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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.


Mitochondrial structural changes in the process of mitophagy

Zhang D., He Y., Wang J., Wu L., Liu B., Cai S., Li Y., Yan W., Yang Z., Qu J.
Journal of Biophotonics, Vol.015, e202200006 (2022)

Reference to: SymPhoTime


Crystal facet engineering of TiO2 nanostructures for enhancing photoelectrochemical water splitting with BiVO4 nanodots

Lee M.G., Yang J.W., Park H., Moon C.W., Andoshe D.M., Park J., Moon C.-K., Lee T.H., Choi K.S., Cheon W.S., Kim J.-J., Jang H.W.
Nano-Micro Letters, Vol.014, 48 (2022)

Reference to: FluoTime 300


All-inorganic perovskite solar cells with tetrabutylammonium acetate as the buffer layer between the SnO2 electron transport film and CsPbI3

Zhong H., Li W., Huang Y., Cao D., Zhang C., Bao H., Guo Z., Wan L., Zhang X., Zhang Xi., Li Y., Ren X., Wang X., Eder D., Wang K., Liu S.F., Wang S.
ACS Applied Materials & Interfaces, Vol.014, p.5183-5193 (2022)

Reference to: FluoTime 300, FluoFit
Related to: TRPL


Long-range dipole-dipole interactions in a plasmonic lattice

Bodetti A.K., Guan J., Sentz T., Juarez X., Newman W., Cortes C., Odom T.W., Jacob Z.
Nano Letters, Vol.022, p.22-28 (2022)

Reference to: HydraHarp 400


Acid-base reaction of a super-photoacid with a cooperative amide hydrogen-bonded chain

Choi Y.‐J., Kim H., Kwon O.H.
Bulletin of the Korean Chemical Society (2022)

Reference to: FluoTime 300, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), FluoFit


Modulating defect density of NiO hole transport layer via tuning interfacial oxygen stoichiometry in perovskite solar cells

Haider M.I., Fakhruddin A., Ahmed S., Sultan M., Schmidt-Mende L.
Solar Energy, Vol.233, p.326-336 (2022)

Reference to: FluoTime 300


Multiple resonance TADF sensitizers enable green-to-UV photon upconversion: application in photochemical transformations

Wei Y., Pan K., Cao X., Li Y., Zhou X., Yang C.
Chinese Chemical Society, just accepted (2022)

Reference to: FluoTime 300


A few Pt single atoms are responsible for the overall co-catalytic activity in Pt/TiO2 photocatalytic H2 generation

Qin S., Denisov N., Will J., Kolařík J., Spiecker E. Schmuki P.
Solar RRL, Vol.006, 2101026 (2022)

Reference to: FluoTime 300, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)


Chemically stable semitransparent perovskite solar cells with high hydrogen generation rates based on photovoltaic-photoelectrochemical tandem cells

Ban H., Park J., Yun J., Ma S., Jang G., Goh S., Lee C.U., Lee J., Moon J.
Advanced Photonics Research, Vol.003, 2100317 (2022)

Reference to: MicroTime 200, PicoHarp 300


Coincident fluorescence-burst analysis of the loading yields of exosome-mimetic nanovesicles with fluorescently-labeled cargo molecules

Sanaee M., Sandberg E. Ronquist K.G., Morrell J.M., Widengren J., Gallo K.
Small, Vol.018, 2106241 (2022)

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


Analysis of magic-size clusters in crude reaction muxtures using multiwavelength analytical ultracentrifugation

Peters E., Rosenberg R., Cölfen H., Boldt K.
The Journal of Physical Chemistry C, Vol.126, p.2642-2655 (2022)

Reference to: FluoTime 300


Microdynamics of lamin A Ig-fold domain regulates higher order assembly of the protein

Mukherjee C., Sengupta D., Maganti L., Mahendar M., Bhattacharyya D., Sengupta K.
bioRxiv, preprint (2022)

Reference to: PMA Series, SymPhoTime


Effect of tellurium doping on optoelectronic properties of blue ZnTeSe quantum dots

Jang E., Kim T., Chung H., Choi S., Won Y., Lee J.
Research Square, preprint (2022)

