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Bibliography

Our instruments are used by top reserchers world wide, including recent nobel prize winners, such as W.E. Moerner and S.W. Hell. Our bibliography is a collection of papers that mention explicitly PicoQuant or at least one of our product's name. Searching or browsing through the bibliography allows to find out which laboratories use PicoQuant devices and what type of applications have been reported so far.

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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8792 results found.


Phosphatidylinositol 4,5-bisphosphate clusters act as molecular beacons for vesicle recruitment

Honigmann A., van den Bogaart G., Iraheta E., Risselada H.J., Milovanovic D., Mueller V., Müllar S., Diederichsen U., Fasshauer D., Grubmüller H.,Hell S.W., Eggeling C., Kühnel K., Jahn R.
Nature Structural & Molecular Biology, Vol.020, p.679-686 (2013)

Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)


A self-calibrating bipartite viscosity sensor for mitochondria

Yang Z., He Y., Lee J.-H., Park N., Suh M., Chae W.-S., Cao J., Peng X., Jung H., Kang C., Kim J.S.
Journal of the American Chemical Society, Vol.135, p.9181-9185 (2013)

Reference to: FluoTime 200, MicroTime 200
Related to: Time-resolved Fluorescence


Spatial distribution of neutral oxygen vacancies on ZnO nanowire surfaces: an investigation combining confocal microscopy and first principles calculations

Wong K.M., Alay-e-Abbas S.M., Fang Y., Shaukat A., Lei Y.
Journal of Applied Physics, Vol.114, p.34901-34911 (2013)

Reference to: PicoHarp 300, MicroTime 200, SymPhoTime


p38δ mitogen-activated protein kinase regulates the expression of tight junction protein ZO-1 in differentiating human epidermal keratinocytes

Siljamäki E., Raiko L., Toriseva M., Nissinen L., Näreoja T., Peltonen J., Kähäri V.-M., Peltonen S.
Archives of Dermatological Research, Vol.306, p.131-141 (2013)

Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)


Weak-values technique for velocity measurements

Viza G.I., Martínez-Rincón J., Howland G.A., Frostig H., Shomroni I., Dayan B., Howell J.C.
Optics Letters, Vol.038, p.2949-2952 (2013)

Reference to: PicoHarp 300


Strain-induced defects as nonradiative recombination centers in green-emitting GaInN/GaN quantum well structures

Langer T., Jönen H., Kruse A., Bremers H., Rossow U., Hangleiter A.
Applied Physics Letters, Vol.103, p.22108-22112 (2013)

Reference to: PicoHarp 300


Thermo-optical response of photonic crystal cavities operating in the visible spectral range

Wolters J., Nikolay N., Schoengen M., Schell A.W., Probst J., Löchel B., Benson O.
Nanotechnology, Vol.024, p.315204 (2013)

Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)


Nonlinear optical behavior of metal octaphenoxy phthalocyanines: effect of distortion caused by the central metal

Sanusi S.O., Antunes E., Nyokong T.
Journal of Porphyrins and Phthalocyanines, Vol.017, p.920-927 (2013)

Reference to: FluoTime 200


Methyl anthranilate as generator and quencher of reactive oxygen species: a photochemical study

Gambetta C., Natera J., Massad W.A., García N.A.
Journal of Photochemistry and Photobiology A, Vol.269, p.27-33 (2013)

Reference to: PLS Series


Realizing molecular pixel system for full-color fluorescence reproduction: RGB-emitting molecular mixture free from energy transfer crosstalk

Kwon J.E., Park S., Park S.Y.
Journal of American Chemical Society, Vol.135, p.11239-11246 (2013)

Reference to: FluoTime 200, FluoFit


Histone- and DNA sequence-dependent stability of nucleosomes studied by single-pair FRET

Tóth K., Böhm V., Sellmann C., Danner M., Hanne J., Berg M., Barz I., Gansen A., Langowski J.
Cytometry A, Vol.083, p.839-846 (2013)

Reference to: TimeHarp 100/200
Related to: FRET


Citric acid–γ-cyclodextrin crosslinked oligomers as carriers for doxorubicin delivery

Anand R., Malanga M., Manet I., Manoli F., Tuza K., Aykaç A., Ladavière C., Fenyvesi E., Vargas-Berenguel A., Gref R. Monti S.
Photochemical & Photobiological Sciences, Vol.012, p.1841-1854 (2013)

Reference to: PicoHarp 300, SPADs, SymPhoTime


Dynamic conformational transitions of the EGF receptor in living mammalian cells determined by FRET and fluorescence lifetime imaging microscopy

