Электронная структура и колебательные спектры ряда гетероциклических производных фуллерена
Диссертация
Изучена колебательная структура So-Si переходов в спектрах ряда производных фуллерена и в рамках ЗВ ТФП проведен расчет интенсивностей вибронных переходов. Показано, что ввиду делокализации электронного возбуждения по всему углеродному каркасу в низших возбужденных состояниях структура и силовые поля производных фуллерена незначительно отличаются от параметров для основного электронного… Читать ещё >
Список литературы
- Юровская М.А., Трушков И. В. Реакции циклоприсоединения к бакмиистерфуллерену Сбо: достижения и перспективы // Изв. АН. Сер. Хим. 2002. -V. З.-Р. 343−413.
- Imahori Н. Porphyrin-fullerene linked systems as artificial photosynthetic mimics // Org. Biomol. Chem.-2004. V. 2.-N. 10.-P. 1425−1433.
- Guldi D.M., Prato M. Excited-state properties of Сбо fullerene derivatives // Acc. Chem. Res. 2000. — V. 33. — N. 10. — P. 695−703.
- Liu S.G., Shu L., Rivera J., Liu H., Raimundo J.M., Roncali J., Gorgues A., Echegoyen L. A New Dyad Based on Сбо and a Conjugated Dimethylaniline-Substituted Dithienylethylene Donor//J. Org. Chem. 1999. -V. 64. -N. 13. — P. 4884−4886.
- D’Souza F., Zandler M.E., Deviprasad G.R., Kutner W. Acid-Base Properties of Fulleropyrrolidines: Experimental and Theoretical Investigations // J. Phys. Chem. A -2000. V. 104. — N. 29. — P. 6887−6893.
- Li X.D., Cheng W.D., Wu D.S., Zhang H., Gong Y.J., Lan Y.Z. Theoretical studies on photophysical properties of fullerene and its two derivatives (Сбо, СбоСООСН2, СбоСООНСНз) // Chem. Phys. Lett. 2003. — V. 380. — N. 3−4. — P. 480−485.
- Kraetschmer W., Lamb L.D., Fostiropoulos K., Huffman D.R. Solid Сбо: a new form of carbon // Nature 1990. — V. 347. — P. 354−358.
- Thomas K.G., Biju V., George M.V., Guldi D.M., Kamat P.V. Excited-State Interactions in Pyrrolidinofullerenes // J. Phys. Chem. A 1998. — V. 102. — N. 28. — P. 5341 -5348.
- Tanatar M.A., Graja A., Zhu D.B., Li Y.L. Spectral investigation of a 60]fulleropyrrolidine // Synth. Met. 1998. — V. 94. — N. 1. — P. 83−86.
- Luo C., Fujitsuka M., Watanabe A., Ito O., Gan L., Huang Y., Huang C.H. Substituent and solvent effects on photoexcited states of functionalized fullerene 60] // J. Chem. Soc., Faraday Trans. 1998. — V. 94. — N. 4. — P. 527−532.
- Kordatos K., Da Ros Т., Prato M., Bensasson R.V., Leach S. Absorption spectra of the mono-adduct and eight bis-adduct regioisomers of pyrrolidine derivatives of Сбо // Chem. Phys. 2003. — V. 293. — N. 2. — P. 263−280.
- Попов A.A. Колебательные спектры и молекулярное строение производных фуллеренов Сбо и С70. Диссертация на соискание ученой степени кандидата химических наук- 02.00.04 МГУ им. М. В. Ломоносова, химический факультет, 2003.
- Kraetschmer W., Fostiropoulos К., Huffman D.R. The infrared and ultraviolet absorption spectra of laboratory-produced carbon dust: evidence for the presence of the Сбо molecule // Chem. Phys. Lett. 1990. — V. 170. — N. 2−3. — P. 167−170.
- Menendez J., Page J.B. Vibrational Spectroscopy of Сбо // Topics in Applied Physics -2000.-V. 76.-P. 27−95.
- Martin M.C., Fabian J., Godard J., Bernier P., Lambert J.M., Mihaly L. Vibrational Study of 13C-enriched C60 Ciystals // Phys. Rev. В V. 51. — N. 5. — P. 2844−2847.
- Rosenberg A., Kendziora C. Effect of 13C isotopic substitution on the Raman spectrum of C60 // Phys. Rev. B 1995. — V. 51. — N. 14. — P. 9321 -9324.
