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1.
It is shown that some features of intensity distribution among certain vibronic transitions in naphthalene molecule can be understood, when one takes into account adiabatic and nonadiabatic interaction between S1(1B3u), S2(tB2u), and S3(IB3u) electronic states. the vibronic activity of the 6?(b1g) mode in naphthalene-d8 can be explained in terms of an anharmonic coupling with the 7?(b1g) mode. The theoretical analysis suggests reinterpretation of some vibronic transitions.  相似文献   

2.
A no-phonon transition has been observed in Cs2NaSmCl6 at 6355 cm?1. This transition is assigned, in octahedral symmetry, as E″u(6H52) → E'u(6F12) and is proposed to be of pure electric quadrupole origin. A comparison between the experimental and calculated intensity and the orientation-dependent intensity of an associated vibronic transition lend support to this assignment.  相似文献   

3.
Absorption transitions to vibrational levels close to the A state dissociation limit of ICI have been examined using a two-photon sequential absorption technique. The discrete rotational structures of I37 Cl bands to within 0.7 cm?1 of the limit have been selectively excited and analysed. A value of 17557.514 ± 0.030 cm?1 has been obtained for the I(2Po32) + Cl(2Po32) dissociation energy De, relative to the minimum of the ICI ground state potential well. The two-photon technique can be used to excite and display separately the high resolution absorption spectra of different isotopic species of a molecule which are contained in a mixture.  相似文献   

4.
By exciting Rb2 in a supersonic nozzle beam with a pulsed dye laser in the C 1Πu-X 1Σ+g and the D 1Πu-X 1Σ+g band system, we find evidence tor different predissociation processes The products appear as follows from the C state, Rb* (5 2P32) exclusively, and from the D state Rb*(42D32) predominantly, followcd by Rb*(5 2Pi-52S) cascade radiation In addition, a lower bound of De(Rb2X1Σ+g)? 3939± 10 cm?1 is obtained.  相似文献   

5.
57Fe Mössbauer spectra have been obtained for Fe(p-CH3C6H4SO3)2 between 2.3 and 300 K in zero field, and at 2.3 and 4.2 K in longitudinal applied magnetic fields ranging from 1.1 to 5.6 T. The complex is a fast-relaxing paramagnet under all conditions studied and there is no evidence of antiferromagnetic exchange coupling. The FeO6 chromophore is distorted by a trigonal elongation and the orbital ground state is the [(23)12|±2〉 ? (13)12|?1〉] doublet. The temperature dependence of the quadrupole splitting has been analysed via a crystal-field model to provide estimates of the axial field splitting parameter Ds = -93 cm-1, spin-orbit coupling constant λ = -70 cm-1, and fine structure constant Dσ = -28 cm-1. The magnetic properties of the complex are described by treating the ground state as a non-Kramers doublet with fictitious spin ? = 12. Five separate Mössbauer-Zeeman spectra can be fitted in this spin-hamiltonian approximation with identical values of the g- and A-tensor components, viz. g = 1.0, gu = 9.0; A ≈ 2.0 mm s-1. Au = -1.79 mm s-1. The trigonal z axis, the z axis of the electric field gradient tensor, and the easy axis of magnetisation are collinear, and the saturation value of the internal hyperfine field along this axis is +13.0 T.  相似文献   

6.
Microwave—optical double resonance signals have been detected in a mass-selected ion-beam spectrometer for 12C16O+. With the optical excitation of fluorescence from the R1 (12) line of the (0,0) band of the A2Π32 ← X2∑ transition of 20350.6 cm?1, the microwave resonances occurred at 118101.8 ± 0.2 MHz and at 117694 ± 2 MHz corresponding to the N= 1, J = 32N = 0, J = 12 and the N = 1, J = 12N = 0, J = 12 transitions.  相似文献   

7.
The reactions (I) Hg2Cl2(s) + Br2(g) and (II) HgCl2(s) + HgBr2(s) have been investigated by an X-ray method. Both the reactions yield two forms of the mixed halide HgClBr, designated as α-HgClBr and β-HgClBr. The cell parameters of the two are as follows:α-HgClBr: a = 6.196 A?, b = 13.12 A?, c = 4.37 A?, z = 4, ? = 5.91 g/cm3. The powder pattern and cell parameters are similar to that of HgCl2. Therefore it is probable that the chlorine atoms, in the linear halogenHghalogen molecules of HgCl2 structure have been replaced by bromines, and since the radius of the bromine atom is larger than that of chlorine, the lattice is larger in this case.β-HgClBr: a = 6.78 A?, b = 13.175 A?, c = 4.17 A?, z = 4, ? = 5.40. These parameters are the same as those reported in the literature for β-Hg(ClBr)2, and its X-ray powder pattern is similar to HgCl2. Therefore this phase also has linear halogenHghalogen molecules but the distribution of Cl and Br atoms is perhaps random.Heating the products (I) and (II) up to the melting point increases the amount of α phase and decreases the β phase, whereas crystallization increases the β phase. DTA study has supported the X-ray findings.  相似文献   

