Bibliography
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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Searching for MicroTime 200
1302 results found.
Photoelectrochemical hydrogen production using CdS nanoparticles photodeposited onto Li-ion-inserted titania nanotube arrays
Kang U., Park K.J., Han D.S., Kim Y.-M., Kim S., Park H.
Catalysis Today, Vol.303, p.289-295 (2018)
Reference to: MicroTime 200
Curvature of designed armadillo repeat proteins allows modular peptide binding
Hansen S., Ernst P., König S.L.B., Reichen C., Ewald C., Nettels D., Mittl P.R.E., Schuler B., Plückthun A.
Journal of Structural Biology, Vol.201, p.108-117 (2018)
Reference to:
MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Related to:
Pulsed Interleaved Excitation (PIE)
Photophysical properties of flavonoids extracted from Syngonanthus nitens, the golden grass
Schneider Berlim L., Bezerra Jr. A.G., Pazin W.M., Ramin T.S., Schreiner W.H., Ito A.S.
Journal of Luminescence, Vol.194, p.394-400 (2018)
Reference to:
MicroTime 200, SPADs, SymPhoTime
Related to:
FCS
Interaction of a quercetin derivative-lensoside Aβ with liposomal membranes
Pawlikowska-Pawlega B., Kapral J., Gawron A., Stochmal A., Zuchowski J., Pecio L., Luchowski R., Grudzinski W., Gruszecki W.I.
Biochimica et Biophysica Acta (BBA) - Biomembranes, Vol.1860, p.292-299 (2018)
Reference to:
MicroTime 200, SymPhoTime
Related to:
FLIM
Continuous purification of reaction products by micro free-flow electrophoresis enabled by large area deep-UV fluorescence imaging
Pfeiffer S.A., Rudisch B.M., Glaeser P., Spanka M., Nitschke F., Robitzki A.A., Schneider C., Nagl S., Belder D.
Analytical and Bioanalytical Chemistry, Vol.410, p.853-862 (2018)
Reference to: MicroTime 200, SymPhoTime
Photoluminescence quenching of dye molecules near a resonant silicon nanoparticle
Zyuzin M.V., Baranov D.G., Escudero A., Chakraborty I., Tsypkin A., Ushakova E.V., Kraus F., Parak W.J., Makarov S.V.
Scientific Reports, Vol.008, 6107 (2018)
Reference to: TimeHarp 100/200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), PMA Series, MicroTime 100, SymPhoTime
Serum albumins are efficient delivery systems for the photosensitizer hypericin in photosensitization-based treatments against Staphylococcus aureus
Pezzuoli D., Cozzolino M., Montali C., Brancaleon L., Bianchini P., Zantedeschi M., Bonardi S., Viappiani C., Abbruzzetti S.
Food Contol, Vol.094, p.254-262 (2018)
Reference to:
MicroTime 200, SPADs
Related to:
FCS, STED
Hydrothermal synthesis of fluorescent silicon nanoparticles using maleic acid as surface-stabilizing ligands
Jeong W., Jo S., Park J., Kwon B., Choi Y., Chae A., Park S.Y., In I.
Journal of Materials Science, Vol.053, p.2443-2452 (2018)
Reference to: MicroTime 200, SymPhoTime
Facile synthesis of ternary TiO2 NP/Rh & Sb-codoped TiO2 NR/titanate NT composites photocatalyst: Simultaneous removals of Cd2+ ions and Orange (II) dye under visible light irradiation (λ ≥ 420 nm)
Kim S.-G., Dhandole L.K., Lim J.-M., Chae W.-S., Chung H.-S., Oh B.-T., Jang J.S.
Applied Catalysis B: Environmental, Vol.224, p.791-803 (2018)
Reference to: MicroTime 200, SymPhoTime
Energy transfer in hybrid systems composed of TPD and CdSe/CdS/ZnS colloidal nanocrystals
Kurochkin N.S., Katsaba A.V., Ambrozevich S.A., Vitukhnovsky A.G., Vaschenko A.A., Tananaev P.N.
Journal of Luminescence, Vol.194, p.530-534 (2018)
Reference to: MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Au nanorod photosensitized La2Ti2O7 nanosteps: successive surface heterojunctions boosting visible to near-infrared photocatalytic H2 evolution
Cai X., Zhu M., Elbanna O.A., Fujitsuka M., Kim S., Mao L., Zhang J., Majima T.
ACS Catalysis, Vol.001, p.122-131 (2018)
Reference to: MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Probing the conformational dynamics of photosystem I in unconfined and confined spaces
Das G., Chattoraj S. Nandi S., Mondal P., Saha A., Bhattacharyya K., Ghosh S.
