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Molecule spectroscopy

Many of the most interesting current developments in electronic spectroscopy are addressed in special chapters of their own in this encyclopedia. The reader is referred especially to sections B2.1 on ultrafast spectroscopy. Cl.5 on single molecule spectroscopy, C3.2 on electron transfer, and C3.3 on energy transfer. Additional topics on electronic spectroscopy will also be found in many other chapters. [Pg.1147]

Xie X S 1996 Single-molecule spectroscopy and dynamics at room temperature Acc. Chem. Res. 29 598-606... [Pg.1799]

The teclmiques and applications of single molecule spectroscopy are currently in a state of rapid development, making tliis a difficult field to summarize at any given time. This contribution is, at best, a single frame of a movie... [Pg.2503]

Durand Y, Woehl J C, Viellerobe B, Gdhde W and Orrit M 1999 New design of a cryostat-mounted scanning near-field optical microscope for single molecule spectroscopy Rev. Sc/. Instrum. 70 1318-25... [Pg.2505]

Ha T, Chemla D S, Enderle T and Weiss S 1997 Single molecule spectroscopy with automated positioning Appl. [Pg.2505]

Plakhotnik T, Donley E A and Wild U P 1997 Single-molecule spectroscopy Ann. Rev. Phys. Chem. 48 181-212... [Pg.2506]

Kummer S, Basche T and Brauchle C 1994 Terrylene in p-terphenyl a novel single crystalline system for single molecule spectroscopy at low temperatures Chem. Phys. Lett. 229 309-16... [Pg.2506]

Piakhotnik T, Moerner W E, Irngartinger T and Wild U P 1994 Single molecule spectroscopy in Shpol skii matrices Chimia 48 31-2... [Pg.2507]

Pirotta M, Renn A, Werts M FI V and Wild U P 1996 Single molecule spectroscopy. Perylene in the Shpol skii matrix n-nonane Chem. Phys. Lett. 250 576-82... [Pg.2507]

Mais S, Tittel J, Basche T and Brauchle C 1997 Terrylenediimide a novel fluorophore for single-molecule spectroscopy and microscopy from 1.4 K to room temperature J. Chem. Phys. A 101 8435-40... [Pg.2507]

Tittel J, Kettner R, Basche T, Brauchle C, Quante FI and Mullen K 1995 Spectral diffusion in an amorphous polymer probed by single molecule spectroscopy J. Lumin. 64 1-11... [Pg.2507]

Zilker S J, Kador L, Friebel J, Vainer Y G, Kol chenko M A and Personov R I 1998 Comparison of photon echo, hole burning, and single molecule spectroscopy data on low-temperature dynamics of organic amorphous solids J. Phys. Chem 109 6780-90... [Pg.2507]

Wild U P, Guttler F, Pirotta M and Renn A 1992 Single molecule spectroscopy stark effect of pentacene in p-terphenyl Chem. Phys. Lett. 193 451-5... [Pg.2508]

Guttler F, Sepiol J, Plakhotnik T, Mitterdorfer A, Renn A and Wild U P 1993 Single molecule spectroscopy fluorescence excitation spectra with polarized light J. Lumin. 56 29-38... [Pg.2508]

Bach FI, Renn A, Zumofen G and Wild U P 1999 Exciton dynamics probed by single molecule spectroscopy Phys. Rev. Lett. 82 2195-8... [Pg.2508]

Janshoff, A., Neitzerl, M., Oberdorfer, Y. and Fuchs, H., Force spectroscopy of molecular systems - single molecule spectroscopy of polymers and biomolecules. Angew. Chem. Int. Edn., 39(18), 3213-3237 (2000). [Pg.216]

Pettinger, B., Picardi, G., Schuster, R. and Ertl, G. (2000) Surface enhanced Raman spectroscopy towards single molecule spectroscopy. Electrochemistry, 68, 942-949. [Pg.17]

There are two important drawbacks of such an approach (1) a polarity scale based on a particular class of probes, in principle, does not account, for example, sizes of probes, which should strongly effect the interactions (2) betain dyes do not fluoresce, which restrict essentially the field of application of this approach, because in many cases, absorption spectrum could not be measured accurately (small volumes of samples, study of cells, and single molecules spectroscopy). Therefore, polarity-sensitive fluorescent dyes offer distinct advantage in many applications. [Pg.208]

Dye stuffs are among the oldest topics of synthetic organic and industrial chemistry, and it is exciting to follow their role in nanosciences and single molecule spectroscopy. [Pg.326]

Optical properties of dendrimers bearing eight chromophores have been examined by single molecule spectroscopy techniques. It is especially exciting that variations in the spectra are recorded if one of these dendrimers is observed for a period of time under continuous irradiation.1481 The fluorescence intensity of the dendrimer nanoparticle also jumps between discrete emissive levels. All these findings suggest the existence of strong electronic interactions between several perylene imide chromophores within one dendrimer and provide new... [Pg.334]

Single-molecule spectroscopy of a dendrimer-based host-guest system. Chem Eur J 7 4126-4133... [Pg.189]

Schlindler F, Lupton JM, Feldmann J, Scherf U (2004) A universal picture of chromophores in 7i-conjugated polymers derived from single-molecule spectroscopy. Proc Natl Acad Sci 101 14695-147000... [Pg.388]

The attachment of a distinct number of fluorescent dyes at the periphery of a stiff three-dimensional nanoparticle is of fundamental interest to study interactions between single chromophores in close vicinity to each other. We chose as a dye one of the rylene series, perylenemonoimide, for the decoration of our polyphenylene dendrimers due to their outstanding properties. Rylene dyes show an exceptional chemical and photochemical stability and therefore are well suited for single molecule spectroscopy (SMS) [661. [Pg.29]


