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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.


Lateral charge carrier transport in Cu(In, Ga)Se2 studied by time-resolved photolumiscence mapping

Ochoa M., Nishiwaki S., Yang S.-C., Tiwari A.N., Carron R.
physica status solidi (RRL) - Rapid Research Letters, Vol.015, 2100313 (2021)

Reference to: FluoTime 300, MicroTime 100
Related to: TRPL


Shaping perovskites: in situ crystallization mechanism of rapid thermally annealed, prepatterned perovskite films

Günzler A., Bermúdez-Ureña E., Muscarella L.A., Ochoa M., Ochoa-Martínez E., Ehrler B., Saliba M., Steiner U.
ACS Applied Materials & Interfaces, Vol.013, p.6854-6863 (2021)

Reference to: FluoTime 300, MicroTime 100
Related to: TRPL


Iodine reduction for reproducible and high-performance perovskite solar cells and modules

Chen S., Xiao X., Gu H., Huang J.
Science Advances, Vol.007, eabe8130 (2021)

Reference to: MicroTime 100
Related to: FLIM


Preventing lead leakage with built-in resin layers for sustainable perovskite solar cells

Chen S., Deng Y., Xiao X., Xu S., Rudd P.N., Huang J.
Nature Sustainability, Vol.004, p.636-643 (2021)

Reference to: MicroTime 100


Singlet oxygen generation by hybrid structures on CdSe/ZnS quantum dots and tetraphenylporphyrin in organic medium

Sewid F.A., Skurlov I.D., Kurshanov D.A., Orlova A.O.
Chemical Physics Letters, Vol.765, 138303 (2021)

Reference to: MicroTime 100
Related to: FRET


A2BC-type porphyrin sam on gold surface for bacteria detection applications: synthesis and surface functionalization

Neumann L., Könemund L., Rohnacher V., Pucci A., Johannes H.-H., Kowalsky W.
Materials, Vol.014, 1934 (2021)

Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), MicroTime 100, SymPhoTime
Related to: FLIM


Optical properties of core-shell Fe3O4/CdSe/ZnS nanocomposites

Matiushkina A.A., Dubavik A.U., Baranov M.A., Maslov V.G., Orlova A.O.
Optics and Spectroscopy, Vol.129, p.780-788 (2021)

Reference to: MicroTime 100


Changes in the fluorescence characteristics of quantum dots based on InP/ZnS during the interaction with cells

Litvinov I.K., Belyaeva T.N., Leontieva E.A., Orlova A.O., Kornilova E.S.
Cell and Tissue Biology, Vol.015, p.90-97 (2021)

Reference to: MicroTime 100
Related to: FLIM, FRET


The influence of thermal treatment conditions (solvothermal versus microwave) and solvent polarity on the morphology and emission of phloroglucinol-based nitrogen-doped carbon dots

Khavlyuk P.D., Stepanidenko E.A., Bondarenko D.P., Danilov D.V., Koroleva A.V., Baranov A.V., Maslo V.G., Kasak P., Fedorov A.V., Ushakova E.V., Rogach A.L.
Nanoscale, Vol.013, p.3070-3078 (2021)

Reference to: MicroTime 100


Protocol on synthesis and characterization of copper-doped InP/ZnSe quantum dots as ecofriendly luminescent solar concentrators with high performance

Eren G.O., Sadeghi S., Shahzad M., Nizamoglu S.
STAR Protocols, Vol.002, 100664 (2021)

Reference to: MicroTime 100


Chiral carbon dots based on L/D-cysteine produced via room temperature surface modification and one-pot carbonization

Das A., Arefina I.A., Danilov D.V., Koroleva A.V., Zhizhin E.V., Parfenov P.S., Kuznetsova V.A., Ismagilov A.O., Litvin A.P., Fedorov A.V., Ushakova E.V., Rogach A.L.
Nanoscale, Vol.013, p.8058-8066 (2021)

Reference to: MicroTime 100


Large-area and efficient perovskite light-emitting diodes via low-temperature blade-coating

Chu S., Chen W., Fang Z., Xiao X., Liu Y., Chen J., Huang J., Xiao Z.
Nature Communications, Vol.012, 147 (2021)

