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1.
Far-i.r. absorption intensities have been measured for H2O and D2O in C6H6 solutions. Beer's law plots were found to be nonlinear. From the plots, the equilibrium constants of dimer formation in benzene were estimated to be 2.4M-1 and 3.3M-1 for H2O and D2O at 20°C, respectively. Based on Onsager's reaction field and including explicitly the effect of differences in molecular size between solute and solvent molecules, the internal moment of a water molecule and the volume ratio of a molecule to a cavity were estimated from the integrated absorption intensity of a D2O monomer in C6H6 as 1.98 D and 0.7, respectively  相似文献   

2.
The electron-stimulated desorption (ESD) of D and H ions from condensed D2O and H2O films is investigated. Three low-energy peaks are observed in the ESD anion yield, which are identified as arising from excitation of 2B1, 2A1 and 2B2 dissociative electron attachment (DEA) resonances. Additional structure is observed between 18 and 32 eV, which may be due to ion pair formation or to DEA resonances involving the 2a1 orbital. The ion yield resulting from excitation of the 2B1 resonance increases as the film is heated. We attribute the increase in the ion yield to thermally induced hydrogen bond breaking near the surface, which enhances the lifetimes of the excited states that lead to desorption.  相似文献   

3.
Adiabatic potential energy surfaces (PESs) for three major isotopologues of water, H216O, H217O, and H218O, are constructed by fitting to observed vibration-rotation energy levels of the system using the nuclear motion program DVR3D employing an exact kinetic energy operator. Extensive tests show that the mass-dependent ab initio surfaces due to Polyansky et al. [O.L. Polyansky, A.G. Császár, S.V. Shirin, N.F. Zobov, P. Barletta, J. Tennyson, D.W. Schwenke, P.J. Knowles, Science 299 (2003) 539-542.] provide an excellent starting point for the fits. The refinements are performed using a mass-independent morphing function, which smoothly distorts the original adiabatic ab initio PESs. The best overall fit is based on 1788 experimental energy levels with the rotational quantum number J = 0, 2, and 5. It reproduces these levels with a standard deviation of 0.079 cm−1 and gives, when explicit allowance is made for nonadiabatic rotational effects, excellent predictions for levels up to J = 40. Theoretical linelists for all three isotopologues of water involved in the PES construction were calculated up to 26 000 cm−1 with energy levels up to J = 10. These linelists should make an excellent starting point for spectroscopic modelling and analysis.  相似文献   

4.
5.
Using the 2,5-bis(2-pyridyl)-1,3,4-thiadiazole (bptd), we recently prepared [Cu2(bptd) (H2O) Cl4] and [Ni2(bptd)2 (H2O)4] Cl4, 3H2O in which the magnetic centres are connected through one diazine+one chloro and two diazine ligand bridges, respectively. These two compounds are the first examples that show null intramolecular magnetic interactions despite M-M distances close to 3.7 Å within perfectly planar edifices:Down to , [Cu2(bptd)Cl4(H2O)] is paramagnetic while, below Tt, half of the Cu2+ions interact, leading to residual paramagnetism of one Cu2+/f.u. Magnetic susceptibility measurements, EPR and pulsed EPR study indicate the original intermolecular nature of AF exchanges.[Ni2(bptd)2(H2O)4]Cl4·3H2O susceptibility obeys a Curie-law involving pure paramagnetism. Moreover, its EPR spectrum can be interpreted on the basis of virtual S=1 monomers. Below 70 K, Zero Field Splitting (D∼275 G) due to dipolar interactions without magnetic exchanges could be responsible for the LT spectra splitting. For both compounds, the thia role is suggested as partially responsible for the null-in-plane magnetic exchanges.  相似文献   

6.
Electron energy-loss spectroscopy has been applied to the study of Si(111) surfaces covered with H2S, H2O and O2 at room temperature and the surfaces annealed at ~ 600°C. The experimental results strongly suggest that H2S and H2O adsorb in the molecular states at room temperature. It is proposed that O2 is first adsorbed in a molecular state, then adsorbs as atoms, and finally oxidizes forming SiO2.  相似文献   

