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1.
Multiconfiguration wave functions constructed from contracted Gaussian-lobe functions have been found for the ground and valence-excited states of urea. ICSCF molecular orbitals of the excited states were used as the parent configurations for the CI calculations except for the 1A1(π → π*) state. The 1A1(π → π*) state used as its parent configuration an orthogonal linear combination of natural orbitals obtained from the second root of a three-configuration SCF calculation. The lowest excited states are predicted to be the n π → π* and π → π* triplet states. The lowest singlet state is predicted to be the n π → π* state with an energy in good agreement with the one known UV band at 7.2 eV. The π → π* singlet state is predicted to be about 1.9 eV higher, contrary to several previous assignments which assumed the lowest band was a π → π* amide resonance band. The predicted ionization energy of 9.0 eV makes this and higher states autoionizing.  相似文献   

2.
The electronic spectrum of cyclopropene has been studied using multiconfigurational second-order perturbation theory (CASPT2) with extended ANO-type basis sets. The calculation comprises two valence states and the 3s, 3p, 3d members of the Rydberg series converging to the π and σ ionization limits. A total of twenty singlet and twenty triplet excited states have been analyzed. The results confirm the valence nature of the lowest energy singlet-singlet band and yield a conclusive assignment: the first dipole-allowed transition in cyclcopropene is due to absorption to a (σ → π*) state. The (π → π*) (V) state is interleaved among a number of Rydberg states in the most intense band of the system. The remaining spectral bands are due to Rydberg transitions of higher energy. The two lowest singlet-triplet transitions involve the same valence states. The results are in agreement with available experimental data and provide a number of new assignments of the experimental spectra.  相似文献   

3.
Ab initio configuration interaction wavefunctions and energies are reported for 16 doublet states of the anion radical of ethyl bacteriopheophorbide a (Et-BPheo a), and are employed in an analysis of the electronic absorption spectrum. The lowest excited doublet state D1 is predicted to lie 8601 cm-1 above the ground state D0; the D1← D0 transition is nearly forbidden, with a computed oscillator strength f= 0.002. The visible absorption spectrum is shown to consist of transitions to three 2(π, π*) states, D2, D3, and D4. The D4← D0 transition (y-polarized, f= 0.91) appears to account for observed intense absorption at 15 800 cm-1. The Soret band of Et-BPheo a is shown to consist of transitions to several 2(π,π*) states, D7-D15. Transitions of particularly high intensity include D7← D0 (y-polarized, f= 0.72), D10← D0 (y-polarized, f= 1.1), D12← D0 (xy-polarized, f= 0.86) and D15← D0 (y-polarized, f= 0.83). Spin density data and plots are used to describe and compare the general features of the unpaired spin distributions in D0 and D1, which are in reasonable agreement with other reported calculated values and available experimental data for D0.  相似文献   

4.
A new method for determining the absolute signs of the hyperfine elements of triplet states using frequency-dependent electron—nuclear double resonance spectroscopy is described and applied to 3(n, π*) 13C-benzophenone-d10 in the single crystal host 4,4′-dibromodiphenylether.  相似文献   

5.
The electron spin dipole-dipole contribution to the zero field splitting has been evaluated for the 3A2 (n → π*) and 3A1 (π → π*) states of formaldehyde using a CI wave function constructed from contracted Gaussian-lobe functions. The values D = 0.539 cm?1 and E = 0.031 cm?1 were obtained for the 3A2(n → π*) state and D = ?0.588 cm?1 and E = 0.058 cm?1 were obtained for the 3A1 (π → π*) state using the CI wave function constructed from SCF orbitals of the respective parent configurations. An analysis of the effect of CI on the parameters is given for the 3A2 (n n → π*) state of formaldehyde and the 3B1 ground state of methylene. Numerical results are given which show that internally consistent self-consistent field orbitals (ICSCF ) are superior to canonical SCF orbitals as a starting point for a CI calculation. Our CI wave function for the 1A1 ground state gave an energy of ?114.13658 hartrees which is significantly lower than any previously reported energy calculation. This wave function gives a dipole moment of 2.22 Debye (C+O?) in good agreement with the experimental value of 2.33 ± 0.02 Debye.  相似文献   

6.
Photolysis of Conjugated Epoxy-dienes Direct and sensitized excitation of the (E)-β-ionylidene-epoxides 1 and 4 leads to different types of isomerizations. Thus photocycloelimination to the cyclopropene-ketones 2 and 6 is only achieved by 1(π, π*)-excitation (λ=254 nm), whereas 3(π, π*)-excitation (λ > 280 nm, acetone) gives selective C(1′), O-cleavage of the oxirane ( 1 → 7 – 10 and 4 → 11 – 13 ). In contrast to 1 the twofold methylsubstituted epoxy-diene 4 shows mainly (E/Z)-isomerization ( 4 → 5 ) on both 1(π, π*)- and 3(π, π*)-excitation while the isomerizations 4 → 6 and 4 → 11 – 13 are minor processes, only.  相似文献   