- Weeks D.E., Harter W.G. Vibrational frequencies and normal modes of buckminsterfullerene // Chem. Phys. Lett. 1988. — V. 144. -N. 4. — P. 366−372.
- Grunenberg J., Herges R. Calculation of molecular vibrations: Selective scaling factors for semiempirical force constants // J. Comp. Chem. 1997. — V. 18. — N. 16. — P. 20 502 059.
- Pupyshev V.l., Stepanov N.F., Krasnoshchiokov S.V., De Mare G.R., Panchenko Y.N. Some aspects of scaling the molecular quantum mechanical force field // J. Mol. Struct. -1996. V. 376. — N. 1−3. — P. 363−368.
- Zhang B.L., Wang C.Z., Ho K.M. Structures of large fullerenes: Coo to C94 // Chem. Phys. Lett. 1992,-V. 193.-N. 4.-P. 225−230.
- Giannozzi P., Baroni S. Vibrational and dielectric properties of C60 from density-functional perturbation theory // J. Chem. Phys. 1994. — V. 100. — N. 11. — P. 85 378 539.
- Dixon D.A., Chase B.E., Fitzgerald G., Matsuzawa N. Prediction of the fundamental vibrational frequencies for Coo by local density functional theory // J. Phys. Chem. 1995. -V. 99.-N. 13.-P. 4486−4489.
- Schettino V., Pagliai M., Ciabini L., Cardini G. The Vibrational Spectrum of Fullerene C60 // J. Phys. Chem. A 2001. — V. 105. — N. 50. — P. 11 192−11 196.
- Copley J.R.D., Neumann D.A., Cappelletti R.L., Kamitakahara W.A. Neutron scattering studies of C6o and its compounds // J. phys. chem. sol. 1992. — V. 53. — N. 11. — P. 1353−1371.
- Coulombeau C., Jobic H., Carlile C.J., Bennington S.M., Fabre C., Rassat A. On the vibrational spectrum of Coo measured by neutron inelastic scattering // Fullerene Science and Technology 1994. — V. 2. — N. 3. — P. 247−254.
- Nissen M.K., Wilson S.M., Thewalt M.L.W. Highly structured singlet oxygen photoluminescence from crystalline Coo // Phys. Rev. Lett. 1992. — V. 69. — N. 16. — P. 2423−2426.
- Cardini G., Bini R., Salvi P.R., Schettino V., Klein M.L., Strongin R.M., Brard L., Smith Iii A.B. Infrared Spectrum of Two Fullerene Derivatives: CooO and C61H2 // J. Phys. Chem. 1994. — V. 98. — N. 40. — P. 9966−9971.
- Lapinski A., Graja A., Olejniczak I., Bogucki A., Imahori H. Supramolecular porphyrin/fullerene interactions studied by spectral methods // Chem. Phys. 2004. — V. 305.-N. 1−3.-P. 277−284.
- Sun Y., Drovetskaya T., Bolskar R.D., Bau R., Boyd P.D.W., Reed C.A. Fullendes of Pyrrolidine-Functionalized C60//J. Org. Chem 1997.-V. 62.-N. 11.-P. 3642−3649.
- Irngartinger H., Weber A., Oeser T. Determination of the electron density distribution in the bonds of a fullerene derivative by high-resolution X-ray structure analysis // Angew. Chem. Int.Ed. — 1999. — V. 38. — N. 9. — P. 1279−1281.
- Irngartinger H., Kohler C.M., Huber-Patz U., Kratschmer W. Funktionalisierung von C60 mit Nitriloxiden zu 4, 5-Dihydroisoxazolen und deren Strukturbestimmung // Chem. Ber. -1994.- V. 127.-N.3.-P. 581−584.
- Irngartinger H., Weber A., Escher T. Cycloaddition of functionalized nitrile oxides and fulminic acid to 60]fullerene // Liebigs Annales 1996. — N. 11.-P. 1845−1850.
- Drozd V.N., Knyazev V.N., Stoyanovich F.M., Dolgushin F.M., Yanovsky A.I. Cycloaddition of C6o fullerene to stable 2-RSO 2-benzonitrile oxides // Russ. Chem. Bull. 1997.-V.46.-N. l.-P. 113−121.
- Murata Y., Koraatsu K., Wan T.S.M. The Reaction of 60] Fullerene with Lithium Fluorenide: Formation of a Novel 1,4-Adduct of [60] Fullerene // Tetr. Lett. 1996. — V. 37.-N. 39.-P. 7061−7064.
