Novel Rigidochromic and Anti-Kasha Dual Emission Fluorophores Based on D-π-A Dyads as the Promising Materials for Potential Applications Ranging from Optoelectronics and Optical Sensing to Biophotonics and Medicine
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A. Piskunov | G. Fukin | I. Balalaeva | A. Cherkasov | L. Klapshina | N. Shilyagina | M. Arsenyev | S. Lermontova | E. Y. Ladilina | I. S. Grigoryev | T. Lyubova | A. Yudintsev | Andrey V. Afanasyev
[1] Zhenlong Huang,et al. Polarity-Sensitive and Membrane-Specific Probe Quantitatively Monitoring Ferroptosis through Fluorescence Lifetime Imaging. , 2022, Analytical chemistry.
[2] V. Stavros,et al. Rigidochromism by imide functionalisation of an aminomaleimide fluorophore , 2021, Chemical science.
[3] Soo Young Park,et al. Novel anti-Kasha fluorophores exhibiting dual emission with thermally activated delayed fluorescence through detouring triplet manifolds , 2021, Journal of Materials Chemistry C.
[4] C. Bachert,et al. Novel porphyrazine-based photodynamic anti-cancer therapy induces immunogenic cell death , 2021, Scientific Reports.
[5] S. L. Bondarev,et al. Effect of donor and acceptor end-groups on electronic structure and spectral-fluorescent properties of merocyanines in frozen ethanol , 2021 .
[6] Yanming Sun,et al. Optimized active layer morphology toward efficient and polymer batch insensitive organic solar cells , 2020, Nature Communications.
[7] J. Barbé,et al. Organic and perovskite photovoltaics for indoor applications , 2020 .
[8] R. Bhosale,et al. A series of V-shaped small molecule non-fullerene electron acceptors for efficient bulk-heterojunction devices , 2019 .
[9] D. Krysko,et al. Effect of novel porphyrazine photosensitizers on normal and tumor brain cells , 2019, Journal of biophotonics.
[10] Jacek Ulanski,et al. Single-Junction Organic Solar Cell with over 15% Efficiency Using Fused-Ring Acceptor with Electron-Deficient Core , 2019, Joule.
[11] Takuma Yasuda,et al. High-Performance Organic Energy-Harvesting Devices and Modules for Self-Sustainable Power Generation under Ambient Indoor Lighting Environments. , 2019, ACS Applied Materials and Interfaces.
[12] Zhishan Bo,et al. Perylene diimide based star-shaped small molecular acceptors for high efficiency organic solar cells , 2019, Journal of Materials Chemistry C.
[13] I. Grishin,et al. Cyano-Aryl Porphyrazine Pigments with Polycyclic Substituents as the Promising Agents for Photodynamic Therapy and Potential Sensors of Local Viscosity , 2019, Macroheterocycles.
[14] A. Starodubtsev,et al. Comparative Study of the Photophysical Properties of Dimegine, Photoditazine, and Radachlorin , 2018, Optics and Spectroscopy.
[15] Yang Yang,et al. Next-generation organic photovoltaics based on non-fullerene acceptors , 2018 .
[16] Junxiang Zhang,et al. Effect of Isomerization on High-Performance Nonfullerene Electron Acceptors. , 2018, Journal of the American Chemical Society.
[17] Haohai Yu,et al. Self-assembly, optical and electrical properties of perylene diimide dyes bearing unsymmetrical substituents at bay position , 2018, Scientific Reports.
[18] S. Jurga,et al. Photophysical properties and photocytotoxicity of free and liposome-entrapped diazepinoporphyrazines on LNCaP cells under normoxic and hypoxic conditions. , 2018, European journal of medicinal chemistry.
[19] M. Shirmanova,et al. In vivo multimodal tumor imaging and photodynamic therapy with novel theranostic agents based on the porphyrazine framework-chelated gadolinium (III) cation. , 2017, Biochimica et biophysica acta. General subjects.
[20] Yongfang Li,et al. Thieno[3,2-b]pyrrolo-Fused Pentacyclic Benzotriazole-Based Acceptor for Efficient Organic Photovoltaics. , 2017, ACS applied materials & interfaces.
[21] V. Vodeneev,et al. Effective delivery of porphyrazine photosensitizers to cancer cells by polymer brush nanocontainers , 2017, Journal of biophotonics.
[22] M. Steigerwald,et al. Long, Atomically Precise Donor-Acceptor Cove-Edge Nanoribbons as Electron Acceptors. , 2017, Journal of the American Chemical Society.
[23] M. Cather Simpson,et al. Photoinitiators for two-photon polymerisation: effect of branching and viscosity on polymerisation thresholds , 2017 .