7.
When α,β-unsaturated γ-dimethoxymethyl cyclohexenones are excited to the S2(π,π*) state, certain unimolecular reactions can be observed to compete with S2 → S1 internal conversion. These reactions do not occur from the S1(n,π*) or the lowest T(π,π* and n,π*) states. They comprise the radical elimination of the formylacetal substituent (cf. 8 , 9 → 32 + 33 ), γ → α formylacetal migration (cf. 6 → 27 , 8 → 30 , 9 → 34 , 12 → 37 ), and a cyclization process involving the transfer of a methoxyl hydrogen to the α carbon and ring closure at the β position (cf. 6 → 28 , 8 → 31 , 12 → 38 , 20 → 40 + 41 ). The quantum yield of the ring closure 20a → 40a + 41a is 0.016 at ≤ 0.05M concentration. It is independent of the excitation wavelength within the π→π* absorption band (238–254 nm), but Φ ( 40a + 41a ) decreases at higher concentrations. According to the experimental data the reactive species of these specifically π→π*-induced transformations is placed energetically higher than the S1(n,π*) state, and it is either identical with the thermally equilibrated S2(n,π*) state, or reached via this latter state. The linear dienone 14 undergoes a similar π→π*-induced cyclization (→ 42 ) whereas the benzohomologue 26 proved unreactive, and the dienone 22 at both n → π and π→π* excitation only gives rise to rearrangements generally characteristic of cross-conjugated cyclohexadienones.  相似文献   

8.
The aromatic thioketone xanthione has been investigated by means of the optically detected magnetic resonance (ODMR) technique in a n-hexane matrix at ≈ 1.1 K. It was established that the short-lived red emission, which is characteristic for many thione molecules, is phosphorescence. At high temperatures (77 K) this phosphorescence originates mainly (>80%) from the T1z (n, π*) sublevel (kz(r) >kx(r), ky(r). At low temperature (1.1 K) the intersystem crossing following S2 (π, π*) ← S0 excitation is a highly spin-sublevel selective process which populates predominantly the T1x and T1y, levels. Hence, the slow spin—lattice relaxation phosphorescence at low temperature originates from these sublevels. A value of 0.0611 cm?1 was obtained for the zero-field parameter |E|/hc. A lower limit of 0.66 cm?1 has been found for the zero-field parameter |D|/hc. This value is considerably larger than those observed for ketones, and it is shown that spin—orbit coupling contributes strongly to the zero-field splitting.  相似文献   

9.
Abstract— Pyrazinopsoralen (PzPs), a new monofunctional psoralen, has a UV absorption spectrum similar to other psoralens except that it absorbs more strongly in the long-UVA than 8-methoxypsoralen. The solvent effects on the UV absorption and fluorescence emission spectra indicate that the lowest excited singlet state is the π,π* state like other psoralen derivatives. It shows a much lower fluorescence quantum yield (0.0008 in ethanol at room temperature) than the other psoralens as expected by the increased proximity effect (vibronic perturbation) due to close 1(n,π*) to 1(π,π*) states. The fluorescence lifetime was 1.05 ns in methylcyclohexane with a single exponential decay, while more than two components were observed in other solvents with the short-lived component being the major (>95%). The triplet state of PzPs could not be detected by phosphorescence, laser flash excitation (T-T absorption) and singlet oxygen formation probably due to very low φisc, or short lifetime of the triplet state (τT) caused by the fast T1→ S0 intersystem crossing.  相似文献   

10.
The results of the spectroscopic investigation of the steroidal enones 1–6 can be summarized as follows:
  • 1. Direct absorption and phosphorescence excitation techniques have been used to locate the 3(n,π*) states, and in each case it has been found to be the second triplet state.
  • 2. The lowest excited state in each case is assigned as 3(π,π*) state.
  • 3. The diffuseness in the phosphorescence emission from the 3(π,π*) states is attributed to a large change in the molecular geometry upon excitation (probably to a non-planar configuration).
  • 4. The diffuseness in the STn,π* absorption is correspondingly attributed to interaction between the 3(n,π*) and 3(π,π*) states. A summary of the energy levels for these compounds is given in Fig. 4.
  相似文献   