Reference to: Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), MicroTime 100
Related to: FLIM


Single-walled carbon nanotube thin film for flexible and highly responsive perovskite photodetector

Marunchenko A.A., Baranov M.A., Ushakova E.V., Ryabov D.R., Pushkarev A.P., Gets D.S., Nasibulin A.G., Makarov S.V.
Advanced Functional Materials, Vol.032, 2109834 (2021)

Reference to: MicroTime 100


Protocol on synthesis of copper-doped InP/ZnSe quantum dots as ecofriendlich luminescent solar concentrators with high performance and large area

Eren G.O., Sadeghi S., Shahzad M., Nizamoglu S.
STAR Protocols, Vol.002, 100664 (2021)

Reference to: MicroTime 100


Megapixel SPAD cameras for time-resolved applications

Morimoto K.
Dissertation EPFL (2021)

Reference to: SPADs


A scaling law for SPAD pixel miniaturization

Morimoto K., Charbon E.
Sensors, Vol.021, 3447 (2021)

Reference to: SPADs


Ligand-metal charge transfer induced via adjustment of textural properties controls the performance of single-atom catalysts during photocatalytic degradation

Liu J., Zou Y., Cruz D., Savateev A., Antonietti M., Vilé G.
ACS Applied Materials Interfaces, Vol.013, p.25858-25867 (2021)

Reference to: FluoTime 250


Performance assessment of laser sources for time-domain diffuse correlation spectroscopy

Samaei S., Colombo L. Borycki D., Pagliazzi M., Durduran T., Sawosz P., Wojtkiewicz S., Contini D., Torricelli A., Pifferi A., Liebert A.
Biomedical Optics Express, Vol.012, p.5351-5367 (2021)

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


Resolving the triexciton recombination pathway in CdSe/CdS nanocrystals through state-specific correlation measurements

Shulenberger K.E., Coppieters ‘t Wallant S.C., Klein M.D., McIsaac A.R., Goldzak T., Berkinsky D.B., Utzat H., Barotov U., Van Voorhis T., Bawendi M.G.
Nano Letters, Vol.021, p.7457-7464 (2021)

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


Integrin intra-heterodimer affinity inversely correlates with integrin activatability

Sun G., Guillon E., Holley S.A.
Cell Reports, Vol.035, 109230 (2021)

Reference to: LSM Upgrade Kit, SymPhoTime
Related to: FCS


All-photon polarimetric time-of-flight imaging

Baek S.-H., Heide F.
Computer Vision and Pattern Recognition (2021)

Reference to: TimeHarp 260


Core size dependent trapping and detrapping dynamics in CdSe/CdS/ZnS quantum dots

Vishnu E.K., Naai A.A.K., Thomas K.G.
The Journal of Physical Chemistry C, Vol.125, p.25706-25716 (2021)

Reference to: MicroTime 200


Intermolecular interactions and self-assembly in Pt(II) complex-nanoclay hybrids as luminescent reporters for spectrally resolved PLIM

Gangadharappa S.C., Maisuls I., Salto I.P., Niemann S., Bachtin V., Herrmann F.C., Strassert C.A.
The Journal of Physical Chemistry C, Vol.125, p.5739-5747 (2021)

Reference to: MicroTime 200, FluoTime 300, TimeHarp 260, PicoHarp 300


Fluorescence Lifetime Imaging Microscopy (FLIM) of intracellular transport by means of doubly labelled siRNA architectures

Doll L., Lackner J., Rönicke F., Nienhaus G.U., Wagenknecht H.-A.
ChemBioChem, Vol.022, p.2561-2567 (2021)

Reference to: MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), SymPhoTime
Related to: FLIM


Silver-promoted high-performance (Ag,Cu)(In,Ga)Se2 thin-film solar cells High-Performance (Ag,Cu)(In,Ga)Se2 Thin-Film Solar Cells

Yang S.-C., Sastre J., Krause M., Sun X., Hertwig R., Ochoa M., Tiwari A.N., Carron R.
Solar RRL, Vol.005, 2100108 (2021)

Reference to: PicoHarp 300