[24] T. Bredow,et al. The Effects of Oxidation States, Spin States and Solvents on Molecular Structure, Stability and Spectroscopic Properties of Fe-Catechol Complexes: A Theoretical Study , 2017 .
[25] He Yan,et al. Pronounced Effects of a Triazine Core on Photovoltaic Performance–Efficient Organic Solar Cells Enabled by a PDI Trimer‐Based Small Molecular Acceptor , 2017, Advanced materials.
[26] Elena V. Zagaynova,et al. Imaging tumor microscopic viscosity in vivo using molecular rotors , 2017, Scientific Reports.
[27] N. Düzgüneş,et al. Sulfanyl porphyrazines: Molecular barrel-like self-assembly in crystals, optical properties and in vitro photodynamic activity towards cancer cells , 2017 .
[28] P. Chou,et al. Control of the Reversibility of Excited-State Intramolecular Proton Transfer (ESIPT) Reaction: Host-Polarity Tuning White Organic Light Emitting Diode on a New Thiazolo[5,4-d]thiazole ESIPT System , 2016 .
[29] M. Liptak,et al. Suppression of Kasha's rule as a mechanism for fluorescent molecular rotors and aggregation-induced emission , 2016, Nature Chemistry.
[30] S. Jenekhe,et al. Bis(Naphthalene Imide)diphenylanthrazolines: A New Class of Electron Acceptors for Efficient Nonfullerene Organic Solar Cells and Applicable to Multiple Donor Polymers , 2015 .
[31] Xuhui Huang,et al. A Tetraphenylethylene Core‐Based 3D Structure Small Molecular Acceptor Enabling Efficient Non‐Fullerene Organic Solar Cells , 2015, Advanced materials.
[32] Dietmar Stalke,et al. Comparison of silver and molybdenum microfocus X-ray sources for single-crystal structure determination , 2015, Journal of applied crystallography.
[33] M. Kuimova,et al. Dual use of porphyrazines as sensitizers and viscosity markers in photodynamic therapy. , 2015, Journal of materials chemistry. B.
[34] J. Lehn,et al. Bright white-light emission from a single organic compound in the solid state. , 2014, Angewandte Chemie.
[35] G. T. Yee,et al. Room temperature and near-room temperature coordination polymer magnets , 2014 .
[36] Joseph W. Matiko,et al. Review of the application of energy harvesting in buildings , 2013 .
[37] M. Shirmanova,et al. [Development of a new photosensitizer on the basis of ytterbium porphyrazine complex]. , 2011, Biofizika.
[38] Klaus Müllen,et al. Pyrene-based materials for organic electronics. , 2011, Chemical reviews.
[39] M. Shirmanova,et al. Novel PEG-organized biocompatible fluorescent nanoparticles doped with an ytterbium cyanoporphyrazine complex for biophotonic applications. , 2010, Chemical communications.
[40] M. Stylianakis,et al. Efficient bulk heterojunction devices based on phenylenevinylene small molecule and perylene–pyrene bisimide , 2010 .
[41] S. Icli,et al. Highly soluble perylene dyes: Synthesis, photophysical and electrochemical characterizations , 2009 .
[42] A. Luk'yanov,et al. Novel metal-template assembled highly-functionalized cyanoporphyrazine ytterbium and vanadium complexes for potential photonic and optoelectronic applications , 2009 .
[43] Klaus Suhling,et al. Imaging intracellular viscosity of a single cell during photoinduced cell death. , 2009, Nature chemistry.
[44] T. Crawford,et al. Room-temperature and near-room-temperature molecule-based magnets. , 2008, Inorganic Chemistry.
[45] G. T. Yee,et al. A room temperature ferrimagnet, vanadium [pentafluorophenyltricyanoethylene ]2 , 2007 .
[46] B. A. Bushuk,et al. Metal template assembly of highly functionalized octacyanoporphyrazine framework from TCNE structural units. , 2007, Chemical Communications.
[47] N. S. Sariciftci,et al. Conjugated polymer-based organic solar cells. , 2007, Chemical reviews.
[48] L. Reinisch,et al. Fluorescence quantum efficiency of dry Bacillus globigii spores. , 2005, Optics express.
[49] G. T. Yee,et al. Two new acceptor building blocks for ‘high Tc’ coordination polymer magnets , 2001 .
[50] W. Webb,et al. Measurement of two-photon excitation cross sections of molecular fluorophores with data from 690 to 1050 nm , 1996 .
[51] J. Lakowicz. Principles of fluorescence spectroscopy , 1983 .