11.
A series of dichlorodiimine complexes [M(N N)Cl2]z of Au(III) and Pt(II) with 1,4-derivatives of o-phenanthroline [(N N) = o-phenanthroline (phen), dipyrido[f,h]quinoxaline (dpq), dipyrido[a,c]phenazine (dppz), 6,7-dicyanodipyrido[f,h]quinoxaline (dicnq)] were prepared and characterized by 1H NMR, electronic absorption, and emission spectroscopy and by cyclic voltammetry. In all the complexes, the 3(π-π*)-type transition is the spin-forbidden transition of the lowest energy, responsible for the luminescence. The longest wave bands in the absorption spectra of the Au(III) and Pd(II) complexes were assigned in accordance with the results of the electrochemical studies to the 1(d*)-and 1(d*)-type transitions, respectively.  相似文献   

12.
A method of calculating matrix elements of 1/r12 in a basis of Dirac scattered-wave (DSW) orbitals is outlined. In the limit c → ∞, this method reduces to that described by Cook and Karplus for non-relativistic orbitals. For triplet states that can be described by a single configuration with two unpaired electrons, the relativistic exchange integrals give not only the singlet—triplet splittings (as in non-relativistic theory), but also the spin—orbit contributions to the triplet zero-field splittings. Results are reported for the 3 (n → π*) excited state of γ-thiopyrone (4H-pyran-4-thione), which has a very large value of D (calc. ?31 cm?1, exp. ?24 to ?28 cm?1).  相似文献   

13.
Electronic, excitation energies, charge distributions and geometries of pyrazine in the lowest excited singlet π*←π and π*n states have been studied by the VE—PPP, CNDO/2 and CNDO/s-CI molecular orbital methods. Study of the change of geometry in the π*n excitation requires localization of the density matrices in the ground and excited states, and with the help of these σ-bond orders are defined. Charge distributions and bond orders in the lowest excited singlet π*←π and π*n states are compared. Whereas in the lowest singlet π*←π excitation the pyrazine ring expands uniformly, in the case of the π*n excitation C-C bonds contract whereas C-N bonds elongate. The predictions of theory are in agreement with experimental results, showing that the method used can be employed to obtain reliably the trends of geometry changes following a π*←π excitation of a molecule before a more complete theoretical or experimental study is performed.  相似文献   

14.
High-resolution absorption spectra of the following diphenylmethylenes (DPMs) dispersed in benzophenone crystals at liquid-helium temperatures are presented: DPM-h10, DPM-d10, 4-chloro-DPM, and 4-bromo-DPM. The substituent effects concerning the electronic structure, transition energy and intensity are discussed. From polarization measurements, the electronic configurations of the ground and the first excited triplet states of these DPMs are assigned as (pπ)1(pσ)1 and (pσ)1(π*)1, respectively. Further studies reveal a second excited triplet state, designated as (pπ)1(π*)1, which lies less than 1000 cm-1 above the first excited triplet state of DPM. Diffuse broad bands appear as common features in all the spectra. Such diffuseness is discussed in terms of electron-phonon coupling of the low-lying excited states.  相似文献   

15.
The electronic transitions from the ground state to the 3d states have been studied for23Na and7Li atoms by two-photon Doppler-free laser spectroscopy. The positions of the resonances are used to determine the unresolved hyperfine structure of the 3d states from which the magnetic-dipole hyperfine interaction constantsA are derived. The results for theA factors are:A(3d 2 D 3/2;23Na)=+527(25) kHz;A(3d 2 D 5/2;23Na)=+108.5(2.4) kHz;A(3d 2 D 3/2;7Li)=+843(41) kHz;A(3d 2 D 5/2;7Li)=+343.6(1.0) kHz. For the fine structure intervals fs of the 3d doublets we obtain: fs(3d Na)=-1 494 444(44) kHz and fs(3d Li)=+1 083 936(60) kHz. The linewidths of the resonances are evaluated with respect to the natural lifetimes of the 3d states. For Na the result is τ(3d Na)=19.27(23) ns.  相似文献   

16.
Crystals of the π-complex (2-AmpH)[CuCl2(HOCH2C≡CCH2OH)] (2-AmpH+ is the 2-aminopyridinium cation) were obtained by the reaction of 2-butyne-1,4-diol with CuCl in aqueous 2-aminopyridinium chloride solution and studied by X-ray diffraction: space group P \(\overline 1 \), a= 7.172(4), b= 7.796(3), c = 11.60(9) Å, α = 99.75(6)°, β = 96.53(7)°, γ = 101.03(3)°, Z = 2. The crystals consist of individual anions [CuCl2(HOCH2C≡CCH2OH)]? and cations [2-AmpH]+. The π-coordinated Cu(I) atoms of the complex anion have trigonal-planar surrounding of two chlorine atoms and C≡C bond of the 2-butyne-1,4-diol molecule. The alcohol groups form stable hydrogen bonds N-H?O (1.89 Å) and O-H?Cl (2.20 Å).  相似文献   

