The use of aromatic organic macrocycles as supramolecular hosts for non-covalent energy transfer is reported herein. These macrocycles lead to stronger binding and more efficient energy transfer compared to commercially available γ-cyclodextrin. This energy transfer was particularly efficient for the highly toxic benzo[a]pyrene with a fluorescent BODIPY acceptor, with up to a 5-fold increase in the fluorophore emission observed
Molecules that can exist in multiple states with the possibility of toggling between those states ba...
π-Conjugated macrocycles are molecules with unique properties that are increasingly exploited for ap...
We report the synthesis and characterization of a novel type of nanohoop, consisting of a cycloparap...
Reported herein is the development of non-covalent, proximity-induced energy transfer from small-mol...
Reported herein is the use of proximity-induced non-covalent energy transfer for the detection of me...
Reported herein is the detection of highly toxic polycyclic aromatic hydrocarbons (PAHs) and polychl...
Taking the high road: Highly efficient electronic energy transfer takes place from a set of appended...
As molecular self-assembled systems increase in complexity, due to a large number of participating e...
With the help of time-dependent density functional theory coupled to an implicit solvation scheme (t...
A macrocyclic receptor molecule containing two viologen species connected by conjugated terphenyl gr...
The growth of supramolecular chemistry over the last decades has been materialized by the production...
Reported herein is the high yielding synthesis of a new fluorenone-based triazolophane and its sensi...
This Feature focuses on pyrrolic macrocycles that can serve as switches via energy- or electron tran...
The overall theme of my graduate research is to understand forces involved in supramolecular, hydrop...
Macrocycles [1] are the workhorses in supramolecular chemistry. Many basic supramolecular concepts h...
Molecules that can exist in multiple states with the possibility of toggling between those states ba...
π-Conjugated macrocycles are molecules with unique properties that are increasingly exploited for ap...
We report the synthesis and characterization of a novel type of nanohoop, consisting of a cycloparap...
Reported herein is the development of non-covalent, proximity-induced energy transfer from small-mol...
Reported herein is the use of proximity-induced non-covalent energy transfer for the detection of me...
Reported herein is the detection of highly toxic polycyclic aromatic hydrocarbons (PAHs) and polychl...
Taking the high road: Highly efficient electronic energy transfer takes place from a set of appended...
As molecular self-assembled systems increase in complexity, due to a large number of participating e...
With the help of time-dependent density functional theory coupled to an implicit solvation scheme (t...
A macrocyclic receptor molecule containing two viologen species connected by conjugated terphenyl gr...
The growth of supramolecular chemistry over the last decades has been materialized by the production...
Reported herein is the high yielding synthesis of a new fluorenone-based triazolophane and its sensi...
This Feature focuses on pyrrolic macrocycles that can serve as switches via energy- or electron tran...
The overall theme of my graduate research is to understand forces involved in supramolecular, hydrop...
Macrocycles [1] are the workhorses in supramolecular chemistry. Many basic supramolecular concepts h...
Molecules that can exist in multiple states with the possibility of toggling between those states ba...
π-Conjugated macrocycles are molecules with unique properties that are increasingly exploited for ap...
We report the synthesis and characterization of a novel type of nanohoop, consisting of a cycloparap...