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1.
The optical dispersion of (C12H25NH3)2ZnCl4 and (C12H25NH3)2ZnCl4: Co is investigated by means of birefringence and optical absorption measurements in the temperature region around their isotropic points. The birefringence dispersion is analyzed in terms of a simple oscillator model based on the absorption band structure of both materials. A fairly good agreement is found between the thermal behaviour of the adjustable parameters of the oscillator model and the temperature dependence of the absorption spectra. The results suggest the existence of a structural phase transition at 315 K.  相似文献   

2.
《Molecular physics》2012,110(21-22):2807-2815
NH3/C2H2 aerosols were formed in a bath gas cooling cell at cryogenic temperatures and studied using infrared spectroscopy. The infrared band shapes associated with these particles were quite different from those of the pure solids and vibrational shifts of up to 100 wavenumbers were observed. The phase of these particles was identified as a NH3?·?C2H2 co-crystal and was found to be thermodynamically stable with respect to the solids of pure NH3 and C2H2. Experiments with core–shell structures demonstrated that the co-crystalline phase could also be formed through a solid state reaction of pure NH3 and C2H2 in aerosol particles. The results of this work are relevant to planetary atmospheres where both NH3 and C2H2 are present, as the co-crystalline phase can readily form in mixed particles of these substances and its optical properties cannot be understood by simply considering the pure substances.  相似文献   

3.
A new organic-inorganic material [C6H10(NH3)2]CoCl4·H2O was reported. The title compound was synthesized at room temperature by slow evaporation and then characterized by a single X-ray diffraction, spectroscopic measurements, thermal analysis and dielectric technique. It crystallizes in the non-centrosymmetric space group Pna21 with the following unit cell parameters: a=12.5328(1) Å, b=9.0908(1) Å, c=11.7440(1) and α=β=γ=90°. The structure can be described by the alternation of two different cationic-anionic layers. It consists of isolated H2O, isolated [CoCl4]2 tetrahedral anions and diammoniumcyclohexane [C6H10(NH3)2]2+ cations, which are connected via N–H…Cl, N–H…O and O–H…N hydrogen bonds. The Hirshfeld surface analysis was conducted to investigate intermolecular interactions and associated 2D fingerprint plots, revealing the relative contribution of these interactions in the crystal structure quantitatively. Theoretical calculations were performed using DFT/B3LYP/LanL2DZ method for studying the molecular structure and vibrational spectra and especially to examine the non-linear optical behavior of the compound. Solid state 13C NMR spectrum shows three signals correspond to three different carbon environments. Thermal analysis discloses a phase transition at the temperature 315 K and the evaporation of water molecule at 327 K. A detailed dielectric study was reported and shows a good agreement with thermal measurements.  相似文献   

4.
5.
The FT-IR and Raman vibrational spectra of bis (4-acetylanilinium) tetrachlorocadmiate (II) compound have been measured at room temperature by FT-infrared spectroscopy (4000–400 cm−1) on polycrystalline samples, and by Raman spectroscopy (3600–30 cm−1) on monocrystals. The structure of the [C8H10NO] 2CdCl4 formed by two cations [C8H10NO]+ of same type and one type of anion [CdCl4]2− was optimized by density functional theory (DFT) using the B3LYP method. The theoretical wavenumbers spectra were scaled by multiple scaling factors, yielding a good agreement between the experimentally recorded and the theoretically calculated values. Root mean square (rms) value was calculated and the small difference between experimental and calculated modes has been interpreted by intermolecular interactions in the crystal. The comparison between the [C8H9NO] ligand and the [C8H10NO]2[CdCl4] compound of the Raman spectra showed a decrease in the wavenumber of the bands assigned to the stretching vibration of (NH3) group in the compound due to the effect of the protonation of the nitrogen.  相似文献   

6.
Single crystal of a new organic–inorganic hybrid material [C6H10(NH3)2]3CuBr4.3Br was synthesized by the slow evaporation method at room temperature and characterized by X-ray diffraction, FTIR, Raman spectroscopy, UV–Vis, dielectric measurements, and Hirschfield surface analysis. The title compound crystallizes in trigonal system \( P\overline{3} \).The crystal packing is governed by the N-H…Br and non-classical C-H…Br hydrogen-bonding interactions between the 1, 2-diamoniumcyclohexane cations, the tetrahedral [CuBr4]3? anions, and the isolated ion Br?. Theoretical calculations were performed using density functional theory (DFT) for studying the molecular structure, vibrational spectra, and optical properties of the investigated molecule in the ground state. The optimized geometrical parameters obtained by DFT calculations are in good agreement with single crystal XRD data. The optical properties were investigated by optical absorption and show two bands at 260 and 305 nm.  相似文献   

