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1.
Configuration interaction (CI) studies of ground, n *, * * electronically excited states are reported for pyridine N-oxide. The transition energy to the lowest * excited 1 B 2 state is calculated at 4.35 eV, compared to the experimental spectrum range of 3.67–4.0 eV. This state lies below the lowest n * excited 1 A 2 state calculated at 4.81 eV above the ground state. The only experimentally reported triplet state at 2.92 eV above the ground state is predicted to be the 3 A 1 (*) state. The calculated energy lies at 3.27 eV. Numerous other high-lying singlet states as well as the triplet states have also been calculated. The intramolecular charge transfer character of the ground and the excited states have been studied in terms of the calculated dipole moment and other physical properties.  相似文献   

2.
(+)-3-Methyl-3,4-dihydroisoquinoline-1-thione was obtained by sulfuration of (+)-3-methyl-3,4-dihydroisoquinolone with phosphorus pentasulfide or by cyclization of (+)--benzylethyl isothiocyante under the influence of polyphosphoric acid. Measurements of the rotatory dispersion and circular dichroism showed the presence of two positive Cotton effects due to n* and * transitions in the thioamide chromophore, as well as Cotton effects apparently due to * transitions in the aromatic chromophore.Communication XXXV from the series Stereochemical Investigations. See [11] for communication XXXIV.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 1, pp. 94–97, January, 1976.  相似文献   

3.
Electron transitions in divinyl chalcogenides (CH2=CHXCH=CH2, where X is S, Se, or Te) have been analyzed using UV absorption spectra of dialkyl and alkyl vinyl chalcogenides. The following relations for the orbital energies are found: * < * < * < * for Te and * < * < * < * for S and Se. For chalcophenes, a correlation between the energy of the excited state (E *) of specific symmetry, the ionization potential (I) and the electron affinity (EA) is obtained:E *=const+(I+EA)/2. The electron affinity of divinyl chalcogenides is estimated. The correlation between the excited * states of divinyl chalcogenides and chalcophenes is discussed.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 5, pp. 831–835, May, 1994.  相似文献   

4.
In an attempt to clarify the origin of the dual phosphorescence in phenyl alkyl ketones, we have made some calculation (within the C.I.P.S.I. method in an excitonic scheme) to elucidate the conformation of both ground states and excited states of propiophenone. Our calculations have shown the presence of two stable isomers in the ground state, first n * state, and first * singlet and triplet states. So our work suggests that the origin of the dual phosphorescence of propiophenone could be related to the conformational change of the molecule in the n * state, because the most stable conformations in the n * state and in the ground state are different.  相似文献   

5.
The fluorescent properties, structure, and electronic structure of the ground and excited singlet and triplet electronic states of the cis and trans forms of 4,5-dihydro-2-(2-furyl)oxazole, 4,4-dihydro-2-(2-thienyl)oxazole, 2-(2-furyl)oxazole (FO), and 2-(2-thienyl)oxazole (TO) have been studied. The orbital nature of the lower excited singlet and triplet states has been studied by the semiempirical INDO/S (valence approximation) and PPP/S ( approximation) methods. It was shown that for FO and TO molecules the lower triplet state is of the * type, for which delocalization of the electronic excitation on atoms is characteristic. In the singlet excitation state inversion was observed of the energy levels of the delocalized * states and n* states localized over several bonds (for the free TO and FO molecules the lower excited singlet states S1* were assigned to * and n* types respectively). Owing to the low position of the T * and T n* levels relative to the singlet level of * type, the rate constant for intercombination conversion is greater than the rate constant for radiative decay. Consequently an efficient population of the triplet states of the molecules occurs under conditions of electronic-vibrational excitation. The direction of reactions during synthesis was compared with the localization indices in the ground state for electrophilic, nucleophilic, and radical substitution, and also with the excitation localization numbers L for a wide selection of electronically excited states. It was concluded that the change in the structure of the azole molecule on replacing an O atom by an S atom, or on changing from a partially hydrogenated to a heteroaromatic system, was the main reason for the change of all the spectral parameters characterizing the electronic-vibrational or the spin-orbital interaction of the most reactive groups of atoms in the molecular structure.  相似文献   

