header image scientific

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.

more..


Searching for

8875 results found.


Fast folding dynamics of an intermediate state in RNase H measured by single-molecule FRET

Stockmar F., Kobitski A.Y., Nienhaus G.U.
The Journal of Physical Chemistry B, Vol.120, p.641-649 (2016)

Reference to: MicroTime 200
Related to: FRET


Comprehensive description of blinking-dynamics regimes in single direct-band-gap silicon nanocrystals

Kůsová K., Pelant I., Humpolíčková J., Hof M.
Physical Review B, Vol.093, 035412 (2016)

Reference to: MicroTime 200


Excimer emission based on the control of molecular structure and intermolecular interactions

Lee J., Jung H., Shin H., Kim J., Yokoyama D. Nishimura H., Wakamiya A., Park J.
Journal of Materials Chemistry C, Vol.004, p.2784-2792 (2016)

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


The xanthophyll cycle pigments, violaxanthin and zeaxanthin, modulate molecular organization of the photosynthetic antenna complex LHCII

Janik E., Bednarska J., Zubik M., Sowinski K., Luchowski R., Grudzinski W., Matosiuk D., Gruszecki W.I.
Archives of Biochemistry and Biophysics, Vol.592, p.1-9 (2016)

Reference to: FluoTime 300, FluoFit


Photophysicochemical properties and in vitro cytotoxicity of zinc tetracarboxyphenoxy phthalocyanine – quantum dot nanocomposites

Oluwole D.O., Tilbury C.M., Prinsloo E., Limson J., Nyokong T.
Polyhedron, Vol.106, p.92-100 (2016)

Reference to: FluoTime 300, FluoFit


Fluorescent block copolymer micelles that can self-report on their assembly and small molecule encapsulation

Robin M.P., Osborne S.A.M., Pikramenou Z., Raymond J.E., O’Reilly R.K.
Macromolecules, Vol.049, 653-662 (2016)

Reference to: FluoTime 100, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), FluoFit, LSM Upgrade Kit, SymPhoTime


Graphene/h-BN/GaAs sandwich diode as solar cell and photodetector

Li X., Lin S., Lin X., Xu Z., Wang P., Zhang S., Zhong H., Xu W., Wu Z., Fang W.
Optics Express, Vol.024, p.134-145 (2016)

Reference to: PicoHarp 300


Photoluminescence characterisations of a dynamic aging process of organic–inorganic CH3NH3PbBr3 perovskite

Sheng R., Wen X., Huang S., Hao X., Chen S., Jiang Y., Deng X., Green M.A., Ho-Baillie A.W.Y.
Nanoscale, Vol.008, p.1926-1931 (2016)

Reference to: MicroTime 200


Fluorescence quenching in β-cyclodextrin vesicles: membrane confinement and host–guest interactions

Schibilla F., Stegemann l., strassert C.A., Rizzo F., Ravoot B.J.
Photochemical & Photobiological Sciences, Vol.015, p.1235-243 (2016)

Reference to: FluoTime 300, FluoFit, PicoHarp 300


Plasmon-induced Light Absorption of Phthalocyanine layer in hybrid nanoparticles: enhancement factor and effective spectra

Zasedatelev A.V., Dubinina T.V., Krichevsky D.M., Krasovskii V.I., Gak V.Y., Pushkarev V.E., Tomilova L.G., Chistyakov A.A.
The Journal of Physical Chemistry C , Vol.120, p.1816-1823 (2016)

Reference to: FluoTime 200, FluoFit


Efficient bimolecular mechanism of photochemical hydrogen production using halogenated boron-dipyrromethene (Bodipy) dyes and a bis(dimethylglyoxime) Cobalt(III) complex

Sabatini R.P., Lindley B., McCormick T.M., Lazarides T., Brennessel W.W., McCamant D.W., Eisenberg R.
The Journal of Physical Chemistry B, Vol.120, p.527-534 (2016)

Reference to: PicoHarp 300, SymPhoTime


Optical characteristics of the rare-earth-ions-doped calcium chlorapatite phosphors prepared by using the solid–state reaction method

