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
1310 results found.
Unconventional multiple ring structure formation from evaporation-induced self-assembly of polymers
Bi W., Wu X., Yeow E. K. L.
Langmuir, Vol.28, p.11056-11063 (2012)
Reference to: MicroTime 200
Salt effect on the ultrafast proton transfer in niosome
Mondal T., Ghosh S., Das A. K., Mandal A. K., Bhattacharyya K.
Journal of Physical Chemistry B, Vol.116, p.8105-8112 (2012)
Reference to:
MicroTime 200
Related to:
FCS
Dynamics of proteins studied by fluorescence correlation spectroscopy
Engelborghs, Y.
FEBS-Sofia School of Protein Science: Structure and dynamics of biological macromolecules, Katholieke Universiteit Leuven (2012)
Reference to:
MicroTime 200
Related to:
FCS
Metal plasmon-coupled fluorescence imaging and label free coenzyme detection in cells
Jian Zhang, Yi Fu, Ge Li, Zhao R. Y.
Biochemical and Biophysical Research Communications, Vol.425, p.696-700 (2012)
Reference to: TimeHarp 100/200, MicroTime 200
Solvation dynamics under a microscope: single giant lipid vesicle
Mojumdar S. S., Ghosh S., Mondal T., Bhattacharyya K.
Langmuir, Vol.28, p.10230-10237 (2012)
Reference to:
MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), PicoHarp 300, SPADs
Related to:
FCS
Microwave-assisted aqueous synthesis of new quaternary-alloyed CdSeTeS quantum dots; and their bioapplications in targeted imaging of cancer cells
Fengzhao Yang, Zhancheng Xu, Jinjie Wang, Feng Zan, Chaoqing Dong, Jicun Ren
Luminescence, Vol.028, p.329-400 (2012)
Reference to:
MicroTime 200
Related to:
FCS, Time-resolved Fluorescence
Plasmonic-enhanced polymer solar cells incorporating solution-processable Au nanoparticle-adhered graphene oxide
Guo-Qiang Fan, Qi-Qi Zhuo, Jun-Jun Zhu, Zai-Quan Xu, Pan-Pan Cheng, Xan-Qing Li, Xu-Hui Sun, Shuit-Tong Lee, Jian-Xin Tang
Journal of Materials Chemistry, Vol.22, p.15614-15619 (2012)
Reference to: MicroTime 200
Diffusion of organic dyes in bovine serum albumin solution studied by fluorescence correlation spectroscopy
Satyajit Patra, Kotni Santhosh, Ashok Pabbathi, Anunay Samanta
RCS Advances, Vol.002, p.6079-6086 (2012)
Reference to:
MicroTime 200, SymPhoTime
Related to:
FCS
Fluorescence polarization and fluctuation analysis monitors subunit proximity, stoichiometry, and protein complex hydrodynamics
Nguyen T. A., Pabak Sarkar, Veetil J. V., Koushik S. V., Vogel S. S.
PLoS ONE, Vol.007, e38209 (2012)
Reference to:
MicroTime 200
Related to:
FCS, FRET, Anisotropy, Time-resolved Fluorescence
Diffusion of organic dyes in a niosome immobilized on a glass surface using fluorescence correlation spectroscopy
Shirsendu Ghosh, Amit Kumar Mandal, Atanu Kumar Das, Tridib Mondal, Kankan Bhattacharyya
Physical Chemistry Chemical Physics, Vol.15, p.9749-9757 (2012)
Reference to:
MicroTime 200
Related to:
FCS
Differential effects of lipids and lyso-lipids on the mechanosensitivity of the mechanosensitive channels MscL and MscS
Nomura T., Cranfield C. G., Deplazes E., Owend D. M., Macmillan A., Battle A. R., Constantine M., Sokabe M., Martinac B.
Proceedings of the National Academy of Sciences of the United States of America, Vol.109, p.8770-8775 (2012)
Reference to:
PicoHarp 300, MicroTime 200
Related to:
FLIM, Time-resolved Fluorescence
Effect of hydrogen-bonding on the excited-state reactivity of fullerene derivatives and its impact on the control of the emission polarisation from photopolic single crystals
Raffy G., Ray D., Cheng-Che Chu, Del Guerzo A., Bassani D. M.
Physical Chemistry Chemical Physics, Vol.021, p.8859-8865 (2012)
Reference to:
MicroTime 200, PicoHarp 300
Related to:
FLIM
Solution structure of the ESCRT-I and -II supercomplex: Implications for membrane budding and scission
Boura E., Różycki B., Hoi Sung Chung, Herrick D. Z., Canagarajah B., Cafiso D. S., Eaton W. A., Hummer G., Hurley J. H.