- Martin M.C., Du X., Kwon J., Mihaly L. Observation and assignment of silent and higher-order vibrations in the infrared transmission of Qo crystals // Phys. Rev. В 1994. -V. 50.-N. l.-P. 173−183.
- Graja A., Olejniczak I., Bogucki A., Bonifazi D., Diederich F. Chromophoric interactions in 60]fullerene-porphyrin dyads investigated by solid-state UV-Vis and IR spectroscopies // Chem. Phys. 2004. — V. 300. — N. 1−3. — P. 227−232.
- Hands I.D., Dunn J.L., Bates C.A. Quantitative assessment of the vibronic coupling in Сбо" via doping effects in Raman scattering experiments // Phys. Rev. В 2001. — V. 63. -N. 24.
- Winter J., Kuzmany H. Potassium-doped fullerene КхСбо with x= 0, 1, 2, 3, 4, and 6 // Solid state comm. -1992. -V. 84. -N. 10. P. 935−938.
- Sauvajol J.L., Graja A., Firlej L., Krol S. Raman study of the charge transfer Сбо complexes with tetraphenylphosphonium halides // J. Mol. Struct. 1997. — V. 436−437. -P.19−23.
- Leach S., Vervloet M., Despres A., Breheret E., Hare J.P., John Dennis Т., Kroto H.W., Taylor R., Walton D.R.M. Electronic spectra and transitions of the fullerene Сбо // Chem. Phys. 1992. — V. 160. — N. 3. — P. 451 -466.
- Orlandi G., Negri F. Electronic states and transitions in Сбо and C70 fullerenes // Photochem. Photobiol. Sci. 2002. — V. 1. — N. 5. — P. 289−308.
- Lee S.M., Nicholls R.J., Nguyen-Manh D., Pettifor D.G., Briggs G.A.D., Lazar S., Pankhurst D.A., Cockayne D.J.H. Electron energy loss spectra of Сбо and C70 fullerenes // Chem. Phys. Lett. 2005. — V. 404. — N. 1 -3. — P. 206−211.
- Braga M., Larsson S., Rosen A., Volosov A. Electronic transition in Сбо On the origin of the strong interstellar absorption at 217 nm // Astronomy and Astrophysics — 1991. — V. 245.-N. 1.
- Dauw X.L.R., Bronsveld M.V., Kruger A., Warntjes J.B.M., Witjes M.R., Groenen E.J.J. On the singlet excited states of C70 and C60 // J. Chem. Phys. 1998. — V. 109. -N. 21. -P. 9332−9339.
- Sassara A., Zerza G., Chergui M., Ciulin V., Ganiere J.D., Deveaud B. Picosecond studies of the intramolecular relaxation processes in isolated Сбо and C70 molecules // J. Chem. Phys. 1999. — V. 111. — N. 2. — P. 689−697.
- Sassara A., Zerza G., Ciulin V., Portella-Oberli M.T., Ganiere J.D., Deveaud В., Chergui M. Picosecond and femtosecond studies of the energy redistribution in matrix-isolated Сбо molecules // J. Lumin. 1999. — V. 83−84. — P. 29−32.
- Close J.D., Federmann F., Hoffmann K., Quaas N. Absorption spectroscopy of C6o molecules isolated in helium droplets // Chem. Phys. Lett. 1997. — V. 276. — N. 5−6. — P. 393−398.
- Haufler R.E., Chai Y., Chibante L.P.F., Fraelich MR., Weisman R.B., Curl R.F., Smalley R.E. Cold molecular beam electronic spectrum of Сбо and C70 // J. Chem. Phys. 1991. -V. 95.-P. 2197.
- Bauernschmitt R., Ahlrichs R., Hennrich F.H., Kappes M.M. Experiment versus Time Dependent Density Functional Theory Prediction of Fullerene Electronic Absorption // J. Am. Chem. Soc. 1998. — V. 120. — P. 5052.
- Terminello L.J., Shuh D.K., Himpsel F.J., Lapiano-Smith D.A., Stohr J., Bethune D.S., Meijer G. Unfilled orbitals of Сбо and C70 from carbon K-shell X-ray absorption fine structure // Chem. Phys. Lett. 1991. — V. 182. — N. 5. — P. 491−496.
