Conformational Changes.
Gonzalo AngueraWon-Young ChaMatthew D MooreJuhoon LeeShenyi GuoVincent M LynchDongho KimJonathan L SesslerPublished in: Journal of the American Chemical Society (2018)
A new expanded porphyrin, hexadecaphyrin-(1.0.0.0.1.1.0.1.1.0.0.0.1.1.0.1), is reported. It was obtained via the condensation of a hexapyrrolic derivative prepared in turn from a bipyrrole dialdehyde and a stable quaterpyrrole precursor. This hexadecaphyrin contains eight direct α-pyrrole-to-α-pyrrole linkages in its structure. It supports the formation of bimetallic complexes of both zinc and cobalt that are characterized by different conformational structures. Furthermore, a mixed zinc/cobalt macrocycle has been prepared. The cobalt bimetallic complex shows two stable conformations with the same oxidation state that are in equilibrium. All compounds have been characterized by common spectroscopic means, and single crystal X-ray diffraction structures were obtained for all macrocyclic compounds. DFT calculations and transient absorption spectra were used to study the electronic features of the complexes and the effect of conformational changes. This system shows promise as an accumulated heat sensor.
Keyphrases
- molecular dynamics
- molecular dynamics simulations
- metal organic framework
- density functional theory
- molecular docking
- high resolution
- reduced graphene oxide
- single molecule
- oxide nanoparticles
- carbon nanotubes
- photodynamic therapy
- heat stress
- magnetic resonance imaging
- magnetic resonance
- crystal structure
- subarachnoid hemorrhage
- gold nanoparticles
- dual energy
- water soluble
- quantum dots