7.
Broadening and shifting of the 211-202 transition of H216O, H217O, H218O by pressure of water, nitrogen and oxygen were precisely measured at room temperature using spectrometer with radio-acoustic detection of absorption. Shift parameters for all studied lines as well as broadening parameters of H217O, H218O lines were measured for the first time. Comparison of obtained results with previously known experimental and theoretical data is presented.  相似文献   

8.
9.
Electron energy peak shifts and peak shapes were determined in the ionization of H2O, D2O, H2S and SO2 by Ne(3P2) and He(21S, 23S) metastable atoms. The shifts are large, especially in ionization of H2O and D2O into the ionic ground state and are probably mostly due to chemical interaction during the collision.In a previous paper the electron energy distribution curves for ionization of CO, HCl, HBr, N2O, NO2, CO2, COS and CS2 by helium, neon and argon metastables and the characteristics of this ionization were described1. In this paper the series of triatomic molecules was extended to the molecules H2O, D2O, H2S and SO2. Because all these molecules have considerable dipole moments it could be expected that the peak shifts might be enhanced as compared with other triatomic molecules.  相似文献   

10.
A specific heat investigation of nickel perchlorate hexahydrate was performed between 2 and 17 K. Lattice vibration and magnetic contributions were separated. The lattice term obeys a Debye αT3 law, with α = 4.04 × 10?3JK4 mol. The magnetic contribution comes from the splitting of the ground state triplet of the Ni2+ ions, by axial and rhombic crystal field distortions, which can be explained by a Schottky specific heat with D = 1.72 KandE = 0.06 K.  相似文献   

11.
The adsorption and diffusion of isolated H2O and D2O molecules on Pd(1 1 1) were studied using scanning tunneling microscopy at low temperature (∼40 K). At low tunneling voltage the diffusion is thermally activated. The diffusion rate is enhanced by several orders of magnitude when the tunneling electron has enough energy to excite the vibrational “scissor” mode of the molecule. An isotope effect was observed in the threshold voltage for electron-assisted diffusion of H2O and D2O.  相似文献   

12.
Thermal decomposition products of the Mohr salt (NH4)2Fe(SO4)2·6H2O have been studied and identified using the Mössbauer effect, X-ray diffraction, infrared spectroscopy, and the gravimetric and thermal differential methods. It has been found that the Mohr salt heated for 96 hr. in air at 520K changes to a single substance identified as NH4Fe(SO4)2 with a single Mössbauer line (width 0.30 mm/sec; isomeric shift 0.30 mm/sec). When the Mohr salt is heated for 1 hr. in air at 770 K it changes to Fe2(SO4)3 with a single Mössbauer line (width 0.33 mm/sec; isomeric shift 0.31 mm/sec) strikingly similar to line of NH4Fe(SO4)2.  相似文献   

13.
We used the spin-Hamiltonian method for the analysis of the electron paramagnetic resonance (EPR) spectrum of Fe3+ as a probe ion in (NH4)2AlF5·H2O single crystalline basic material. The theoretical expressions for the magnetic field (at which the fine structure transition lines appear) versus the angle between the magnetic field and the axis of symmetry of the magnetic complex are also given. These values were calculated by applying the perturbation theory to the second-order terms. From the experimental results (at 300 K and 9.21 GHz), the spin-Hamiltonian parameters were deduced:D=(668±10)·10−4 T,E=(−56±10)·10−4 T,a=(−54±10)·10−4 T,F=(30±10)·10−4 T. An isotropic superhyperfine structure was evidenced for the five fluorine ions. The obtained EPR data were used to determine the local symmetry of the Al3+ ion. A good agreement with X-ray diffraction measurements was found.  相似文献   