8.
The hindered rotational energy levels of CD4 in its low temperature phase have been computed by assuming that the hamiltonian describing the motion of the CD4 molecules is invariant under the direct product group T × T. By analyzing the heat capacity of CD4(III) the torsional frequency was found to be 49 cm?1 and the barrier to rotation was estimated to be between 350 and 390 calories.  相似文献   

9.
Emissions of the hydroperoxyl radical HO2 in the spectral range from 1.0 to 1.6 μm were studied at low and medium resolution. The resolved spectrum shows the expected parallel band structure for the vibrational ovetone transition 2A″ (200-000); in the case of the vibronic transitions 2A′, 000 → 2A″, 000 and 2A′, 001 → 2A″, 000, however, comparison of experimental and computer simulated spectra shows that there also occur intense subbands with ΔK = 0, in addition to the ordinary ΔK = ± 1 transitions. The cause for the break-down of the type-C selection rule is not well known. In the reaction system of ethylene with discharged oxygen vibronic bands could be observed originating from 2A′ levels up to at least ν′3 = 6. The most probable excitation mechanism for these high vibronic levels is the chemiluminescent reaction HCO + O2 (1Δg) → HO2(2A′, 00ν′2) + CO. From the computer fits to the spectra of HO2 and DO2 at medium resolution the origins of the 000-000 bands and the fundamental frequencies ν3′ of the excited 2A′ state could be determined; the values are νo(HO2)=7028 ± 3 cm?1, νo(DO2)=7034 ± 8 cm?, ν3′(HO2)=927 ± 10 cm?, and ν3′(DO2)=940 ± 28 cm?1.  相似文献   

10.
The crystall and molecular structures of (ClAlN-i-Pr)6 (I), and of (Me0.83H0.17AlN-i-Pr)6(MeAlN-i-Pr)6 have been determined by single crystal three-dimensional X-ray analysis. Block-matrix least-squares refinements led to conventional R factor of 0.039 for I and 0.037 for II. The compounds are isostructural, as the cage molecules consist of a prismatic hexagonal framework, (AlN)6, similar to that observed for the parent hydrogenated analogue (HAlN-i-Pr)6.Some differences in bond distances and angles are discussed, in connection with the different Al-bonded substituents. Crystal data: I, trigonal space group R3; a = 17.083(2), c = 9.652(1); Z = 3; Dc 1.46 g cm?3; II, trigonal space group R3, a = 17.378(3), c = 9.706(3) »; Z = 3; Dc 1.15 g cm?3.  相似文献   

11.
A linear molecule or one electron atom interacting with a tetrahedral molecule is considered. Formulae are presented for various rotationally averaged E → R and V → R first order transition probabilities arising from dipole-octupole (R?5) and quadrupole-octupole (R?6) coupling. Relatively large amounts of rotational energy can be transferred in first order (ΔJ ? 3). With CH4 as the octupolar partner, energy transfer upto 350 cm?1 at room temperature is shown to proceed very efficiently. For the 52P32 → 52P12 transition in Rb, σqu is calculated to be ? 28 A2 in quite good agreement with experiment and using an independent value of the octupole moment of CH4. Energy transfer above 350 cm?1 becomes rapidly less efficient. Among V → R transfer processes in the 500–700 cm?1 range, the long range mechanism is almost certainly not the dominant one in the relaxation of CO2+ (010) by CH4calc ≈ 10?3 σobs) but will be important in the relaxation of SO2.  相似文献   

12.
Deactivation rate constants of spin-orbital excited Br atoms in the reactions Br(2P12) + O2 → Br(2P32) + O2 (k1), and Br(2P12) + NO → Br(2P32) + NO (k4) have been measured with a photodissociative IBr laser on the electronic transition 2P12?2P32 in the Br atom (λ = 2.7 μm). The values obtained are (6.4 ± 1.8) × 10?14 cm3 s?1 and (1.9 ± 0.6) × 10?12 cm3 s?1, respectively. Comparison with published data leads to the conclusion that, contrary to a widely accepted point of view, the high rate constants for the quenching of excited halogen atoms are due to resonant energy transfer processes and not to the paramagnetic nature of the quencher.  相似文献   

13.
Sc2O2S is hexagonal, P63mmc, a = 3.5196(4) Å, c = 12.519(2) Å, Z = 2, Dc = 3.807 g cm?3, Dm = 4.014 g cm?3, μ(Mo) = 55.51 cm?1. The final R value is 0.038 for 205 symmetry-independent reflections. This scandium oxysulfide has c = 12.52 Å, twice the value found in rare earth oxysulfides. An La2O2S cell combined with its reflection in a (001) mirror gives the Sc2O2S cell.  相似文献   