17.
Ring atom hyperfine structure has been observed in the optically-detected magnetic resonance (ODMR) spectra of the lowest triplet states of 4,4′-difluoro- and 4,4′-dibromobenzophenone in a single crystal host at liquid helium temperatures. An analysis of this structure and its angular dependence yields a lower limit of 0.10 for the normalized π-orbital spin density in each of the para ring positions. These results, together with the demonstrated sensitivity of the zero-field splitting parameters to halogen substituents in the 4 and 4′ positions, suggest that a significant amount of spin density resides on the phenyl rings in the 3(n,π*) state of benzophenone.  相似文献   

18.
Abstract— Ab initio quantum mechanical calculations on ethyl bacteriochlorophyllide-a (Et-BChl-a) and ethyl bacteriopheophorbide-a (Et-BPheo-a) are presented, including self-consistent-field (SCF) molecular orbital studies on the ground states using the molecular fragment procedure, and configuration interaction (CI) calculations on the low-lying singlet and triplet states and absorption spectra. A characterization and comparison of many of the higher-lying molecular orbitals obtained from the SCF studies is presented. The estimated first ionization potentials are 5.66 and 5.97 eV for Et-BChl-a and Et-BPheo-a, respectively. Excited state calculations show that the visible spectrum of both molecules consists of an intense, y-polarized S1← S0 transition and a weakly-allowed, x-polarized S2← S0 transition. Both S1 and S2 states are 1(π, π*) in character, and are described by a four-orbital model. Transitions to the remaining calculated states, S3-S12, appear in the Soret region of the spectrum of both molecules. However, only transitions to S9(‘x’), S10(‘x’) and S11(‘y’) of Et-BChl-a, and S7(‘x’) and S10(‘y’) of Et-BPheo-a are of high intensity. The composition of the high intensity Soret states is 1(π, π*) and strongly “four-orbital” in nature. The lowest triplet state, T1, is predicted to lie 9752 cm-1 and 7880 cm-1 above S0 for Et-BPheo-a and Et-BChl-a, respectively. In each molecule T2 and S1 are nearly degenerate, suggesting a favorable pathway for intersystem crossing. Calculated Tn← T1 transitions indicate that the y-polarized T12← T1 transition in Et-BChl-a corresponds to the observed intense 24,400 cm-1 absorption in the triplet-triplet spectrum of BChl-a. A similar type spectrum is also predicted for BPheo-a.  相似文献   

19.
Quantum-chemical calculations of ground and excited states for membrane fluorescent probe 4-dimethylaminochalcone (DMAC) in vacuum were performed. Optimized geometries and dipole moments for lowest-lying singlet and triplet states were obtained. The nature of these electronic transitions and the relaxation path in the excited states were determined; changes in geometry and charge distribution were assessed. It was shown that in vacuum the lowest existed level is of (n, π*) nature, and the closest to it is the level of (π, π*) nature; the energy gap between them is narrow. This led to an effective (1)(π, π*) →(1)(n, π*) relaxation. After photoexcitation the molecule undergoes significant transformations, including changes in bond orders, pyramidalization angle of the dimethylamino group, and planarity of the molecule. Its dipole moment rises from 5.5 Debye in the ground state to 17.1 Debye in the (1)(π, π*) state, and then falls to 2 Debye in the (1)(n, π*) state. The excited (1)(n, π*) state is a short living state; it has a high probability of intersystem crossing into the (3)(π, π*) triplet state. This relaxation path explains the low quantum yield of DMAC fluorescence in non-polar media. It is possible that (3)(π, π*) is responsible for observed DMAC phosphorescence.  相似文献   

20.
The phosphorescence emission spectra of acetophenone, p-chloroacetophenone, p-bromoacetophenone, p-methoxyacetophenone and p-thiomethoxyacetophenone in p-dimethoxybenzene host crystal at 1.6 K are recorded under high resolution. Detailed vibronic analyses of the emission spectra are carried out and a one dimensional Franck—Condon calculation is performed. Lifetime and optical polarization measurements for the phosphorescence emission of the acetophenone derivatives are also determined. The results lead to the conclusion that the lowest triplet state of acetophenone is n,π* in character with a non-planar configuration resulting from a distortion along the nontotally symmetric vibration of ?COCH3 and ?CH3 wags.Emission spectra from the lowest triplet states of p-methoxyacetophenone and p-thiomethoxyacetophenone are found to originate from π,π* states and have a planar geometry. The phosphorescence spectra of p-chloroacetophenone and p-bromoacetophenone are from a 3(π,π*) state but have a large amount of n,π* mixed character. The vibrations responsible for such mixing are assigned to the nontotally symmetric modes of ?COCH3, ?Br and ?Cl wags.  相似文献   

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