6.
Conclusions The homodimerization of spiro{bicyclo[2.2.1]hepta-2,5-diene-7,1-cyclopropane} (I) has been investigated in the presence of Ni-, Fe-, Co-, Rh-, and Ir-based metal complex catalysts. Depending on the nature of the metal and its ligand environment cyclodimerization of (I) can take place via [2+2]-, [2+2+2]-, and [4+4]-cycloaddition schemes, to give high yields of hepta-, octa-, and nonacyclic strained hydrocarbons.Translated from Izvestiya Akademii Nauk SSSR, Seriya Khimicheskaya, No. 11, pp. 2592–2599, November, 1988.  相似文献   

7.
Summary. Exciton coupling of the 190nm * transition is an important factor in the CD spectrum of peptides and proteins. The CD spectrum of the -helix is dominated by the exciton effect. The spectrum is sensitive to the direction of the * transition dipole moment, especially for short helices. Exciton theory is much less successful in accounting for the CD spectrum of the poly(proline)II (PPII) conformation, an important conformer in collagen and in unordered peptides. Mixing of the * transition with high-energy transitions in the peptide backbone and in side chains must be considered to explain the strong negative CD band near 200nm of PPII.  相似文献   

8.
The chiroptical properties associated with the * transitions in dissymmetric allene systems are calculated and relationships between the chiroptical observables and the stereochemical and electronic structural features of these systems are examined. The calculations are based on the INDO and CNDO/S semiempirical molecular orbital models for the electronic structure of the molecular systems and excited states are constructed in the virtual orbital-configuration interaction approximation. The dipole strengths, rotatory strengths, and dissymmetry factors for the three lowest energy * transitions are computed and reported for eleven chiral allene structures. Relationships between absolute configuration and the signs of the * rotatory strengths are examined and discussed.  相似文献   

9.
The vapor absorption spectrum of acrylonitrile CH2CHCN has been measured in the vacuum ultraviolet region. In addition, an all-valence-electron molecular orbital calculation has been used to calculate the electronic structure and spectrum of the molecule. On the basis of the MO calculation, as well as a vibrational analysis of the observed spectrum, several electronic transitions are assigned. The lowest energy absorption band (2107Å, = 150) is assigned as an n * transition. Absorption bands at 2030Å (=1600), 1725Å ( = 2100), and 1570Å ( = 1920) are assigned as 0–0 bands associated with transitions that are, respectively, *,*, and * in character.
Zusammenfassung Das UV-Absorptionsspektrum von dampfförmigen Acrylnitril wurde gemessen und eine CNDO/2-Rechnung für die Elektronenstruktur durchgeführt. Auf dieser Basis konnten unter Zuhilfenahme der Analyse der Schwingungsstruktur im beobachteten Spektrum mehrere Banden zugeordnet werden: die 2107-Å-Bande ( = 150) einem n*-Übergang, die drei Banden bei 2030Å ( = 1600), 1725Å ( = 2100) und 1570 Å ( = 1920)0-0-Übergängen von *-, *- bzw. *-Banden.

Résumé Mesure du spectre d'absorption en phase vapeur de l'acrilonitrile CH2CHCN dans la région de l'ultraviolet. Par ailleurs, la structure électronique et le spectre de la molécule ont été calculés à l'aide d'une méthode des orbitales moléculaires semi-empirique pour tous les électrons de valence. Sur cette base, ainsi que sur une analyse vibrationnelle du spectre expérimental, on procède à l'attribution de plusieurs transitions électroniques. La bande d'absorption de plus basse énergie (2107 Å, = 150) est attribuée à une transition n *. Les bandes d'absorption à 2030Å ( = 1600), 1275Å ( = 2100) et 1570Å ( = 1920) sont considérées comme des bandes 0 - 0 associées à des transitions *, * et * respectivement.
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10.
Summary. The CD exciton chirality method was applied to various phenylacetylene alcohols to determine their absolute configurations; the long axis polarized –* transition (max=252nm) of the 4-methoxyphenylacetylene chromophore couples with the transition (max=257nm) of the 4-methoxybenzoate group to generate intense exciton split CD Cotton effects, from the signs of which the absolute configurations of phenylacetylene alcohols were unambiguously determined. As an extension of the results, a new methodology for determining the absolute configurations of acetylene alcohols having the HCCCH(OH)-moiety by combination of the Sonogashira reaction and the CD exciton chirality method has been developed and applied. Since the –* transition of acetylene triple bond is located below 180nm, it is difficult to observe ideal bisignate CD Cotton effects due to the exciton coupling between acetylene and benzoate chromophores. To observe the ideal exciton split Cotton effects necessary for the unambiguous determination of absolute configuration, the terminal acetylene group was converted, by the Sonogashira reaction, to the 4-methoxyphenylacetylene moiety, which exhibits an intense –* absorption band polarized along the long axis of the chromophore at 252nm. As a partner of exciton coupling, 4-methoxybenzoate showing a –* band at 257nm was introduced into the alcohol moiety, and the benzoates formed showed intense bisignate CD Cotton effects, from the signs of which the absolute configurations of original acetylene alcohols could be determined in an unambiguous manner.  相似文献   