- Wang X.B., Ding C.F., Wang L.S. High resolution photoelectron spectroscopy of Сбо- // J. Chem. Phys. 1999. — V. 110. — P. 8217.
- Weaver J.H., Martins J.L., Komeda T., Chen Y., Ohno T.R., Kroll G.H., Troullier N., Haufler R.E., Smalley R.E. Electronic structure of solid Coo: Experiment and theory // Phys. Rev. Lett.-1991.-V. 66.-N. 13.-P. 1741−1744.
- Negri F., Orlandi G., Zerbetto F. Interpretation of the vibrational structure of the emission and absorption spectra of C60 // J. Chem. Phys. 1992. — V. 97. — P. 6496−6503.
- Bendale R.D., Baker J.D., Zerner M.C. Calculations on the electronic structure and spectroscopy of Сбо and C70 cage structures // Int. J. Quant. Chem. 1991. — V. 40. — N. S25.-P. 557−568.
- Sassara A., Zerza G., Chergui M., Negri F., Orlandi G. The visible emission and absorption spectrum of C60// J- Chem. Phys. 1997. -V. 107. -N. 21.-P. 8731−8741.
- Bertsch G.F., Schnell A., Yabana K. Electron-vibration coupling in time-dependent density-functional theory: Application to benzene // J. Chem. Phys. -2001. -V. 115. -N. 9.-P. 4051−4054.
- Dierksen M., Grimme S. Density functional calculations of the vibronic structure of electronic absorption spectra // J. Chem. Phys. 2004. — V. 120. — N. 8. — P. 3544.
- Abouaf R., Pommier J., Cvejanovic S. Electron impact on free Ceo- Excited states below 10 eV // Chem. Phys. Lett. 1993. — V. 213. — P. 503−508.
- Gasyna Z., Schatz P.N., Hare J.P., Dennis T.J., Kroto H.W., Taylor R., Walton D.R.M. The magnetic circular dichroism and absorption spectra of Сбо isolated in Ar matrices // Chem. Phys. Lett. 1991. — V. 183. -N. 3−4. — P. 283−291.
- Van den Heuvel D.J., Chan I.Y., Groenen E.J.J., Matsushita M., Schmidt J., Meijer G. On the fluorescence of crystalline C60 at 1.2 К // Chem. Phys. Lett. 1995. — V. 233. — N. 3. -P. 284−290.
- Zerbetto F., Zgierski M.Z. Franck-Condon modeling of the structure of the So→S2 transition of trans, trans-, cis, trans-, and cis, cis-octatetraene // J. Chem. Phys. 1994. -V. 101.-P. 1842−1851.
- Bensasson R.V., Bienvenue E., Fabre C., Janot J.M., Land E.J., Leach S., Leboulaire V., Rassat A., Roux S., Seta P. Photophysical Properties of Three Methanofullerene Derivatives // Chemistry A Eur. J. 1998. — V. 4. — N. 2. — P. 270−278.
- Sun Y.P., Ma В., Bunker C.E. Photoinduced Intramolecular п-я* Electron Transfer in Aminofullerene Derivatives // J. Phys. Chem. A 1998. — V. 102. — P. 7580−7590.
- Graja A., Olejniczak I., Bogucki A. Spectral studies of the bis-linked tetrathiafulvalenes to 60]fullerene // J. Mol. Struct. 2002. — V. 614. — N. 1−3. — P. 59−68.
- Imahori II., Sakata Y. Donor-Linked Fullerenes: Photoinduced electron transfer and its potential application // Advanced Materials 1997. — V. 9. — N. 7. — P. 537−546.
- Ha J.H., Cho H.S., Kim D., Lee J.C., Kim T.Y., Shim Y.K. Time-Resolved Spectroscopic Study on Photoinduced Electron-Transfer Processes in Zn (II)porphyrin-Zn (II)chlorin-Fullerene Triad // ChemPhysChem.
- George Thomas K., Biju V., Kamat P.V., George M.V., Guldi D.M. Dynamics of photoinduced electron-transfer processes in fullerene-based dyads: Effects of varying the donor strength // ChemPhysChem 2003. — V. 4. — P. 1299−1307.
- Guldi D.M., Asmus K.D. Photophysical Properties of Mono- and Multiply-Functionalized Fullerene Derivatives//J. Phys. Chem. A-V. 101.-N. 8.-P. 1472- 1481.