Physical Chemistry Chemical Physics, Vol.020, p.449-455 (2018)
Reference to: MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Solar desalination coupled with water remediation and molecular hydrogen production: a novel solar water-energy nexus
Kim S., Piao G., Han D.S., Shon H.K., Park H.
Energy & Environmental Science, Vol.011, p.344-353 (2018)
Reference to:
MicroTime 200, SymPhoTime
Related to:
FRET
CdS/CdSe co-sensitized brookite H:TiO2 nanostructures: charge carrier dynamics and photoelectrochemical hydrogen generation
Chang Y.-S., Choi M., Baek M., Hsieh P.-Y., Yong K., Hsu Y.-J.
Applied Catalysis B: Environmental, Vol.225, p.379-385 (2018)
Reference to: MicroTime 200, SymPhoTime
The three-fold axis of the HIV-1 capsid lattice is the species-specific binding interface for TRIM5α
Morger D., Zosel F., Bühlmann M., Züger S., Mittelviefhaus M., Schuler B., Luban J., Grütter M.G.
Journal of Virology, Vol.092, e01541-17 (2018)
Reference to: MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
High efficiency solar chemical conversion using electrochemically disordered titania nanotube arrays transplanted onto transparent conductive oxide electrodes
Jeong H.W., Park K.J., Han D.S., Park H.
Applied Catalysis B: Environmental, Vol.226, p.194-201 (2018)
Reference to: MicroTime 200
Efficiency enhancement of Kesterite Cu2ZnSnS4 solar cells via solution-processed ultrathin tin oxide intermediate layer at absorber/buffer interface
Sun H., Sun K., Huang J., Yan C., Liu F., Park J., Pu A., Stride J.A., Green M.A., Hao X.
ACS Applied Energy Materials, Vol.001, p.154-160 (2018)
Reference to: MicroTime 200
Dependence of photocurrent enhancements in QD-sensitized MoS2 devices on MoS2 film properties
Gough J.J., McEvoy N., O'Brien M., Bell A.P., McCloskey D., Boland J.B., Coleman J.N., Duesberg G.S., Bradley A.L.
Advanced Functional Materials, Vol.028, 1706149 (2018)
Reference to:
MicroTime 200
Related to:
TRPL
Dynamic study of the light soaking effect on perovskite solar cells by in-situ photoluminescence microscopy
Deng X., Wen X., Zheng J., Young T., Lau C.F.J., Kim J., Green M., Huang S., Ho-Baillie A.
Nano Energy, Vol.046, p.356-364 (2018)
Reference to:
MicroTime 200, PicoHarp 300
Related to:
TRPL
Highly intense room-temperature photoluminescence in V2O5 nanospheres
Le T.K., Kang M., Han S.W., Kim S.W.
RSC Advances, Vol.008, p.41317-41322 (2018)
Reference to:
MicroTime 200
Related to:
FLIM, TRPL
Solution-processed, silver-doped NiOx as hole transporting layer for high-efficiency inverted perovskite solar cells
Zheng J., Hu L., Yun J.S., Zhang M., Lau C.F.J., Bing J., Deng X., Ma Q., Cho Y., Fu W., Chen C., Green M.A., Huang S.
ACS Applied Energy Materials, Vol.001, p.561-570 (2018)
Reference to: MicroTime 200
The effect of thermal evaporated MoO3 intermediate layer as primary back contact for kesterite Cu2ZnSnS4 solar cells
Park J., Huang J., Sun K., Ouyang Z., Liu F., Yan C., Sun H., Pu A., Green M., Hao X.
Thin Solid Films, Vol.648, p.39-45 (2018)
Reference to: MicroTime 200
Selective detection of 2,4,6‐Trinitrophenol based on in situ‐generated fluorescent Zn2+–Anthracene ensembles in 80% aqueous Dimethyl Sulfoxide
Pandith A., Kim H.-S.
Bulletin of the Korean Chemical Society, Vol.039, p.14-23 (2018)
Reference to: MicroTime 200
Ultrafast carrier dynamics in GaN/InGaN multiple quantum wells nanorods
Chen W., Wen X., Latzel M., Yang J., Huang S., Shrestha S., Patterson R., Christiansen S., Conibeer G.
Proceedings of SPIE, Nanophotonics Australasia 2017, 104565T (2018)
Reference to: MicroTime 200
Long-term fluorescence lifetime imaging of a genetically encoded sensor for caspase-3 activity in mouse tumor xenografts
Zherdeva V.V., Kazachkina N.I., Shecheslavskiy V.I., Savitsky A.P.
Journal of Biomedical Optics, Vol.023, 035002 (2018)
Reference to:
MicroTime 200, SymPhoTime
Related to:
FLIM, FRET