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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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8875 results found.


Macromolecular crowding: how shape and interactions affect diffusion

Skóra T., Vaghefikia F., Fitter J., Kondrat S.
The Journal of Physical Chemistry B, Vol.124, p.7537-7543 (2020)

Reference to: MicroTime 200, SymPhoTime
Related to: FCS


Al2O3:C and Al2O3:C,Mg optically stimulated luminescence 2D dosimetry applied to magnetic resonance guided radiotherapy

Shrestga B., Yukihara E.G., Cusumano D., Placidi L.,
Radiation Measurements, Vol.138, 106439 (2020)

Reference to: TimeHarp 260


Bright and color-tunable single layer perovskite host-ionic guest light emitting electrochemical cells

Mishra A., DiLuzio S., Alahbakhshi M., Adams A., Bowler M.H., Gu Q., Zakhidov A.A., Bernard S., Slinker J.D.
Materials Science (2020)

Reference to: PicoHarp 300


In situ observation of a photodegradation-induced blueshift in perovskite nanocrystals using single-particle spectroscopy combined with atomic force microscopy

Darmawan Y.A., Yamauchi M., Masuo S.
The Journal of Physical Chemistry C, Vol.124, p.18770-18776 (2020)

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


A correlative study of film lifetime, hydrogen content, and surface passivation quality of amorphous silicon films on silicon wafers

Wu H., Nguyen H.T., Black L., Liu A., Liu R., CHen W., Kang D., Yang W., Macdonald D.
IEEE Journal of Photovoltaics, Vol.010, p.1307-1312 (2020)

Reference to: PicoHarp 300


High-performance nonfullerene organic photovoltaics applicable for both outdoor and indoor environments through directional photon energy transfer

Han Y.W., Jung C.H., Lee H.S., Jeon S.J., Moon D.K.
ACS Applied Materials & Interfaces, Vol.012, p.38470-38482 (2020)

Reference to: MicroTime 200


Luminescence color tuning of Ce3+ and Tb3+ co-doped Ca2YZr2Al3O12 phosphors with high color rendering index via energy transfer

Qu M., Zhang X., Mi X., Sun H., Liu Q., Bai Z.
Journal of Luminescence, Vol.228, 117557 (2020)

Reference to: FluoTime 300


Fluorescent charge-transfer excited states in acceptor derivatized thiophene oligomers

Jones A.L., Schanze K.S.
The Journal of Physical Chemistry A, Vol.124, p.7001-7013 (2020)

Reference to: FluoTime 300


Transient spectral fluctuations of single molecules revealed using an optical antenna

Wen T., Zjang X.-W., Cheng Y., Zhang W., Ye L., Lin H., Li X.-Z., Gong Q., Lu G.
The Journal of Physical Chemistry C, Vol.124, p.18219-18225 (2020)

Reference to: PicoHarp 300


Controllable growth of Ga2O3 hexagonal prism with pyramid end and monitoring size-dependent electron transfer process in perylene/Ga2O3 conjugate system via FLIM

Acikgoz S., Yungevis H.
Applied Physics A, Vol.126, 644 (2020)

Reference to: PicoHarp 300, SymPhoTime
Related to: FLIM


Reconstruction of the fluorescence spectra of bisretinoids and the products of their photooxidation and photodegradation from the retinal pigment epithelium of the human eye

Yakovleva M.A., Radchenko A.Sh., Kostyukov A.A., Arbukhanova P.M., Borzenko S.A., Kuzmin V.A., Feldman T.B., Ostrovsky M.A.
Russian Journal of Physical Chemistry B, Vol.014, p.462-467 (2020)

Reference to: FluoTime 300


Synergetic Li-Ca co-doped for Ce valence conversion in Yttrium Aluminium

Hovhannesyan K.L., Derdzyan M.V., Novikov A., Petrosyan A.G., Dujardin C.
physica status solidi (b), Vol.257, 2000243 (2020)

Reference to: PicoHarp 300


Unmodified Rose Bengal photosensitizer conjugated with NaYF4:Yb,Er upconverting nanoparticles for efficient photodynamic therapy