11.
The influence of solvation on *n and * transition energies of formaldehyde, acetaldehyde, acetone, pyridine and 1,2-, 1,3-, 1,4-diazabenzenes has been investigated through CNDO calculations.A static solvation model which distinguishes a) molecules directly involved in hydrogen bonding with solute, b) the layer of molecules in contact with the solute molecule and c) the main of molecules farther from solute, is presented.Blue and red shifts due to solvent effects are correctly predicted by calculations for each model.  相似文献   

12.
The heats of formation ofn- * and- * charge-transfer interactions have been computed from the charge-transfer spectra of molecular complexes formed in the pyridinechloranil and aniline-chloranil systems.
Zusammenfassung Anhand der Charge-Transfer-Spektren von Molekülkomplexen aus Pyridin-Chloranil und Anilin-Chloranil wurde die Wärme für die Bildung vonn- * und -* Charge-Transfer-Wechselwirkungen berechnet.

  相似文献   

13.
The intermediate neglect of differential overlap technique is modified and applied to the calculation of excited triplet states. The resulting method generally reproduces the transition energies of the better-classified observations within a rms error of 1000 cm–1. Trends are well reproduced, and the calculated orders ofn-* and -* triplet states are in good accord with the experimental information to date.The method is applied to benzene and the azines. The lowest four triplet states of benzene are calculated in good accord with experiment. Pyridine is calculated to have an-* triplet nearly degenerate with the lowest lying -* triplet, corroborating suggestions of Japar and Ramsay based on experimental information. A detailed analysis is made of the diazines, and assignments are suggested for the higher lying triplet states not yet classified or not yet observed.  相似文献   

14.
The 1 * and n1,3 * transitions of some suitable conjugated carbonyl compounds have been investigated by the molecules-in-molecules method. The results are compared with experiment and previously obtained P-method results. The results for the 1 * transitions agree well with experiment, but several unexplained features arise in the results for the n1,3 * transitions. In particular, doubts are cast on the assignment of the glyoxal band at approximately 4.5 eV.
Zusammenfassung Die 01 *- und 1,3 *-Übergänge einiger substituierter Carbonylverbindungen sind mittels des Verfahren der Moleküle in Molekülen untersucht und mit früheren theoretischen sowie experimentellen Werten verglichen worden. Die Übereinstimmung ist im Fall der 1 *-Übergänge gut; bei den anderen verbleiben jedoch einige Unklarheiten, insbesondere in bezug auf die um 4,5 eV liegende Glyoxal-Bande.

Résumé Les transitions »1 * et n1,3 * de certains composés conjuguées carbonyles appropriés ont été étudiées par la méthode des molécules dans les molécules. Les résultats sont comparés à l'expérience et aux résultats obtenus auparavant par la méthode P. Les résultats pour les transitions 1* sont en accord avec l'expérience, mais plusieurs particularités non expliquées apparaissent dans les résultats relatifs aux transitions n 1 3 *. En particulier, des doutes sont émis quant à l'attribution de la bande du glyoxal aux environs de 4,5 eV,
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15.
Using a semi-empirical ASMO SCF method for valence electron systems previously proposed by the present authors, the electronic structures of aminopyridines and their mono- and di-protonated cations are calculated. It is explained that the mono-protonation occurs on the ring nitrogen atoms and the di-protonation takes place on the nitrogen atoms both in the ring and the amino group. The electron migration to the added protons are calculated to be about 0.7 e for all the cations treated. The calculated results for n * and * singlet transitions of aminopyridines and their protonated cations show fairly good agreement with the experimental results. The electronic structures of pyridone imines, the tautomeric isomers of aminopyridines, are also briefly discussed.
Zusammenfassung Mittels eines semiempirischen ASMO SCF-Verfahrens wird die Elektronenstruktur von Aminopyridinen und ihrer mono- und diprotonierten Kationen berechnet. Die erste Protonierung findet am N-Atom im Ring und die zweite an der Aminogruppe statt. Für die Elektronenverschiebung zu den angelagerten Protonen ergibt sich in allen Fällen etwa 0,7 e. Die berechneten n - *- und - *- Singulettübergänge zeigen befriedigende Übereinstimmung mit dem Experiment. Schließlich wird noch die Elektronenstruktur von Pyridoniminen diskutiert.