7.
In this report, we extended the works of Rizzato et al. [Angew. Chem. Int. Ed. 49, 7440 (2010)] on the nature of O–H···Pt hydrogen bond in trans-[PtCl2(NH3)(N–glycine)]·H2O(1·H2O) complex, by computational study of O–H···Pt interaction in [NBu4][Pt(C6F5)3(8-hydroxyquinaldine)], with emphasis on charge transfer effect in this interaction of platinum(II) and hydrogen atom. According to the crystallographic geometry reported by José María Casas et al., [NBu4][Pt(C6F5)3(8-hydroxyquinaldine)] possesses one O–H···Pt hydrogen bridging interaction, similar to the case in trans-[PtCl2(NH3)(N–glycine)]·H2O(1·H2O) complex. On the basis of topological criteria of electron density, we characterised this O–H···Pt interaction. Charge transferred between platinum(II) and σ*O–H orbital in this complex was calculated by using NBO method. The stabilised energy associated to charge transfer was estimated using a direct proportionality, that is 2–3 eV per electron transferred. Charge transfer effects in O–H···Pt hydrogen bonds were studied for these two complexes. Our results indicate that the interaction of O–H···Pt is closed–shell in nature with significant charge transfer, and that charge transfer effect is not negligible in the interaction of O–H···Pt. The second conclusion is different from the result of Rizzato et al.  相似文献   

8.
The possible mechanisms for proton transfer in ammonium aqueous solutions are discussed through ab initio LCAO-MO-SCF calculations for the following hydrogen-bonded complexes : [NH4 + … NH3] ; [NH4 + … OH2] ; [NH4 + … OH2 … OH2] ; [NH4 + … OH2 … NH3] and [H2O … NH4 + … OH2 … OH2]. The energy curve along the reaction coordinate is drawn for the first three systems. A double well potential curve is obtained for the two symmetrical systems with a very low barrier to proton transfer : 2·9 kcal/mole for the system [NH4 + … NH3] and 4·3 kcal/mole for the system [NH4 + … H2O … NH3]. For both systems the exchange mechanism involves three successive steps : association, transfer and dissociation. Solvation may affect the energetics of the first and third steps. For the unsymmetrical system NH4 + + H2O, the energy would increase continuously during the steps of proton transfer and dissociation. Hence the process of proton transfer between an ammonium ion and a water molecule may take place in solution only if assisted either by solvation or by a concerted push-pull mechanism involving a third molecule [NH4 + … OH2 … NH3]. Theoretical results for the systems [NH4 + … OH2 … OH2] and [NH3 … H3O+ … H2O] show, indeed, that solvation should make the proton transfer easier. In any case the proton transfer is found to occur through a contraction of the associated species formed in the first step.  相似文献   

9.
This work was devoted to X-ray diffraction study and investigations of temperature changes of the optical absorption edge of (NH2(C2H5)2)2CoCl4 crystals in the region of possible phase transitions. The X-ray powder diffraction data revealed the monoclinic phase at room temperature – space group P2/n. The cobalt atom was found to be square-plane coordinated by four chlorine atoms resulting [CoCl4]2– anion, which is surrounded by two DEA+ cations. It was shown that the low-energy tail of the absorption edge in these materials possesses an exponential shape. In the temperature range above 255?K it follows the empirical Urbach’s rule. The obtained experimental data confirmed the existence of the ferroelastic phase in (NH2(C2H5)2)2CoCl4 in the temperature range between 255 and 326?K. The anomalous behaviour of the investigated parameters observed at the temperatures below 255?K would be related to earlier unknown phase transitions.  相似文献   