Structure, Vol.20, p.874-886 (2012)
Reference to:
MicroTime 200
Related to:
FRET
Ato protein interactions in yeast plasma membrane revealed by fluorescence lifetime imaging (FLIM)
Strachotová D., Holoubek A., Kučerová H., Benda A., Humpolíčková J., Váchová L., Palková Z.
Biochimica et Biophysica Acta - Biomembranes, Vol.1818, p.2126-2134 (2012)
Reference to:
PicoHarp 300, MicroTime 200
Related to:
FLIM
Mg2+-linked self-sssembly of FtsZ in the presence of GTP or a GTP analogue involves the concerted formation of a narrow size distribution of oligomeric species
Monterroso B., Ahijado-Guzmán R., Reija B., Alfonso C., Zorrilla S., Minton A. P., Rivas G.
Biochemistry, Vol.51, p.4541-4550 (2012)
Reference to:
MicroTime 200
Related to:
FCS
Synthesis and Characterization of a Noble Metal Enhanced Optical Nanohybrid (NEON): A High Brightness Detection Platform Based on a Dye-Doped Silica Nanoparticle
Roy S., Dixit C. K., Woolley R., O’Kennedy R., McDonagh C.
Langmuir, Vol.28, p.8244-8250 (2012)
Reference to: MicroTime 200
Structure-correlated dual fluorescent bands in BSA-protected Au25 nanoclusters
Xiaoming Wen, Pyng Yu, Yon-Rui Toh, Jau Tang
Journal of Physical Chemistry C, Vol.116, p.11830-11836 (2012)
Reference to: MicroTime 200
Hole transfer dynamics from dye molecules to p-type NiO nanoparticles: effects of processing conditions
Xiangyang Wu, Guichuan Xing , Tan S. L. J., Webster R. D., Tze Chien Sum, Yeow E. K. L.
Physical Chemistry Chemical Physics, Vol.014, p.9511-9519 (2012)
Reference to: MicroTime 200, FluoFit, SymPhoTime
Modulation of physiological and pathological activities of lysozyme by biological membranes
Trusova V.
Cellular & Molecular Biology Letters, Vol.017, p.349-375 (2012)
Reference to:
MicroTime 200, FluoTime 200, SymPhoTime
Related to:
FRET
Spontaneous vesicles, disks, threadlike and spherical micelles found in the solubilization of DMPC liposomes by the detergent DTAC
Correia R. F., Viseu M. I., Prazeres T. J. V., Martinho J. M. G.
Journal of Colloid and Interface Science, Vol.379, p.56-63 (2012)
Reference to:
MicroTime 200
Related to:
FLIM, Time-resolved Fluorescence
Fibrinogen counteracts the antiadhesive effect of fibrin-bound plasminogen by preventing its activation by adherent u937 monocytic cells
Lishko V. K., Yermolenko I. S. , Owaynat H., Ugarova T. P.
Journal of Thrombosis and Haemostasis, Vol.010, p.1081-1090 (2012)
Reference to: MicroTime 200
Mesoscopic analysis of motion and conformation of cross-bridges
Borejdo J., Rich R., Midde K.
Biophysical Reviews, Vol.04, p.299-311 (2012)
Reference to: MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series)
Deoxycholate induced tetramer of αA-crystallin and sites of phosphorylation: Fluorescence correlation spectroscopy and femtosecond solvation dynamics
Chowdhury A., Mojumdar S. S., Choudhury A., Banerjee R., Das K. P., Sasmal D. K., Bhattacharyya K.
Journal of Chemical Physics, Vol.136, 155101 (2012)
Reference to:
PicoHarp 300, MicroTime 200, SymPhoTime
Related to:
FCS
Fluorescence study of drug-carrier interactions in CTAB/PBS buffer model systems
Techen A., Hille C., Dosche C., Kumke M. U.
Journal of Colloid and Interface Science, Vol.377, p.251-261 (2012)
Reference to:
MicroTime 200, SymPhoTime
Related to:
FCS, FRET, Anisotropy, Single Molecule Detection
Ru(II) complexes with N-heterocyclic carbene ligands or terpyridine analogues: synthesis, characterization, and electrochemical and proton-dependent spectrometric properties
Park H.-J., Chung Y.K.
Dalton Transactions, Vol.41, p.5678-5686 (2012)
Reference to: MicroTime 200