Search Results - "Chukharev, Vladimir"

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    Influence of Alq3/Au cathode on stability and efficiency of a layered organic solar cell in air by VIVO, Paola, JUKOLA, Johanna, OJALA, Mikko, CHUKHAREV, Vladimir, LEMMETYINEN, Helge

    Published in Solar energy materials and solar cells (01-11-2008)
    “…A relatively long lifetime organic solar cell, containing a thin tris-8-hydroxy-quinolato aluminum (Alq3) layer under an Au cathode, is described…”
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    Energy and Electron Transfer in Multilayer Films Containing Porphyrin−Fullerene Dyad by Kaunisto, Kimmo, Chukharev, Vladimir, Tkachenko, Nikolai V, Efimov, Alexander, Lemmetyinen, Helge

    Published in Journal of physical chemistry. C (05-03-2009)
    “…Photoinduced interlayer energy and electron transfer from a thiophene derivative, PVT3, to a porphyrin−fullerene dyad, P-F, was demonstrated. The laser flash…”
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    Role of a phthalocyanine–fullerene dyad in multilayered organic solar cells by Vivo, Paola, Ojala, Mikko, Chukharev, Vladimir, Efimov, Alexander, Lemmetyinen, Helge

    “…A double-bridged phthalocyanine–fullerene dyad (H 2Pc–C 60ee) was used as photo-active intramolecular donor–acceptor system in a layered organic solar cell. In…”
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    Photoinduced Electron Transfer and Photocurrent in Multicomponent Organic Molecular Films Containing Oriented Porphyrin-Fullerene Dyad by Kaunisto, Kimmo, Vuorinen, Tommi, Vahasalo, Heidi, Chukharev, Vladimir, Tkachenko, Nikolai V, Efimov, Alexander, Tolkki, Antti, Lehtivuori, Heli, Lemmetyinen, Helge

    Published in Journal of physical chemistry. C (10-07-2008)
    “…Layers of poly(3-hexylthiophene), PHT, phenyl vinyl thiophene, PVT3, poly(p-phenylene-2,3′-bis(3,2′-diphenyl)-quinoxaline-7-7′-diyl), PPQ, and covalently…”
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    Photoinduced Electron Transfer in Self-Assembled Monolayers of Porphyrin−Fullerene Dyads on ITO by Chukharev, Vladimir, Vuorinen, Tommi, Efimov, Alexander, Tkachenko, Nikolai V, Kimura, Makoto, Fukuzumi, Shunichi, Imahori, Hiroshi, Lemmetyinen, Helge

    Published in Langmuir (05-07-2005)
    “…Two porphyrin−fullerene dyads were synthesized to form self-assembled monolayers (SAMs) on indium−tin oxide (ITO) electrode, with either…”
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    Photoinduced charge transfer through films containing poly(hexylthiophene), phthalocyanine, and porphyrin–fullerene layers by Kaunisto, Kimmo, Vahasalo, Heidi, Chukharev, Vladimir, Tkachenko, Nikolai V., Vivo, Paola, Niemi, Marja, Tolkki, Antti, Efimov, Alexander, Lemmetyinen, Helge

    Published in Thin solid films (02-03-2009)
    “…Efficient photoinduced interlayer electron transfer from a phthalocyanine derivative, ZnPH4, to porphyrin cation of a porphyrin–fullerene donor–acceptor dyad…”
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    Charge-Transfer Dynamics in Poly(3-hexylthiophene):Perylenediimide‑C60 Blend Films Studied by Ultrafast Transient Absorption by Kaunisto, Kimmo M., Vivo, Paola, Dubey, Rajeev K., Chukharev, Vladimir I., Efimov, Alexander, Tkachenko, Nikolai V., Lemmetyinen, Helge J.

    Published in Journal of physical chemistry. C (22-05-2014)
    “…Electron-transfer characteristics of 1,7-dipyrrolidinyl-substituted perylenediimide-fullerene (PyPDI-C60) dyad were studied in solid films by an ultrafast…”
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    Langmuir−Schaeffer Films from a π−π Stacking Perylenediimide Dye: Organization and Charge Transfer Properties by Tolkki, Antti, Vuorimaa, Elina, Chukharev, Vladimir, Lemmetyinen, Helge, Ihalainen, Petri, Peltonen, Jouko, Dehm, Volker, Würthner, Frank

    Published in Langmuir (04-05-2010)
    “…The organization of π−π stacking perylenediimide (PDI) derivative, PDI12, was studied in solution and in thin films. Films were prepared with the…”
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    Photochemical Behavior and Photolysis of Protonated Forms of Levofloxacin by Polishchuk, Anna, Emelina, Tatyna, Karaseva, Emilya, Cramariuc, Oana, Chukharev, Vladimir, Karasev, Vladimir

    Published in Photochemistry and photobiology (01-01-2014)
    “…The effect of intermolecular proton transfer on the spectral properties of levofloxacin in the ground and excited electronic states was studied. The preferred…”
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    Multicomponent Molecularly Controlled Langmuir−Blodgett Systems for Organic Photovoltaic Applications by Vivo, Paola, Vuorinen, Tommi, Chukharev, Vladimir, Tolkki, Antti, Kaunisto, Kimmo, Ihalainen, Petri, Peltonen, Jouko, Lemmetyinen, Helge

    Published in Journal of physical chemistry. C (13-05-2010)
    “…The capability of Violanthrone-79 (V-79) and N,N′-bis(2,5-di-tert-butylphenyl)-3,4:9,l0-perylenebis(dicarboximide) (PDI) to act as electron acceptors, with…”
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    Long-lived charge separated state in molecular films containing porphyrin–fullerene dyad by Kaunisto, Kimmo, Chukharev, Vladimir, Tkachenko, Nikolai V., Lemmetyinen, Helge

    Published in Chemical physics letters (20-07-2008)
    “…Long-lived interlayer electron transfer from poly(hexylthiophene) to porphyrin cation of the porphyrin–fullerene dyad was demonstrated by laser flash…”
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    Tuning the Ground-State and Excited-State Interchromophore Interactions in Porphyrin−Fullerene π-Stacks by Chukharev, Vladimir, Tkachenko, Nikolai V, Efimov, Alexander, Guldi, Dirk M, Hirsch, Andreas, Scheloske, Michael, Lemmetyinen, Helge

    Published in The journal of physical chemistry. B (21-10-2004)
    “…Recently synthesized porphyrin−fullerene dyads with two separate linkers form a nearly symmetric complex with π-stack sandwich-like structure. The…”
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    Photochemical properties of porphyrin films covering curved surfaces of optical fibers by Veselov, Alexey, Thür, Christoph, Chukharev, Vladimir, Guina, Mircea, Lemmetyinen, Helge, Tkachenko, Nikolai V.

    Published in Chemical physics letters (26-03-2009)
    “…The photochemistry of Langmuir–Blodgett films of porphyrins, covering optical fiber-tapers with diameters 10–20 μm has been investigated. Surface organization…”
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    Photoconductivity of thin organic films by TKACHENKO, Nikolai V, CHUKHAREV, Vladimir, KAPLAS, Petra, TOLKKI, Antti, EFIMOV, Alexander, HARING, Kimmo, VIHERIÄLÄ, Jukka, NIEMI, Tapio, LEMMETYINEN, Helge

    Published in Applied surface science (01-04-2010)
    “…Thin organic films were deposited on silicon oxide surfaces with golden interdigitated electrodes (interelectrode gap was 2I14m), and the film resistivities…”
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