Borodziuk A., Kowalik P., Duda M.A., Wojciechowski T., Minikaye R., Kalinowska D., Klepka M., Sobczak K., Kłopotowski Ł., Sikora B.
Nanotechnology, Vol.031, 465101 (2020)

Reference to: TimeHarp 100/200


Luminescence degradation mechanisms in CdS/ZnSe colloidal nanocrystals

Zabolotskii M.S., Katsaba A.V., Ambrozevich S.A., Vitukhnovskii A.G., Vasil’ev R.B.
Bulletin of the Lebedev Physics Institute, Vol.047, p.185-189 (2020)

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


Chromatin recruitment of OGG1 requires cohesin and mediator and is essential for efficient 8-oxoG removal

Lebraud E., Pinna G., Siberchicot C., Depagne J., Busso D., Fantini D., Irbah L., Robeska E:, Kratassiouk G., Ravanat J.-L., Epe B., Radicella J.P., Campalans A.
Nucleic Acids Research, Vol.048, p.9082-9097 (2020)

Reference to: SymPhoTime


Interaction of the small-molecule kinase inhibitors tofacitinib and lapatinib with membranes

Haralampiev I., de Armiño D.J.A., Luck M., Fischer M., Abel T., Huster D., Di Lella S., Scheidt H.A., Müller P.
Biochimica et Biophysica Acta (BBA) - Biomembranes, Vol.1862, 183414 (2020)

Reference to: FluoTime 200


Growth and luminescent properties of new Eu2+ doped RbBa2I5 scintillator

Rebrova N.V., Grippa A.Yu., Calà R., Martinazzoli L., Auffray E., Boiaryntseva I.A.
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol.978, 164463 (2020)

Reference to: PMA Series


One-pot fabrication of amino acid and peptide stabilized gold nanoclusters for the measurement of the lead in plasma samples using chemically modified cellulose paper

de Oliveira M., Bornman N., Forbes A.
Sensors and Actuators B: Chemical, Vol.322, 128603 (2020)

Reference to: TimeHarp 260


Highly efficient inverted polymer solar cells based on ethanolamine-treated indium tin oxide as cathode

Li Q., Chen W.-C., Qiu Z., Huo Y.
Organic Electronics, Vol.085, 105896 (2020)

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


Assessment of a silicon-photomultiplier-based platform for the measurement of intracellular Calcium dynamics with targeted Aequorin

Ruffinatti F.A., Lomazzi S., Nardo L., Santoro R., Martemiyanov A., Dionisi M., Tapella L., Genazzani A.A., Lim D., Distasi C., Caccia M.
ACS Sensors, Vol.005, p.2388-2397 (2020)

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


Is disorder beneficial in perovskite-sensitized solid-state upconversion? The role of DBP doping in Rubrene

Wieghold S., Bieber A.S., VanOrman Z.A., Rodriguez A., Nienhaus L.
The Journal of Physical Chemistry C, Vol.124, p.18132-18140 (2020)

Reference to: MultiHarp 150, HydraHarp 400


Visualization of stem cell niche by fluorescence lifetime imaging microscopy

Okkelman I.A., Puschhof J., Papkovsky D.B., Dmitriev R.I
Intestinal Stem Cells, Vol.2171 p.65-97 (2020)

Reference to: SymPhoTime
Related to: FLIM


Perovskite quantum dot lasing in a Gap-plasmon nanocavity with ultralow threshold

Hsieh Y.-H., Hsu B.-W., Peng K.-N., Lee K.-W., Chu C.W., Chang S.-W., Lin H.-W., Yen T.-J., Lu Y.-J.
ACS Nano, Vol.014, p.11670-11676 (2020)

Reference to: FluoFit, PicoHarp 300


Characterizing dynamic cerebral vascular reactivity using a hybrid system combining time-resolved near-infrared and diffuse correlation spectroscopy

Milej D., Shahid M.,Abdalmalak A., Rajaram A., Diop M., St. Lawrence K.
Biomedical Optics Express, Vol.011, p.4571-4585 (2020)

Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), HydraHarp 400, PMA Series


Superluminal motion-assisted four-dimensional light-in-flight imaging

Morimoto K., Wu M.-L., Ardelean A., Charbon E.
Physical Review X, Vol.011, 011005 (2020)

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