10.
Chemical preparation, calorimetric studies, crystal structure and spectroscopic investigations are given for a new noncentrosymmetric organic cation monophosphate [2,5-(CH3)2C6H3NH3]H2PO4. This compound is orthorhombic P212121 with the following unit-cell parameters: a=5.872(4), b=20.984(3), c=8.465(1) Å, Z=4, V=1043.0(5) Å3 and Dx=1.396 g cm−3. Crystal structure has been solved and refined to R=0.048 using 2526 independent reflections. Structure can be described as an inorganic layer parallel to (a,b) planes between which organic groups [2,5-(CH3)2C6H3NH3]+ are located. Multiple hydrogen bonds connecting the different entities of compound thrust upon three-dimensional network a noncentrosymmetric configuration.  相似文献   

11.
(C9H19NH3)2PbI2Br2 compound is a new crystal belonging to the large hybrid organic-inorganic perovskites compounds family. Optical properties are investigated by optical absorption UV-visible and photoluminescence (PL) techniques. Bands to band absorption peak at 2.44 eV as well as an extremely strong yellow-green photoluminescence emission at 2.17 eV is observed at room temperature. First principle calculations based on the DFT and FLAPW methods combined with LDA approximation are performed as well. Density of state close to the gap is presented and discussed in terms of optical absorption and photoluminescence experimental results. The perfect agreement between experimental data and electronic structure calculations is highlighted.  相似文献   

12.
Quantitative high-resolution absorption spectroscopy was applied to the (0,0) violet band of CN. The CN radical was prepared in a furnace at 1421°K containing pure cyanogen gas. Since the calculated CN concentration is dependent on the controversial CN heat of formation, only the relationship, fυ = 6·84 X 10-3exp (0·354δ), where fυ is the excess over the initially assumed ΔH0f(CN) = 100·8 kcal/mole, could be directly determined in this study with an estimated error in fυ of ±20%. For δ = 0, our fυ is a factor of 4·8 smaller than an average value of 0·033±0· derived from other measurements. If this latter value of fυ is assumed, our relationship yields ΔH0f(CN) = 105·3±1· kcal/mole or D0(CN) = 7·66±0·05 eV. The rotational temperature and line widths for this band were also measured.  相似文献   

13.
Infrared and Raman spectra (10–3100 cm?1) of the layered ZnPSs compound and of intercalates with [Co(η5 ? C5H5)2+] and [Cr(η6 ? C6H6)2+] cations in the polycrystalline state have been recorded 300–10 K temperature range. A complete assignment of the spectra is proposed in terms of PSs group motions, Zn2+ ion translations and [Co(η5 ? C5H5)2+] or [Cr(η6 ? C6H6)2+] internal vibrations. New low frequency for the [Co(η5-C5H5)2+] intercalate at low temperature are assigned to librational and torsional modes of C5H5 rings. Moreover, the preresonance Raman spectra of this intercalate show a selective enhancement for the metal-ligand vibrations when the charge transfer band of the cobalticenium is approached. One concludes that guest molecules are intercalated under their cationic form, are weakly interacting with the host lattice and seem to be dynamically disordered at room temperature.  相似文献   

14.
81Br NQR frequencies and differential scanning calorimetry (DSC) were measured as a function of temperature. [NH3(CH2)4 NH3]CdBr4 (1) and [NH3(CH2)5NH3]CdBr4 (2) showed a doublet and quartet 81Br NQR spectrum, respectively. [NH3(CH2)5NH3]ZnBr4 (3) and [NH3(CH2)6NH3]ZnBr4 (4) exhibited a four-line 81Br NQR spectrum. From the NQR results, it is inferred that (1) and (2) consist of infinite two-dimensional sheets of corner-sharing CdBr6 octahedra, whereas (3) and (4) have isolated [ZnBr4]2− tetrahedra. All of the crystals except (1) showed at least one structural phase transition above 380 K.  相似文献   

15.
The unit cell parameters of an [NH2(C2H5)2]2CuCl4 crystal are determined using x-ray diffraction analysis, and the thermal expansion coefficients along the principal crystallographic directions are calculated in the temperature range 100–330 K. The behavior of the intensities of the diffraction reflections from the (100), (010), and (001) crystallographic planes is studied in the vicinity of the thermochromic phase transition temperature. The occurrence of a first-order phase transition in the [NH2(C2H5)2]2CuCl4 crystal at T ≈ 324 K is confirmed experimentally.  相似文献   