Ziomkiewicz I., Loman A., Klement R., Fritsch C., Klymchenko A.S., Bunt G., Jovin T.M., Arndt-Jovin D.J.
Cytometry A, Vol.083, p.794-805 (2013)

Reference to: PicoHarp 300, SPADs, SymPhoTime
Related to: FRET


Amplified spontaneous emission in conjugated polyrotaxanes under quasi-cw pumping

Mróz M.M., Sforazzini G., Zhong Y., Wong K.S., Anderson H.L., Lanzani G., Cabanillas-Gonzalez J.
Advanced Materials, Vol.025, p.4347-4351 (2013)

Reference to: HydraHarp 400


Enhanced conduction and charge-selectivity by N-doped graphene flakes in the active layer of bulk-heterojunction organic solar cells

Jun G.H., Jin S.H., Lee B., Kim B.H., Chae W.-S., Hong S.H., Jeon S.
Energy & Environmental Science, Vol.006, p.3000-3006 (2013)

Reference to: MicroTime 200


Steering fluorescence emission with metal-dielectric-metal structures of Au, Ag, and Al

Choudhury S.D., Badugu R., Ray K., Lakowicz J.R.
Journal of Physical Chemistry C, Vol.117, p.15789-15807 (2013)

Reference to: FluoTime 100


Annulated heterocyclic derivatives of 1,3,6,8-tetraazapyrene

Martens S.C., Hahn L., Lombeck F., Rybina A., Wadepohl H., Gade L.H.
European Journal of Organic Chemistra, Vol.2013, p.5295-5302 (2013)

Reference to: FluoTime 100, TimeHarp 100/200


Effect of valence band energy on the photocatalytic performance of N-doped TiO2 for the production of O2 via the oxidation of water by visible light

Yun H.J., Lee D.M., Yu S., Yoon J., Park H.-J., Yi J.
Journal of Molecular Catalysis A: Chemical, Vol.378, p.221-226 (2013)

Reference to: FluoTime 200, FluoFit, PicoHarp 300


Effect of gamma-ray irradiation on the size and properties of CdS quantum dots in reverse micelles

Bekasova O.D., Revina A.A., Rusanov A.L., Kornienko E.S., Kurganova B.I.
Radiation Physics and Chemistry, Vol.092, p.87-92 (2013)

Reference to: SymPhoTime
Related to: Time-resolved Fluorescence


Luminescent metal–organic framework-functionalized graphene oxide nanocomposites and the reversible detection of high explosives

Lee J.H., Jaworski J., Jung J.H.
Nanoscale, Vol.005, p.8533-8540 (2013)

Reference to: MicroTime 200


The optical limitation effect and features of luminescence kinetics in hybrid nanosystems with CdSe/ZnS quantum dots and organic agents

Danilov V.V., Panfutova A.S., Ermolaeva G.M., Khrebtov A.I., Shilov V.B.
Optics and Spectroscopy, Vol.114, p.880-885 (2013)

Reference to: MicroTime 100


DNA hosted and aligned in aqueous interstitia of a lamellar liquid crystal – a membrane–biomacromolecule interaction model system

Carlsson N., Jonsson F., Wilhelmsson L.M., Nordéna B., Åkermana B.
Soft Matter, Vol.009, p.7951-7959 (2013)

Reference to: FluoFit


The influence of shell thickness of Au@TiO2 core–shell nanoparticles on the plasmonic enhancement effect in dye-sensitized solar cells

Liu W.-L., Lin F.-C., Yang Y.-C., Huang C.-H., Gwo S., Huanga M.H., Huang J.-S.
Nanoscale, Vol.005, p.7953-7962 (2013)

Reference to: HydraHarp 400, SymPhoTime


Optically pumped and electrically triggeredsingle photon emission from a singlequantum dot

Rai A.K.
Dissertation, Universität Bochum (2013)

Reference to: TimeHarp 100/200


Complete tomography of a high-fidelity solid-state entangled spin–photon qubit pair

De Greve K., McMahon P.L., Yu L., Pelc J.S., Jones C., Natarajan C.M., Kim N.Y., Abe E., Maier S., Schneider C., Kamp M., Höfling S., Hadfield R.H., Forchel A., Fejer M.M., Yamamoto Y.
Nature Communications, Vol.004, p.2228 (2013)

Reference to: HydraHarp 400
Related to: Quantum Information Processing, Quantum Entanglement