A general approach to enhancing the emission quantum yield of several widely studied organic chromophores is presented. The luminescence properties of a series of symmetrical sulfur-bridged chromophores are reported as a function of the oxidation state of the bridging sulfur atom. The photoluminescence quantum yield is significantly enhanced by successively oxidizing the sulfur bridge from sulfide (S), to sulfoxide (SO), to sulfone (SO<sub>2</sub>)
Many fluorophores, and all bright light-emitting substrates for firefly luciferase, contain hydroxyl...
Based on the two systems of dibenzothiophene (DBT) and phenothiazine (PTZ), blue fluorescent small m...
A series of symmetric sulfone-linked organic fluorescent compounds (1a–c) was synthesized and ...
*S Supporting Information ABSTRACT: A general approach to enhancing the emission quantum yield of se...
A general approach to enhancing the photoluminescent quantum yield for a series of organic chromopho...
Covalently tethered bichromophores provide an ideal proving ground to develop strategies for control...
Sulfur oxidation state is used to tune organic room temperature phosphorescence (RTP) of symmetric s...
Sulfur oxidation state is used to tune organic room temperature phosphorescence (RTP) of symmetric s...
Controlling both energy and electron transfer processes is necessary for the performance of both lig...
International audienceIn this study we investigate in detail the photophysics of naphthalene dimers ...
Symmetric dimers have the potential to optimize energy transfer and charge separation in optoelectro...
Sulfur quantum dots (S-dots) emerge as promising luminescent materials owing to their remarkable opt...
Photoswitchable fluorescent diheteroarylethenes are promising candidates for applications in super-r...
The full abstract for this thesis is available in the body of the thesis, and will be available when...
Conselho Nacional de Desenvolvimento Científico e TecnológicoIn this study, we performed the synthes...
Many fluorophores, and all bright light-emitting substrates for firefly luciferase, contain hydroxyl...
Based on the two systems of dibenzothiophene (DBT) and phenothiazine (PTZ), blue fluorescent small m...
A series of symmetric sulfone-linked organic fluorescent compounds (1a–c) was synthesized and ...
*S Supporting Information ABSTRACT: A general approach to enhancing the emission quantum yield of se...
A general approach to enhancing the photoluminescent quantum yield for a series of organic chromopho...
Covalently tethered bichromophores provide an ideal proving ground to develop strategies for control...
Sulfur oxidation state is used to tune organic room temperature phosphorescence (RTP) of symmetric s...
Sulfur oxidation state is used to tune organic room temperature phosphorescence (RTP) of symmetric s...
Controlling both energy and electron transfer processes is necessary for the performance of both lig...
International audienceIn this study we investigate in detail the photophysics of naphthalene dimers ...
Symmetric dimers have the potential to optimize energy transfer and charge separation in optoelectro...
Sulfur quantum dots (S-dots) emerge as promising luminescent materials owing to their remarkable opt...
Photoswitchable fluorescent diheteroarylethenes are promising candidates for applications in super-r...
The full abstract for this thesis is available in the body of the thesis, and will be available when...
Conselho Nacional de Desenvolvimento Científico e TecnológicoIn this study, we performed the synthes...
Many fluorophores, and all bright light-emitting substrates for firefly luciferase, contain hydroxyl...
Based on the two systems of dibenzothiophene (DBT) and phenothiazine (PTZ), blue fluorescent small m...
A series of symmetric sulfone-linked organic fluorescent compounds (1a–c) was synthesized and ...