16.
The chemical preparation, crystal structure, spectroscopic investigations and optical features are given for a novel organic–inorganic hybrid material [C8H10NO]2CoCl4.The compound is crystallized in the orthorhombic space group Cmca, with the following unit cell parameters: a=19.461(2) Å, b=15.523(2) Å, c=13.7436(15) Å, and Z=8. The atomic arrangement shows an alternation of organic and inorganic layers along the b-axis. The cohesion between these entities is performed by N–H…Cl and N–H…O hydrogen bonds and ππ stacking interactions.Infrared and Raman spectra at room temperature are recorded in the 4000−400 and 4000−0 cm−1 frequency regions, respectively and analyzed on the basis of literature data. This study confirms the presence of the organic cation [C8H10NO]+ and of the [CoCl4]2 anion. UV–vis spectroscopy results showed the indirect transition with band gap energy 2.98 eV.  相似文献   

17.
The present paper accounted for the synthesis, differential scanning calorimetric and vibrational spectroscopy of [C2H5NH3]2ZnCl4grown at room temperature. Differential scanning calorimetric (DSC) disclosed five phase transitions at T1=231 K, T2=234 K, T3=237 K, T4=247 K and T5=312 K. The temperature dependence of the dielectric constant at different temperatures proved that this compound is ferroelectric below 238 K. Raman spectra as function temperature have been used to characterize these transitions and their nature, which indicates a change of the some peak near the transitions phase. The analysis of the wavenumber and the line width based on the order–disorder model allowed to obtain information relative to the thermal coefficient and the activation energy near the transitions phase.  相似文献   

18.
The spin-lattice relaxation times, T1, of protons in o, m, p-phenylene-diamine dihydrochlorides C6H4(NH2)2·2HCl, phenylhydrazinium chloride C6H5NHNH3Cl, hexaethylbenzene C6(CH2CH3)6, tetrabutylammonium bromide [CH3(CH2)3]4NBr, iodide [CH3(CH2)3]4NI, tetraheptylammonium bromide [CH3(CH2)6]4NBr and iodide [CH3(CH2)6]4NI powders have been measured between 400 and 100 K at 60MHz. The experimental results have been explained by considering the reorientational motions of ?NH3+ and ?CH3 groups about C3 axes and their role of behaving as sinks to rapid spin diffusion of the ring protons of the phenylene and the methylene protons. The observed T1, minima in all these substances turn out to be the measures of the ratios between the total number of protons and the number of reorienting ?NH3+ or ?CH3 protons. Therefore it has been concluded that the T1, minima of ?NH3+ and ?CH3 groups, when obtainable can indicate their number present in a solid sample.  相似文献   

19.
The interaction between ammonium NH3 and H2O molecules in zeolitic nanopores is studied by in situ 1H nuclear magnetic resonance (NMR) method. The powder and single crystal samples of natural zeolites, heulandites Ca4[Al8Si28O72]·24H2O and clinoptilolite (Na, K,Ca1/2)6[Al6Si30O72], were used as the model system. It is shown that penetration of NH3 into the zeolitic nanopores is accompanied by disordering of the hydrogen sublattice of zeolitic water and by the fast proton exchange NH3 + H2O ? [NH4]+ + [OH]? characterized by correlation frequency v c = ~40 kHz. Another nanoreactor interactions are represented by interaction of [NH4]+ ions with exchangeable Na+ and Ca2+ ions of the zeolitic structure. The slow ionic exchange [NH4]+ → [Na,Ca1/2]+ and binding of [NH4]+ in cationic sites of the framework were visualized by NMR spectroscopy along with stepwise release of (Na,Ca1/2)OH from zeolitic pores to the external surface of zeolite grains.  相似文献   

20.
Synthesis, crystal structure, and dielectric properties of [C6H4(NH3)2]2ClBiCl6.H2O are reported. The compound crystallizes in the monoclinic system with space group P21/n. The unit cell dimensions are a = 9.836(5), b = 19.582(5), c = 13.082(5) ?, β = 104.731(5)° with Z = 4. The atomic arrangement can be described by an alternation of organic and inorganic layers. The anionic layer is built up of octahedral of [BiCl6]3- arranged in sandwich between the organic layers. The crystal packing is governed by means of the ionic N–H···Cl hydrogen bonds, forming a three-dimensional network. The dielectric properties have been investigated at temperature range from 297 to 410 K at various frequencies (10 Hz–100 kHz). Dielectric studies were performed to confirm results obtained with thermal analysis. The evolution of dielectric constant as a function of temperature and frequency of single crystal has been investigated in order to determine some related parameters.  相似文献   

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