Control of isomerization of a receptor bearing multiple light-switchable subunits in a confined space is critical for the design of synthetic molecular machines. Toward this goal, a new azacryptand containing three azobenzene subunits has been developed, and its photoisomerization in an aqueous solution has been studied depending on anion coordination and recognition by a larger host - cucurbit[8]uril (CB[8]). The cryptand in its hexaprotonated form shows considerable affinity for fluoride and perchlorate, which in turn affects the isomer distribution of the receptor under UV-light irradiation, stabilizing the isomers of the cryptand with Z-configurations. CB[8] was found to be able to encapsulate the isomers of the cryptand by forming a Ma...
Azobenzene derivatives are a class of molecular switches that have found broad use in photocontrol o...
This is a short overview on azacryptands, as molecular receptors for cations and anions. A particula...
Photoisomerization of azobenzenes from their stable E isomer to the metastable Z state is the basis ...
Photoswitchable molecules are employed for many applications, from the development of active materia...
Azobenzene is a widely used guest molecule to build up dynamic photo-responsive host-guest systems. ...
Cucurbit[8]uril (CB[8])-mediated complexation of a dicationic azobenzene in water allows for the lig...
We report an expanded “Texas-sized” molecular box (AzoTxSB) that incorporates photoresponsive azoben...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
Azobenzene undergoes reversible cis↔ trans photoisomerization upon irradiation. Substituents often c...
The photoisomerization of azobenzenes provides a general means for the photocontrol of molecular str...
The purpose of this research project was to develop photomolecular systems that contain photorespons...
The rational design of a flexible molecular box, oAzoBox4+ , incoporating both photochromic and supr...
Photoisomerization of azobenzenes from their stable E isomer to the metastable Z state is the basis ...
The design and construction of novel artificial molecular machines can be categorized as a currently...
Photoswitchable molecules are employed for many applications, from the development of active materia...
Azobenzene derivatives are a class of molecular switches that have found broad use in photocontrol o...
This is a short overview on azacryptands, as molecular receptors for cations and anions. A particula...
Photoisomerization of azobenzenes from their stable E isomer to the metastable Z state is the basis ...
Photoswitchable molecules are employed for many applications, from the development of active materia...
Azobenzene is a widely used guest molecule to build up dynamic photo-responsive host-guest systems. ...
Cucurbit[8]uril (CB[8])-mediated complexation of a dicationic azobenzene in water allows for the lig...
We report an expanded “Texas-sized” molecular box (AzoTxSB) that incorporates photoresponsive azoben...
The non-covalent affinity of photoresponsive molecules to biotargets represents an attractive tool f...
Azobenzene undergoes reversible cis↔ trans photoisomerization upon irradiation. Substituents often c...
The photoisomerization of azobenzenes provides a general means for the photocontrol of molecular str...
The purpose of this research project was to develop photomolecular systems that contain photorespons...
The rational design of a flexible molecular box, oAzoBox4+ , incoporating both photochromic and supr...
Photoisomerization of azobenzenes from their stable E isomer to the metastable Z state is the basis ...
The design and construction of novel artificial molecular machines can be categorized as a currently...
Photoswitchable molecules are employed for many applications, from the development of active materia...
Azobenzene derivatives are a class of molecular switches that have found broad use in photocontrol o...
This is a short overview on azacryptands, as molecular receptors for cations and anions. A particula...
Photoisomerization of azobenzenes from their stable E isomer to the metastable Z state is the basis ...