Reference to: TimeHarp 260, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), PMA Series, SymPhoTime


Influence of ROCK pathway manipulation on the actin cytoskeleton hight

Grandy C., Port F., Pfeil J., Gottschalk K.-E.
Cells, Vol.011, 430 (2022)

Reference to: MicroTime 200, HydraHarp 400, SymPhoTime
Related to: FLIM


Decreased fast time scale spectral diffusion of a nonpolar InGaN quantum dot

Kocher C., Jarman J.C., Zhu T. Kusch G. Oliver R.A., Taylor R.A.
ACS Photonics, Vol.009, p.275-281 (2022)

Reference to: PicoHarp 300


Uncovering synergistic effect of chloride additives for efficient quasi-2D perovskite solar cells

Wang Z., Liu L., Liu X., Song D., Shi D., Wu S., Tong Y., Ren H., Li M., Zheng Y., Zhao D.
Chemical Engineering Journal, Vol.432, 134367 (2022)

Reference to: FluoTime 300


Bifunctional ionic liquid for enhancing efficiency and stability of carbon counter electrode-based MAPbI3 perovskites solar cells

Huang Y. Zhong H., Li W., Cao D., Xu Y., Wan L., Zhang X. Zhang X., Li Y., Ren X., Guo Z., Wang X., Eder D., Wang S.
Solar Energy, Vol.231, p.1048-1060 (2022)

Reference to: FluoFit


Monitoring molecular microparticles through the amorphous-to-crystalline transformation and fluorescence enhancement/tuning

Maurya R.S., Jayanthi S., Chandaluri Ch.G., Radhakrishnan T.P.
Chemistry of Materials, Vol.034, p.244-253 (2022)

Reference to: MicroTime 200, PicoHarp 300


Correlated Na+ ion migration invokes zero thermal quenching in a sodium superionic conductor-type phosphor

Viswanath N.S.M., Fang M.-H., Huu H.T., Han J.H., Liu R.-S., Im W.B.
Chemistry of Materials, Vol.034, p.107-115 (2022)

Reference to: MicroTime 200, TimeHarp 260


Release of linker histone from the nucleosome driven by polyelectrolyte competition with a disordered protein

Heidarsson P.O., Mercadante D., Sottini A., Nettels D., Borgia M.B., Borgia A., Kilic S., Fierz B., Best R.B., Schuler B.
nature chemistry (2022)

Reference to: MicroTime 200, HydraHarp 400, SPADs


Enhancement of Schottky junction silicon solar cell with CdSe/ZnS quantum dots decorated metal nanostructures

Nguyen H.T., Tran T.T., Bhatt V., Kumar M., Song J., Yun J.-H.
applied sciences, Vol.012, 83 (2022)

Reference to: FluoTime 300, MicroTime 100


Novel biomedical applications for spectrally resolved fluorescence lifetime imaging microscopy

Rohilla, S.
Dissertation Medizinischen Fakultät Charité – Universitätsmedizin Berlin (2021)

Reference to: MicroTime 200, FLIMBee, MultiHarp 150, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), HydraHarp 400, SPADs, SymPhoTime
Related to: FLIM, Pulsed Interleaved Excitation (PIE), FRET


On-demand editing of surface properties of microstructures made by 3D direct laser writing via photo-mediated RAFT polymerization

Wu X., Gross B., Leuschel B., Mougin K., Dominici S., Gree S., Belqat M., Tkachenko V., Cabannes-Boué B., Chemtob A., Poly J., Spangenberg A.
Advanced Functional Materials, Vol.032, 2109446 (2021)

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


Triple-cation perovskite solar cells fabricated by a hybrid PVD/blade coating process using green solvents

Siegrist S., Yang S.-C., Gilshtein E., Sun X., Tiwari A.N., Fu F.
Journal of Materials Chemistry A, Vol.009, p.26680-26687 (2021)

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


Physical passivation of grain boundaries and defects in perovskite solar cells by an isolating thin polymer

Ochoa-Martinez E., Ochoa M., Ortuso R.D., Ferdowski P., Carron R., Tiwari A.N., Steiner U., Saliba M.
ACS Energy Letters, Vol.006, p.2626-2634 (2021)

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