14.
Optical absorption spectra of Ni2+ in (NH4)2Mg(SO4)2·6H2O and Co2+ in Na2Zn(SO4)2·4H2O single crystals have been studied at room and liquid nitrogen temperatures. From the nature and position of the observed bands, a successful interpretation could be made assuming octahedral symmetry for both the ions in the crystals. The splitting observed for 3T1g(F) band in Ni2+ and 4T2g(F) band in Co2+ at liquid nitrogen temperature have been explained as due to spin-orbit interaction. The extra band observed at 16,325 cm-1 in the case of Ni2+ at low temperature has been interpreted to be the superposition of vibrational mode of SO2-4 radical on 3T1g(F) band. The observed band positions in both the crystals have been fitted with four parameters B, C, Dq and ζ.  相似文献   

15.
Recent EELS measurements for H2O adsorbed on the Si(100) reconstructed surface have been interpreted on the basis of dissociation of H2O into OH plus H. We attempt to construct a valence force potential which yields harmonic vibrational frequencies in agreement with the EELS experiments. There is some consideration of experimental intensities in the achievement of this agreement. The experimental data cannot be fitted without introducing interaction force constants into the potential energy expression, such as the force constant coupling the silicon-oxygen stretching motion and the silicon-oxygen-hydrogen bending motion.  相似文献   

16.
Temperature evolution of the infrared spectrum of the title compound confirms the phase transition temperatures 223, 311 and 355 K reported earlier and suggests a new phase transition at 180 K. From the spectral evidence, the transitions below the room temperature (~300 K) are attributed to tumbling motion of the metal aquo-complex, while those above the room temperature are attributed to reorientational motion of the water molecule. The space group in low temperature phases is suggested to be C2s.  相似文献   

17.
Electron paramagnetic resonance studies of Cu2+ doped in single crystals of dibarium cobalt formate tetrahydrate are carried out. Unlike in other cobalt salts, resolved hyperfine spectra are observed at room temperature itself. At 77K, the hyperfine linewidth shows an angular and nuclear spin dependence. Further, the linewidth increases as the temperature is lowered. The various possibilities of Cu-Co couplings like spin-flip and cross relaxation etc. are discussed. The spin-Hamiltonian parameters change conspicuously as the temperature is lowered which is ascribed to a vibrational mixing of the electronic levels in the ground state of Cu2+.  相似文献   

18.
Pure and impurity-added (with urea and thiourea) MgSO4·7H2O and NiSO4·7H2O single crystals were grown by the free-evaporation method from aqueous solutions. Density was measured by the flotation method. X-ray diffraction data were collected for powder samples and used for the estimation of thermal parameters like Debye-Waller factor, mean-square amplitude of vibration, Debye temperature and Debye frequency. The thermal parameters do not vary in a particular order with respect to impurity concentration, which could be attributed to the random disturbance created by the impurity molecules in the hydrogen-bonding system of the MgSO4·7H2O and NiSO4·7H2O lattices.  相似文献   

19.
Infrared and Raman spectra of polycrystalline H3OUO2PO4·3 H2O (HUP) and its D and P18O4 derivatives, in the form of dense transparent disks and wet powder, have been investigated at various temperatures in the 100–300 K region. The bands due to framework vibrations are similar to those of KUP, whereas those for the protonic species are different. OH stretching and bending bands of the oxonium ion have been identified at 2920, 1740 and 1160 cm?1 in the low-temperature spectrum of HUP. Differential scanning calorimetry (DSC) and infrared (IR) intensity investigations show a phase transition between 274 and 260 K. The mechanism of the phase transition consists, as in the case of KUP, of ordering of the protonic species, which induces ordering of PO4 tetrahedra. The ordering can be influenced by excess water content, stacking faults and stress (ferroelastic behaviour is evidenced). The conductivity mechanism in HUP is discussed.  相似文献   

20.
The electron spin resonance spectra (characterized by g factors g, g and hyperfine structure constants A and A) of Ba2Zn(HCOO)6(H2O) (BZFA): VO2+ crystal are calculated from high order perturbation formulas. The calculated results are in good agreement with the observed values. The local structure parameters of [VO(H2O)5]2+ clusters are also obtained from the calculation. The magnitudes of the metal-ligand distances parallel and perpendicular to the C4-axis are, respectively, R≈0.163 nm and R≈0.210 nm. It is shown that the local structure around the V4+ ion possesses a compressed tetragonal distortion along C4-axis.  相似文献   

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