See other pages where Molecule spectroscopy is mentioned: [Pg.268]    [Pg.2482]    [Pg.2495]    [Pg.2495]    [Pg.2510]    [Pg.758]    [Pg.13]    [Pg.163]    [Pg.217]    [Pg.224]    [Pg.369]    [Pg.64]    [Pg.19]    [Pg.34]    [Pg.318]    [Pg.318]    [Pg.329]    [Pg.329]    [Pg.279]    [Pg.299]    [Pg.30]   
See also in sourсe #XX -- [ Pg.101 ]




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Adsorbed probe molecules infrared spectroscopy

Atmospheric Trace Molecule Spectroscopy

Atmospheric Trace Molecule Spectroscopy ATMOS)

Biological molecules, proton spectroscopy

Computational Strategies for Spectroscopy: From Small Molecules to Nano Systems, First Edition

Configuration interaction organic molecule spectroscopy

Correlation functions single molecule spectroscopy

Diatomic molecules electronic spectroscopy

Diatomic molecules photoelectron spectroscopy

Diatomic molecules vibrational spectroscopy

Dynamic single molecule force spectroscopy

Electron energy loss spectroscopy molecules

Electronic Spectroscopy of High Temperature Open-Shell Polyatomic Molecules

Electronic spectroscopy of diatomic molecules

Electronic spectroscopy of molecules

Electronic spectroscopy of polyatomic molecules

Electronic spectroscopy organic molecules

Electronic spectroscopy polyatomic molecules

Emission spectroscopy of dissociating molecules

Experimental Techniques of Diatomic Molecule Spectroscopy

Fluorescence Spectroscopy of Adsorbed Atoms and Molecules

Fluorescence correlation spectroscopy single molecule studies

Fluorescence correlation spectroscopy single-molecule detection

Frequency modulation, single molecule spectroscopy

Infrared Spectroscopy of Organic Molecules

Infrared spectroscopy acetylene molecules

Infrared spectroscopy carbon monoxide molecules

Infrared spectroscopy interstellar molecule detection

Infrared spectroscopy of polyatomic molecules

Large molecule anharmonic vibrational spectroscopy

Molecule neutron scattering spectroscopy

Molecules photoionization spectroscopy

Molecules resonance ionization spectroscopy

Molecules rotational-vibrational spectroscopy

Molecules spectroscopy Supramolecular

Molecules, vibrational spectroscopy

Molecules, vibrational spectroscopy molecular crystal

Molecules, vibrational spectroscopy small, isolated

Multiparameter Spectroscopy of Single Molecules

Nonlinear molecules vibrational spectroscopy

Optically active molecules (spectroscopy

Organic molecules, spectroscopy

Peculiarities of NMR Spectroscopy for Molecules Adsorbed on Carbon Surface

Photodissociation Dynamics of Hydride Molecules H Atom Photofragment Translational Spectroscopy (Ashfold, Mordaunt, and Wilson)

Photoelectron Spectroscopy for Molecules

Photoelectron spectroscopy molecules

Photoionization spectroscopy large molecules

Physical Principles and Methods of Single-Molecule Spectroscopy in Solids

Polyatomic molecules photoelectron spectroscopy

Polyatomic molecules rotational spectroscopy

Polyatomic molecules vibrational spectroscopy

Preparation of samples for single molecule fluorescence spectroscopy

Resonance frequency single molecule spectroscopy

Rotational Spectroscopy of Linear Polyatomic Molecules

Rotational Spectroscopy of Non-Linear Polyatomic Molecules

Rotational spectroscopy molecule rotations

Scanning single molecule force spectroscopy

Seeing Molecules Spectroscopy Revisited

Single molecule emission spectroscopy

Single molecule fluctuation spectroscopy

Single molecule fluorescence spectroscopy

Single molecule fluorescence spectroscopy sample preparation

Single molecule fluorescence techniques spectroscopy

Single molecule force spectroscopy (SMFS

Single molecule spectroscopy experimental applications

Single molecule spectroscopy principles

Single molecule spectroscopy simulation

Single molecule spectroscopy stochastic theory

Single molecule spectroscopy three-time correlation function

Single molecule spectroscopy validity

Single molecule spectroscopy, dyes

Single molecule surface enhanced Raman spectroscopy

Single-molecule fluorescence spectroscopy microscopes

Single-molecule fluorescence spectroscopy scanning near-field optical

Single-molecule force spectroscopy

Single-molecule spectroscopy

Solvation effects organic molecule spectroscopy

Spectroscopy and (Photochemistry of Polyatomic Alkaline Earth Containing Molecules (Bemath)

Spectroscopy detecting interstellar molecules

Spectroscopy large molecules

Spectroscopy naphthalene molecule

Spectroscopy of Adsorbed Probe Molecules

Spectroscopy of dissociating molecules

Spectroscopy of embedded molecules

Spectroscopy of polyatomic molecules

Spectroscopy single-molecule Raman

Supersonic Jet Spectroscopy of Selected D-A Molecules

Time-Resolved Single Molecule Spectroscopy

Vacuum Ultraviolet Photoelectron Spectroscopy of Inorganic Molecules

Vibrational Spectroscopy of Diatomic and Linear Molecules

Vibrational Spectroscopy of Nonlinear Molecules

Vibrational spectroscopy bent molecules

Vibrational spectroscopy linear molecules

Vibrational spectroscopy molecule vibration

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