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Couplings hydrogen bond

H/D isotope effects during compression assisted concerted HH-transfer in two cooperatively coupled hydrogen bonds, (c) Geometric H/D isotope effects during compression assisted stepwise HH-transfer in two anticooperatively coupled hydrogen bonds. [Pg.197]

Hydrogen bond formation ET-coupled hydrogen bonding... [Pg.48]

Additional fundamental information can be obtained concerning the cooperative nature of the double-helix-to-coil transition in DNA (which involves coupled hydrogen-bond rupture) from model... [Pg.145]

A nice example of this teclmique is the detennination of vibrational predissociation lifetimes of (HF)2 [55]. The HF dimer has a nonlinear hydrogen bonded structure, with nonequivalent FIF subunits. There is one free FIF stretch (v ), and one bound FIF stretch (V2), which rapidly interconvert. The vibrational predissociation lifetime was measured to be 24 ns when excitmg the free FIF stretch, but only 1 ns when exciting the bound FIF stretch. This makes sense, as one would expect the bound FIF vibration to be most strongly coupled to the weak intenuolecular bond. [Pg.1174]

A microwave pulse from a tunable oscillator is injected into the cavity by an anteima, and creates a coherent superposition of rotational states. In the absence of collisions, this superposition emits a free-mduction decay signal, which is detected with an anteima-coupled microwave mixer similar to those used in molecular astrophysics. The data are collected in the time domain and Fourier transfomied to yield the spectrum whose bandwidth is detemimed by the quality factor of the cavity. Hence, such instruments are called Fourier transfomi microwave (FTMW) spectrometers (or Flygare-Balle spectrometers, after the inventors). FTMW instruments are extraordinarily sensitive, and can be used to examine a wide range of stable molecules as well as highly transient or reactive species such as hydrogen-bonded or refractory clusters [29, 30]. [Pg.1244]

In addition to testing predictions of tire patlrway model in proteins, experiments have also examined tire prediction tlrat tire decay across a hydrogen bond (from heteroatom to heteroatom) should be about as costly as tire decay across two covalent bonds. Indeed, by syntlresizing a family of hydrogen bonded aird covalently bonded systems witlr equal bond counts (according to this recipe), it was demonstrated tlrat coupling across hydrogen bonded... [Pg.2978]

DeRege P J F, Williams S A and Therien M J 1995 Direct evaluation of electronic coupling mediated by hydrogen bonds—implications for biological electron transfer Sc/e/ ce 269 1409-13... [Pg.2995]

Imidazole, 4-methyl-annular tautomerism, 5, 363 association, 5, 362 boiling point, 5, 362 bromination, 5, 398 deuteration, 5, 417 diazo coupling, 5, 403 hydrogen bonding, S, 350 hydroxymethylation, 5, 404 iodination, 5, 400 kinetics, 5, 401 mass spectra, 5, 358 melting point, 5, 362 methylation, 5, 364 sulfonation, 5, 397 synthesis, 5, 479-480, 482, 484, 489 Imidazole, 5-methyl-annular tautomerism, 5, 363 Imidazole, l-methyl-4-chloro-ethylation, 5, 386 Imidazole, l-methyl-5-chloro-ethylation, 5, 386 nitration, 5, 395... [Pg.653]

In addition, the frequency cooo, as well as the tunneUng distance can also be extracted from the same empirical data. Thus all the information needed to construct a PES is available. Of course, this PES is a rather crude approximation, since all the skeleton vibrations are replaced by a single mode with effective frequency cooo and coupling parameter C. From the experimental data it is known that the strong hydrogen bond (roo < 2.6 A) is usually typical of intramolecular hydrogen transfer. [Pg.104]


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See also in sourсe #XX -- [ Pg.43 , Pg.44 , Pg.131 , Pg.132 , Pg.133 , Pg.147 , Pg.148 , Pg.149 , Pg.150 , Pg.207 , Pg.208 , Pg.209 , Pg.210 , Pg.211 , Pg.212 , Pg.213 , Pg.214 , Pg.215 , Pg.216 , Pg.217 , Pg.218 , Pg.219 , Pg.220 , Pg.221 , Pg.222 ]




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Acid-base-coupled hydrogen bonding

Carbon coupling constants hydrogen bonding

Coupled protons, hydrogen bonds, tunneling

Coupling constants, hydrogen bonds

Couplings Through Hydrogen Bonds

Couplings across Hydrogen Bonds

Couplings hydrogenative

Davydov coupling cyclic hydrogen-bonded dimers

Davydov coupling, hydrogen bonds

H-transfers Coupled to Conformational Changes and Hydrogen Bond Pre-equilibria

Hydrogen Bond Scalar Couplings

Hydrogen bonding anharmonic coupling

Hydrogen bonds coupled tunneling

Hydrogen bonds proton-phonon coupling

Hydrogen bonds tunneling transition, coupled protons

Hydrogen-bond couplings, variation

One-bond Couplings not Involving Hydrogen

One-bond Couplings to Hydrogen

Strong coupling theory, anharmonicity hydrogen bonds

Three-bond Couplings Between Hydrogen and Heteronuclei

Three-bond Couplings not Involving Hydrogen

Three-bond Couplings to Hydrogen

Trans-hydrogen bond coupling

Two-bond Couplings not Involving Hydrogen

Two-bond Couplings to Hydrogen

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