14.
It is shown that the N-lines in the luminescence spectra of the two spinels ZnAl2O4:Cr3+ and MgAl2O4:Cr3+ exhibit quite similar dependencies on chromium concentration, excitation frequency, and thermal treatment of the samples. While most of these lines are structure dependent, the line N4 at νR ? ν ≈ 400 cm?1 and two very weak lines are in both cases due to chromium-pairs. The exchange Hamiltonian Hex = JS1 · S2 + j(S1 · S2)2 used for the ground-state splitting is fitted by the parameters J = 40.9 cm?1, j = 1.5 cm?1 and J = 45.6 cm?1, j = 2.0 cm?1 for ZnAl-spinel and MgAl-spinel, respectively. The differences between the spectra of low-doped and high-doped samples are in both cases caused by the existence of a phonon sideband of the N4-line, which is in many respects similar to the well-known phonon side band of the R-line.  相似文献   

15.
The ā2ΠΩ → X?2ΠΩ, Ω = 32, 12 emission spectra of rotationally cooled chloro- and deuterochloro-acetylene cations have been obtained by electron-impact ionisation of a seeded helium supersonic free jet. The resultant spectral improvements lead to the identification of the spin-orbit components and isotope splittings and to a vibrational assignment of the prominent bands. The vibrational frequencies could be determined to within ±1 cm?1 for many of the fundamentals for the cations in the X?2ΠΩ and ā2ΠΩ electronic states.  相似文献   

16.
We show that the two-photon resonances in the third-order susceptibility can be exploited to yield two-photon spectra of molecular gases at moderately high spectral resolution. This form of spectroscopy does not depend on the occurrence of processes (such as fluorescence of photoionization) leading to indirect methods of two-photon absorption. The method is direct and leads in principle to values for a two-photon cross section. Comparisons of two-photon and coherent anti-Stokes Raman resonances leads to ratios of Raman and two-proton cross sections independent of the laser powers and spatial characteristics. The technique is documented with rotationally resolved spectra of SO2 and NO. A value for |αxxαyy| of 1.5 × 10?52 cm6 was measured for the O12 (6built:12) component of the (A)2Σ ← (X)2 Π12 transition of nitric oxide.  相似文献   

17.
The gas phase IR spectrum of isothiazole, C3H3NS, between 550 and 1700 cm−1 was recorded with a resolution of ca. 0.003 cm−1. The rotational structure of seven fundamental bands in the region 750–1500 cm−1 has been assigned and analysed by the Watson Hamiltonian model. A number of local resonances in the bands have been identified and explained qualitatively in terms of Coriolis interactions. For each band upper state spectroscopic constants, including band center, rotational constants, and quartic centrifugal distortion constants are given. From observed crossings due to resonances we locate the weak bands ν9(A′) and ν13(A′) at 1041.9(2) and 642.0(3) cm−1, respectively. The anharmonic frequencies have been determined using a cc-pVTZ basis set, at the MP2 and B3LYP levels; the two theoretical methods give very similar results for rotational constants, anharmonic band center frequencies and distortion constants, and many of these are in good agreement with experiment.  相似文献   

18.
Four new bands of the unassigned N2 Herman infrared system (HIR) are observed in a pulsed-discharge apparatus. The upper HIR state is produced by the N2(A) + N2(A) energy pooling reaction which is studied by time-resolved spectroscopy; its production rate constant is found to be ?4 × 10?11 cm3 molecule?1 s?1 and its energy \?12eV.  相似文献   

19.
From measurements of the heats of iodination of CH3Mn(CO)5 and CH3Re(CO)5 at elevated temperatures using the ‘drop’ microcalorimeter method, values were determined for the standard enthalpies of formation at 25° of the crystalline compounds: ΔHof[CH3Mn(CO)5, c] = ?189.0 ± 2 kcal mol?1 (?790.8 ± 8 kJ mol?1), ΔHof[Ch3Re(CO)5,c] = ?198.0 ± kcal mol?1 (?828.4 ± 8 kJ mo?1). In conjunction with available enthalpies of sublimation, and with literature values for the dissociation energies of MnMn and ReRe bonds in Mn2(CO)10 and Re2(CO)10, values are derived for the dissociation energies: D(CH3Mn(CO)5) = 27.9 ± 2.3 or 30.9 ± 2.3 kcal mol?1 and D(CH3Re(CO)5) = 53.2 ± 2.5 kcal mol?1. In general, irrespective of the value accepted for D(MM) in M2(CO)10, the present results require that, D(CH3Mn) = 12D(MnMn) + 18.5 kcal mol?1 and D(CH3Re) = 12D(ReRe) + 30.8 kcal mol?1.  相似文献   

20.
New rotational analyses have been made of the B3Π0+u—X1Σ+g systems of 79Br2, 81Br2 and 127I2. The density of vibrational states near the dissociation limit in the upper states follows the LeRoy—Bernstein predictions for n = 5. From short extrapolations, the ground state dissociation energies are found to be: D0(79Br81Br) = 15895.6 cm?1, D0(127I2) = 12440.1 cm?1.  相似文献   

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