- Ovcharenko A.A., Chertkov V.A., Karchava A.V., Yurovskaya M.A. Cycloaddition Reaction of l-(4-Nitrophenyl)-3-phenylnitrile Ylide to Buckminsterfiillerene60] // Tetr. Lett. 1997. — V. 38. — N. 39. — P. 6933−6936.
- Prato M., Maggini M., Scorrano G. Synthesis and applications of fiilleropyrrolidines // Synth. Met. 1996. — V. 77. -N. 1−3. — P. 89−91.
- Maggini M., Scorrano G., Prato M. Addition of azomethine ylides to Сбо: synthesis, characterization, and functionalization of fullerene pyrrolidines // J. Am. Chem. Soc. -1993. V. 115. — N. 21. — P. 9798−9799.
- Laikov D.N. Fast evaluation of density functional exchange-correlation terms using the expansion of the electron density in auxiliary basis sets // Chem. Phys. Lett. 1997. — V. 281.-N. l.-P. 151−156.
- Perdew J.P., Burke K., Ernzerhof M. Generalized Gradient Approximation Made Simple // Phys. Rev. Lett. 1996. — V. 77. — N. 18. — P. 3865−3868.
- Granovsky A.A. PC GAMESS URL: http://classic.chem.msu.su/gran/iiamess/index.html.
- Кочиков И.В., Курамшина Г. М., Пентин Ю. А., Ягола А. Г. Обратные задачи колебательной спектроскопии -М.: изд. МГУ, 1993.
- Pulay P. Applications of Electronic Structure Theory // Modern Theoretical Chemistry, Schaefer III, H. F., Ed. New York, 1977. — V. 4. — P. 153−185.
- Billes F., Endredi H., Jalsovszky G. Vibrational spectroscopy of diazoles // J. Mol. Struct.: THEOCHEM 1999. — V. 465. -N. 2−3. — P. 157−172.
- El-Azhary A.A. A coupled-cluster study of the structure and vibrational spectra of pyrazole and imidazole // Spectrochim. Acta A 2003. — V. 59. — N. 9. — P. 2009−2025.
- Varsanyi G. Assignments for vibrational spectra of 700 benzene derivatives Budapest: Akademiai Kiado, 1973.
- Schraeder B. Raman/Infrared Atlas of Organic Compounds, VCH, 1989.
- Clarkson J., Smith W.E. A DFT analysis of the vibrational spectra of nitrobenzene // J. Mol. Struct. 2003. — V. 655. — N. 3. — P. 413−422.
- Guirgis G.A., Zhen H., Robb II J.B., Durig J.R. Far infrared spectrum, barrier to internal rotation, and ab initio calculations for 3,3,3-trifluoropropene // Vibr. Spectroscopy -2000.-V. 23.-P. 137−150.
- Balfour W.J. The vibrational spectrum of anisole // Spectrochim. Acta A 1983. — V. 39. -N. 9.-P. 795−800.
- Gellini C., Moroni L., Muniz-Miranda M. High Overtones of the C-H Stretching Vibrations in Anisole and Thioanisole // J. Phys. Chem. A 2002. — V. 106. — N. 46. — P. 10 999−11 007.
- Ozel A.E., Buyukmurat Y., Akyuz S. Infrared-spectra and normal-coordinate analysis of quinoline and quinoline complexes // J. Mol. Struct. 2001. — V. 565−566. — P. 455−462.
- Bohlmann F. Zur Konfigurationsbestimmung von Chinolizin-Derivaten // Angew. Chem. 1957. — V. 69. — N. 20. — P. 641 -642.
- Billes F., Geidel E. Vibrational spectra and harmonic force fields of pyrrolidine derivatives: comparison between HF, MP2 and DFT force fields // Spectrochim. Acta A -1997.-V. 53.-N. 14.-P. 2537−2551.
- Hog J.H., Nygaard L., Sorensen O.G. Microwave spectrum and planarity of nitrobenzene //J. Mol. Struct.-1971.-V. 7.-N. 1−2.-P. 111−121.
- El-Shora A.I. Crystal and Molecular Structure of 3-Hydrazino-l-Hydrazinothio-Carbonyl Pyrazoline (TNT3) // Egyptian Journal of Solids 2000. — V. 23. — N. 2. — P. 251−258.
- Шпольский Э.В. Новые данные о природе квазилинейчатых спектров органических соединений // Усп. Физ. Наук 1963. — V. 80. — N. 2. — Р. 255−279.