Search Results - "Suhm, M. A"
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Proton tunneling estimates for malonaldehyde vibrations from supersonic jet and matrix quenching experiments
Published in Physical chemistry chemical physics : PCCP (28-05-2006)“…FTIR tunneling splittings for a range of fundamental excitations of malonaldehyde are determined from adiabatic cooling and symmetry breaking experiments in…”
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2
Chiral recognition between lactic acid derivatives and an aromatic alcohol in a supersonic expansion: electronic and vibrational spectroscopy
Published in Physical chemistry chemical physics : PCCP (01-01-2006)“…Jet-cooled diastereoisomeric complexes formed between a chiral probe, (+/-)-2-naphthyl-1-ethanol, and chiral lactic acid derivatives have been characterised by…”
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3
Hydrogen bonding lights up overtones in pyrazoles
Published in The Journal of chemical physics (21-12-2007)“…The spectral complexity in the NH stretching mode of hydrogen-bonded pyrazoles is traced back to an extensive Fermi resonance system involving combinations and…”
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Comparative FTIR Spectroscopy of HX Adsorbed on Solid Water: Ragout-Jet Water Clusters vs Ice Nanocrystal Arrays
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (17-02-2005)“…In addition to revealing the stretch-mode bands of the smallest mixed clusters of HCl and HBr (HX) with water, the ragout-jet FTIR spectra of dense mixed…”
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Hydrogen bonded rings, chains and lassos: the case of t-butyl alcohol clusters
Published in Molecular physics (10-03-2001)“…Infrared OH stretching spectra of hydrogen bonded 2-methyl-propan-2-01 (t-butyl alcohol) clusters are investigated by ragout-jet FTIR spectroscopy. A spectral…”
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Ragout-jet FTIR spectroscopy of cluster isomerism and cluster dynamics: from carboxylic acid dimers to N2O nanoparticles
Published in Faraday discussions (2001)“…Direct absorption supersonic jet Fourier transform spectroscopy provides a panoramic view of the dynamics of molecular clusters over the entire IR spectral…”
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Interaction of external H+ with the Na+-H+ exchanger in renal microvillus membrane vesicles
Published in The Journal of biological chemistry (10-06-1983)“…We examined the effects of external H+ on the kinetics of Na+-H+ exchange in microvillus membrane vesicles isolated from the rabbit renal cortex. The initial…”
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Spectroscopic characterization of N2O aggregates: from clusters to the particulate state
Published in Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (01-10-2003)Get full text
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How Broad Are Water Dimer Bands?
Published in Science (American Association for the Advancement of Science) (07-05-2004)“…There is little doubt that water dimers are present at subpercent levels in humid air at ambient temperatures, but direct detection has proven to be difficult…”
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10
FTIR investigation of non-volatile molecular nanoparticles
Published in Chemical physics letters (13-10-2000)“…A new approach for the spectroscopic investigation of non-volatile molecular nanoparticles with diameters in the range between 10 and 100 nm is proposed. The…”
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Modifier role of internal H + in activating the Na + -H + exchanger in renal microvillus membrane vesicles
Published in Nature (London) (09-09-1982)“…The intracellular pH in animal cells in generally maintained at a higher level than would be expected if H+ were passively distributed across the plasma…”
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Explicitly correlated coupled cluster calculations of the dissociation energies and barriers to concerted hydrogen exchange of (HF)n oligomers (n=2,3,4,5)
Published in Molecular physics (01-05-1998)“…The electronic dissociation energies and barriers to concerted hydrogen exchange of (HF) n oligomers with n = 2,...,5 are computed by means of a many-body…”
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13
Spectroscopic characterization of N(2)O aggregates: from clusters to the particulate state
Published in Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (01-10-2003)“…Collisional cooling is used to generate N(2)O particles with radii ranging from the subnanometer to the submicrometer region. The vibrational dynamics of the…”
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14
Self-organization of lactates in the gas phase
Published in Organic & biomolecular chemistry (07-12-2003)“…Chiral recognition and subsequent selective self-organisation into hydrogen-bonded n-mers is observed in supersonic methyl lactate expansions. The nu(OH) and…”
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Tuning the Hydrogen Bond Donor/Acceptor Isomerism in Jet-Cooled Mixed Dimers of Aliphatic Alcohols
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (09-03-2006)“…Hydrogen bonded complexes between two different aliphatic alcohols exhibit donor/acceptor isomerism. In a supersonic jet expansion, the less stable isomer can…”
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16
Competing hydrogen bond topologies in 2-fluoroethanol dimer
Published in Journal of molecular structure (03-04-2006)“…Isolated 2-fluoroethanol exists predominantly as a pair of enantiomeric all- gauche conformations, which are stabilized by an intramolecular O–H⋯F interaction…”
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Hydrogen fluoride clusters: from rings to nanocrystals
Published in Journal of aerosol science (01-09-1997)Get full text
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A new ab initio based six-dimensional semi-empirical pair interaction potential for HF
Published in Chemical physics letters (11-10-1996)“…We present an analytical pair potential for hydrogen fluoride based on 3284 ab initio points at counterpoise-corrected MP2-R12 and lower levels using a large…”
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FTIR spectroscopy of hydrogen fluoride clusters in synchronously pulsed supersonic jets. Isotopic isolation, substitution and 3-d condensation
Published in Chemical physics letters (25-04-1997)“…Synchronously pulsed supersonic jet FTIR spectra of HF/DF expansions in rare gases are investigated over a wide range of cluster compositions. Size-resolved…”
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20
Hydrogen Bonding in 2-Propanol. The Effect of Fluorination
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (20-01-2000)“…Fourier transform infrared (FTIR) spectra at thermal equilibrium and in seeded, pulsed slit jet expansions of 2-propanol (IP), 1,1,1-trifluoro-2-propanol…”
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