Bibliography
The bibliography contains articles mentioning explicitly PicoQuant or at least one of our product's name (e.g. MicroTime).
Most of the references can be found easily by full-text searches on the internet. However, some papers cite us only indirectly,
sometimes not at all. Such publications are included only if the use of a PicoQuant product is known, for example, based on
communication with the author(s). There are certainly many more articles reporting results obtained using PicoQuant devices.
Unfortunately, such papers are often hidden for us. Please help completing this list.
Do you miss your publication? If yes, we will be happy to include it in our bibliography. Please send an e-mail
to info@picoquant.com containing the appropriate citation.
Thank you very much in advance for your kind co-operation.
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8875 results found.
The impact of the extended π-conjugation in photophysical, photochemical and aggregation behavior of new phthalocyanine–naphthalocyanine hybrids
de Souza T.F.M., Ribeiro A.O.
Journal of Photochemistry and Photobiology A: Chemistry, Vol.340, p.1-7 (2017)
Reference to: FluoTime 300, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), FluoFit
Influenza A virus virulence depends on two amino acids in the N-terminal domain of its NS1 protein to facilitate inhibition of the RNA-dependent protein kinase PKR
Schierhorn K.L., Jolmes F., Bespalowa J., Saenger S., Peteranderl C., Dzieciolowski J., Mielke M., Budt M., Pleschka S., Herrmann A., Herold S., Wolff T.
Journal of Virology, Vol.091, e00198-17 (2017)
Reference to: FluoTime 300, LSM Upgrade Kit, SPADs, SymPhoTime
Interference from two-photon sources in silica-on-silicon circuits at telecom wavelength
Li X.-Y., Qin L., Zhang J.-S., Ren M.-Z., An J.-M., Yang X.-H., Xu X.-S.
Chinese Physics Letters, Vol.034, 034211 (2017)
Reference to: TimeHarp 260
Lipid-protein microdomains in tonoplast of Beta vulgaris L.: comparison between the results obtained by detergent and detergent-free isolation techniques
Ozolina N.V., Nesterkina I.S., Spiridonova E.V., Dudareva L.V., Nurminsky V.N., Salyaev R.K.
Turkish Journal of Biochemistry, Vol.042, p.287-297 (2017)
Reference to: MicroTime 200
Lipid-protein microinclusions in the morphological structures of organelle membranes studied by fluorescent confocal microscopy
Chernyshov M.Yu., Nurminsky V.N., Ozolina N.V.
Advances in Biological Chemistry, Vol.007, p.42-59 (2017)
Reference to: MicroTime 200
Formation mechanism of luminescence spectra of carbon nitride films doped by europium chloride CNx: EuCl3
Babkin R.Yu., Lamonova K.V., Orel S.M., Prudnikov A.M., Pashkevich Yu.G., Gornostaeva O.V., Viagin O.G., Maksimuchuk P.O., Malyukin Yu.V.
Journal of Luminescence, Vol.186, p.247-254 (2017)
Reference to: TimeHarp 260, PMA Series
Time-resolved correlative optical microscopy of charge-carrier transport, recombination, and space-charge fields in CdTe heterostructures
Kuciauskas D., Myers T.H., Barnes T.M., Jensen S.A., Allende Motz A.M.
Applied Physics Letters, Vol.110, 083905 (2017)
Reference to: PicoHarp 300
Red-emitting AIEgen for luminescent solar concentrators
De Nisi F., Franncischello R., Battisti A., Panniello A., Fanizza E., Striccoli M., Gu X., Leung N.L.C., Tang B.Z., Pucci A.
Materials Chemistry Frontiers, Vol.001, p.1406-1412 (2017)
Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), SymPhoTime
Tertagonal CH3NH3PbI3 is ferroelectric
Rakita Y., Bar-Elli O., Meirzadeh E., Kaslasi H., Peleg Y., Hodes G., Lubo-mirsky I., Oron D., Ehre D., Cahen D.
Materials Science (2017)
Reference to: HydraHarp 400
Determination of mobility edge in presence of metal-to-insulator transition
Tito M.A., Pusep Yu.A.
Superlattices and Microstructures, Vol.104, p.156-161 (2017)
Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Aptamer functionalized silver clusters for STED microscopy
Wang L., Ta H., Ullal C., Wang F., Wang C., Dong G.
RSC Advances, Vol.007, p.11821-11826 (2017)
Reference to:
Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Related to:
STED
Controlling Vilsmeier-Haack processes in meso-methylBODIPYs: a new way to modulate finely photophysical properties in boron dipyrromethenes
Palao-Utiel E., Montalvillo-Jiménez L., Esnal I., Prieto-Montero R., Agarrabeitia A.R., García-Moreno I., Bañuelos J., López-Arbeloa I., de la Moya S., Ortiz M.J.