Kim Y.-K., Lee M., Yang H.-S., Ha M.G., Hong K.S.
Current Applied Physics, Vol.016, p.357-360 (2016)

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


Synthesis of blue‐, green‐, yellow‐, and red‐emitting graphene‐quantum‐dot‐based nanomaterials with excitation‐independent emission

Ke C.-C., Yang Y.-C., Tseng W.-L.
Particle & Particle Systems Characterization, Vol.033, p.132-139 (2016)

Reference to: TimeHarp 100/200


Formation of silver nanoclusters from a DNA template containing Ag (I)-mediated base pairs

Léon J.C., Stegemann L., Peterlechner M., Litau S., Wilde G., Strassert C.A., Müller J.
Bioinorganic Chemistry and Applications, Vol.2016, 7485125 (2016)

Reference to: FluoTime 300


Photophysical properties of symmetrically substituted diarylacetylenes and diarylbuta-1,3-diynes

Bylińska I., Wierzbicka M., Czaplewskia C., Wiczk W.
Photochemical & Photobiological Sciences, Vol.015, p.45-56 (2016)

Reference to: FluoTime 300


Spectroscopy and relaxation dynamics of salicylideneaniline derivative aggregates encapsulated in MCM41 and SBA15 pores

Alarcos N., Sánchez F., Douhal A.
Microporous and Mesoporous Materials, Vol.226, p.34-43 (2016)

Reference to: FluoFit


Nonlinear optical response of a low symmetry phthalocyanine in the presence of gold nanoparticles when in solution or embedded in poly acrylic acid polymer thin films

Bankole O.M., Nyokong T.
Journal of Photochemistry and Photobiology A: Chemistry, Vol.319–320, p.8-17 (2016)

Reference to: FluoTime 200


Time-resolved fluorescence anisotropy study of organic lead halide perovskite

Jiang Y., Wen X., Benda A., Sheng R., Ho-Baillie A.W.Y., Huang S., Huang F., Cheng Y.-B., Green M.A.
Solar Energy Materials and Solar Cells, Vol.151, p.102-112 (2016)

Reference to: MicroTime 200, PicoHarp 300


Quantum dot clusters as single-molecules: deciphering collective fluorescence and energy transfer signatures

Ryan D.P.
Dissertation Colorado State University (2016)

Reference to: TimeHarp 100/200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), SPADs
Related to: Single Molecule Detection


Mesa-top quantum dot single photon emitter arrays: growth, optical characteristics, and the simulated optical response of integrated dielectric nanoantenna-waveguide systems

Zhang J., Chattaraj S., Lu S., Madhukar A.
Journal of Applied Physics, Vol.120, 243103 (2016)

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


FRET study in oligopeptide-linked donor–acceptor system in PVA matrix

Shah S., Mandecki W., Li J., Gryczynski Z., Borejdo J., Gryczynski I., Fudala R.
Methods and Applications in Fluorescence, Vol.004, 047002 (2016)

Reference to: FluoTime 200, FluoFit
Related to: FRET


Adaptive target profile acquiring method for photon counting 3-D imaging lidar

Ye L., Gu G., He W., Dai H., Chen Q.
IEEE Photonics Journal, Vol.008, 16470723 (2016)

Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), PicoHarp 300
Related to: LIDAR or ranging


Single-photon-counting polarization ghost imaging

Liu Y., Shi J., Zeng G.
Applied Optics, Vol.055, p.10347-10351 (2016)

Reference to: HydraHarp 400


Satellite laser ranging with a fibre-based transmitter

Hampf D., Sproll F., Wagner P., Humbert L., Hasenohr T., Riede W., Rodmann J.
20th International Laser Ranging Conference (2016)

Reference to: PicoHarp 300
Related to: LIDAR or ranging


Understanding the bias introduced in quantum dot blinking using change point analysis

Bae Y.J., Gibson N.A., Ding T.X., Alivisatos A.P., Leone S.R.
The Journal of Physical Chemistry C, Vol.120, p.29484-20490 (2016)

Reference to: PicoHarp 300
Related to: Single Molecule Detection