The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene dendrimers containing a perylenediimide core have been investigated in this paper. Polyphenylene dendrimers composed of tens or hundreds of out-of-plane twisted phenyl units exhibit strong fluorescence, with quantum yields ranging from 0.2 to 0.5 depending on the dendrimer generation and its degree of functionality. The fluorescence of polyphenylene dendrimers can be efficiently quenched by the incorporated perylenediimide core, and consequently, a predominant emission from the core has been observed, indicating a very efficient intramolecular energy transfer
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
Intramolecular Förster-type excitation energy transfer (FRET) processes in a series of first-generat...
Intramolecular Förster-type excitation energy transfer (FRET) processes in a series of first-generat...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
The photophysical properties and the excitation energy transfer (EET) process of a series of first g...
The photophysical properties and the excitation energy transfer (EET) process of a series of first g...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
The fluorescence of polyphenylene dendrimers and the intramolecular energy transfer in polyphenylene...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
Intramolecular Förster-type excitation energy transfer (FRET) processes in a series of first-generat...
Intramolecular Förster-type excitation energy transfer (FRET) processes in a series of first-generat...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
The photophysical properties and the excitation energy transfer (EET) process of a series of first g...
The photophysical properties and the excitation energy transfer (EET) process of a series of first g...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...
A new synthetic approach leading to asymmetrically substituted polyphenylene dendrimers is presented...