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Triplet photosensitizers: from molecular design to applications
J Zhao, W Wu, J Sun, S Guo - Chemical Society Reviews, 2013 - pubs.rsc.org
Triplet photosensitizers (PSs) are compounds that can be efficiently excited to the triplet
excited state which subsequently act as catalysts in photochemical reactions. The name is …
excited state which subsequently act as catalysts in photochemical reactions. The name is …
4, 4′-Difluoro-4-bora-3a, 4a-diaza-s-indacenes (BODIPYs) as components of novel light active materials
M Benstead, GH Mehl, RW Boyle - Tetrahedron, 2011 - Elsevier
4, 4-Difluoro-4-bora-3a, 4a-diaza-s-indacenes(hereafter referred to as BODIPYs) are a class
of fluorescent dyes that are finding an increasing number of applications in both the …
of fluorescent dyes that are finding an increasing number of applications in both the …
Intramolecular RET enhanced visible light-absorbing bodipy organic triplet photosensitizers and application in photooxidation and triplet–triplet annihilation …
C Zhang, J Zhao, S Wu, Z Wang, W Wu… - Journal of the …, 2013 - ACS Publications
Resonance energy transfer (RET) was used for the first time to enhance the visible light
absorption of triplet photosensitizers. The intramolecular energy donor (boron …
absorption of triplet photosensitizers. The intramolecular energy donor (boron …
A highly selective red-emitting FRET fluorescent molecular probe derived from BODIPY for the detection of cysteine and homocysteine: an experimental and …
J Shao, H Sun, H Guo, S Ji, J Zhao, W Wu, X Yuan… - Chemical …, 2012 - pubs.rsc.org
A red-emitting BODIPY-based fluorescent-resonance-energy-transfer (FRET) molecular
probe 1 for selective detection of cysteine and homocysteine was designed. The …
probe 1 for selective detection of cysteine and homocysteine was designed. The …
Enhancing the Stokes' shift of BODIPY dyes via through-bond energy transfer and its application for Fe 3+-detection in live cell imaging
X Qu, Q Liu, X Ji, H Chen, Z Zhou, Z Shen - Chemical Communications, 2012 - pubs.rsc.org
Two energy transfer cassettes that exhibit a large pseudo Stokes' shift (up to 400 nm) due to
efficient through-bond energy transfer (up to 99%) have been constructed. Selective binding …
efficient through-bond energy transfer (up to 99%) have been constructed. Selective binding …
BODIPY triads triplet photosensitizers enhanced with intramolecular resonance energy transfer (RET): broadband visible light absorption and application in …
Resonance energy transfer (RET) was used to enhance the light absorption in triad triplet
photosensitizers to access strong and broadband absorption in visible region (from 450–750 …
photosensitizers to access strong and broadband absorption in visible region (from 450–750 …
Observation of the room temperature phosphorescence of Bodipy in visible light-harvesting Ru (II) polyimine complexes and application as triplet photosensitizers for …
W Wu, J Sun, X Cui, J Zhao - Journal of Materials Chemistry C, 2013 - pubs.rsc.org
Two Ru (II) polyimine complexes containing a boron-dipyrromethene (Bodipy) chromophore
were prepared. The two complexes are different in the linker which connects the Bodipy part …
were prepared. The two complexes are different in the linker which connects the Bodipy part …
Bodipy-carbohydrate systems: Synthesis and bio-applications
Luminescent BODIPY-sugar probes have stimulated the attention of researchers for the
potential applications of such molecular systems in bio-imaging. The presence of …
potential applications of such molecular systems in bio-imaging. The presence of …
Mimicking Photosynthetic Antenna‐Reaction‐Center Complexes with a (Boron Dipyrromethene)3–Porphyrin–C60 Pentad
JY Liu, ME El‐Khouly, S Fukuzumi… - Chemistry–A European …, 2011 - Wiley Online Library
A highly efficient functional mimic of the photosynthetic antenna‐reaction‐center complexes
has been designed and synthesized. The model contains a zinc (II) porphyrin (ZnP) core …
has been designed and synthesized. The model contains a zinc (II) porphyrin (ZnP) core …
Energy transfer in supramolecular materials for new applications in photonics and electronics
Supramolecular materials use self-assembly of molecular components to form complex
architectures that may otherwise be extremely difficult to prepare. One of the fundamental …
architectures that may otherwise be extremely difficult to prepare. One of the fundamental …