Résumé Calcul des structures électroniques des aminopyridines et de leurs cations mono- et di-protonés, en utilisant une méthode semi-empirique ASMO SCF pour les électrons de valence proposée précédemment par les auteurs. On explique la mono-protonation sur les atomes d'azote du cycle et la di-protonation sur les atomes d'azote du cycle et du groupe aminé. Le transfert d'électron sur les protons supplémentaires est de l'ordre de 0,7 e pour tous les cations étudiés. Les résultats calculés pour les transitions singulets n * et * des aminopyridines et de leurs cations sont en bon accord avec l'expérience. Les structures électroniques des pyridone imines, tautomères des aminopyridines, sont brièvement discutées.
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16.
In order to be able to describe the ethylene molecule bonded to an active site of a Titanium- or Nickel fluoride crystal, we have used the Hartree-Fock-Slater model, implemented by a Discrete Variational Method, as introduced by Ellis and Painter. The study of the ethylene molecule at a crystal surface then gives a clear, easily interpreted picture of the electronic structure. The-back donation from metal to olefin is found to be extremely important, both in the Ti- and in the Ni-complex. This back donation is caused by a strong interaction of ad orbital of the central ion with a * as well as the * molecular orbital of ethylene. As a result of these interactions, the C-C bond of ethylene is weakened considerably.A comparison is made between the Ti-ethylene and the Ni-ethylene systems.
Zusammenfassung Die Elektronenstruktur von Äthylen, das an ein aktives Zentrum eines Titan- bzw. Nickelfluoridkristalls gebunden ist, ist mittels der Hartree-Fock-Slater-Theorie kombiniert mit der sog. Discrete Variational Method theoretisch behandelt worden. Es zeigt sich, daß die-Backdonation sowohl im Nickel- als auch im Titankomplex außerordentlich wichtig ist; sie entsteht durch eine starke Wechselwirkung eines Metall-d-Orbitals sowohl mit einem * als auch einem *-Orbital des Äthylens. Dies führt zu einer erheblichen Schwächung der Doppelbindung.Außerdem werden die beiden Systeme (Titan und Nickel) miteinander verglichen.


Alfred P. Sloan Research Fellow  相似文献   

17.
Assignments of the 1* electronic transitions in large carbonyl compounds have been carried out using the molecules-in-molecules method.  相似文献   

18.
Calculations are presented of the energies of the ground and excited and electronic states of ethylene and substituted vinylboranes. The Pople-Segal-Santry method was employed throughout. It is concluded that the excited state of lowest energy in ethylene has * character whilst the lowest energy ultra-violet spectral bands of the latter compounds stem from * transitions.
Zusammenfassung Valenzelektronenrechnungen nach Pople-Segal-Santry wurden für Äthylen und Vinylborane durchgeführt. Danach hat der niedrigste angeregte Zustand von Äthylen *-Charakter, während die längstwellige UV-Bande der Vinylborane einem * -Übergang entspricht.

Résumé Calculs de l'énergie pour les états fondamentaux et excités et de l'éthylène et des vinylboranes substitués. Utilisation de la méthode de Pople-Ségal-Santry. L'état excité le plus bas pour l'éthylène résulte d'une transition * , alors qu'il résulte d'une transition * pour les vinylboranes.
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19.
Reduction of 5-[2-(methoxycarbonyl)ethyl]-1,3-dihydropyrrolizines with lithium aluminum hydride gave 5-(-hydroxypropyl)-1,2-dihydropyrrolizines (in 70–90% yields), which have intramolecular -hydrogen bonds in dilute solutions. The parameters of the -hydrogen bonds were determined in the IR spectra, and their enthalpies were found. The data obtained (OH 95–99 cm–1, –H 3.05 kJ·mole–1) show that among compounds with an aliphatic hydroxyl group and a system of electrons, 5-(-hydroxypropyl)-1,2-dihydropyrrolizines have some of the strongest intramolecular -hydrogen bonds.See [1] for communication XVI.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 3, pp. 359–363, March, 1978.  相似文献   

20.
Formation of negative ions from molecules of some diterpenoid alkaloids under conditions of resonance electron capture was studied. Ions formed by capturing low-energy electrons in the lowest unoccupied molecular orbital similar to the *-C=O or *-Ph—CO2 orbitals contribute predominantly to the mass spectra.  相似文献   

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