Dyes and Pigments, Vol.141, p.286-298 (2017)
Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Phosphorescent Pt(ii) complexes bearing a monoanionic C^N^N luminophore and tunable ancillary ligands
Hebenbrock M., Stegemann L., Kösters J., Doltsinis N.L., Müller J., Strassert C.A.
Dalton Transactions, Vol.046, p.3160-3169 (2017)
Reference to: FluoTime 300, FluoFit, PicoHarp 300
Photoluminescence of CdTe colloidal quantum wells in external electric field
Vitukhnovski A.G., Selyukov A.S., Solovey V.R., Vasiliev R.B., Lazareva E.P.
Journal of Luminescence, Vol.186, p.194-198 (2017)
Reference to: TimeHarp 100/200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), PMA Series
Switching from adduct formation to electron transfer in a light-oxygen-voltage domain containing the reactive cysteine
Magerl K., Stambolic I., Dick B.
Physical Chemistry Chemical Physics, Vol.019, p.10808-10819 (2017)
Reference to: FluoFit, PicoHarp 300
A new-concept gamma calorimeter at ELI-NP
Lenzi M., Adriani O., Albergo S., Andreotti M., Berto D., Borgheresi R., Cappello G., Cardarelli P., Ciaranfi R., Consoli E.
Journal of Instrumentation, Vol.012, C02051 (2017)
Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Bandgap control for the lattice-matched InGaAs/InAlAs/InP single quantum wells
Wang Y., Sheng X.Z., Guo Q.L., Liang B.L.
IOP Conference Series: Materials Science and Engineering, Vol.167, 012022 (2017)
Reference to:
PicoHarp 300
Related to:
TRPL
Nanoscale characterization of GaN/InGaN multiple quantum wells on GaN nanorods by photoluminescence spectroscopy
Chen W., Wen X., Latzel M., Yang J., Huang S., Shrestha S., Patterson R., Christiansen S., Conibeer G.
Proceedings of SPIE, Gallium Nitride Materials and Devices XII, 101040U (2017)
Reference to:
MicroTime 200
Related to:
FLIM, TRPL
Detection of human brain tumor infiltration with multimodal multiscale optical analysis
Poulon F., Metais C., Jamme F., Zanello M., Varlet P., Devaux B., Refregiers M., Haidar D.A.
Proceedings of SPIE, Advanced Biomedical and Clinical Diagnostic and Surgical Guidance Systems XV, 100540I (2017)
Reference to: SymPhoTime
Complex of hexamethylenetetramine with magnesium-tetraphenylporphyrin: Synthesis, structure, spectroscopic characterizations and electrochemical properties
Ezzayani K., Khelifa A.B., Saint-Aman E., Loiseau F., Nasir H.
Journal of Molecular Structure, Vol.1137, p.412-418 (2017)
Reference to: FluoFit, PicoHarp 300
Sodalite cages of EMT zeolite confined neutral molecular-like silver clusters
Dong B., Retoux R., de Waele V., Chiodo S.G., Mineva T., Cardin J., Mintova S.
Microporous and Mesoporous Materials, Vol.244, p.74-82 (2017)
Reference to: FluoTime 200
Engineering of optically encoded microbeads with FRET-free spatially separated quantum-dot layers for multiplexed assays
Bilan R.S., Krivenkov V.A., Berestovoy M.A., Efimov A.E., Agapov I.I., Samokhvalov P.S., Nabiev I., Sukhanova A.
ChemPhysChem, Vol.018, p.970-979 (2017)
Reference to:
PicoHarp 300
Related to:
FRET
Spectral focusing of broadband silver electroluminescence in nanoscopic FRET-LEDs
Puchert R.P., Steiner F., Plechinger G., Hofmann F.J., Caspers I., Kirschner J., Nagler P., Chernikov A., Scüller C., Korn T., Vogelsang J., Bange S., Lupton J.M.
Nature Nanotechnology, Vol.012, p.637-641 (2017)
Reference to:
SPADs, SymPhoTime
Related to:
FRET
Aqueous singlet oxygen reaction kinetics of furfuryl alcohol: effect of temperature, pH, and salt content
Appiani E., Ossola R., Latch D.E., Erickson P.R., McNeill K.
Environmental Science: Processes & Impacts, Vol.019, p.507-516 (2017)
Reference to: TimeHarp 260
8-Styryl-substituted coralyne derivatives as DNA binding fluorescent probes
Pithan P.M., Decker D., Druzhin S.I., Ihmels H., Schönherr H., Voß Y.
RSC Advances, Vol.007, p.10660-10667 (2017)
Reference to: MicroTime 200