Substances: Amides, Cyanides, Nitrates, Nitrites, Nitriles
C2N2, C3HN, HC5N, C4H4N2, C4N2, C2HNO, CH3COCN, CO(CN)2, NCC(O)C(CH3)3, NCC(O)CH(CH3)2, CH3OC(O)CN, HCONH2, N2H4, CH3NHNH2, (CH3)2NNH2, C3H3NO, C2H2N2O, C2H6N2O, C3H8N2O, C4H8N2O, C4H10N2O, C5H10N2O, C6H14N2O, C8H18N2O, DMF, DMA, NMP, DMPA, CH3ONO, CH3NO2, CH3ONO2, C2H5ONO2, n-C3H7ONO2, i-C3H7ONO2, C4H9ONO2, (CH3)3CONO, C5H11ONO2, CCl3O2NO2, CH3CN, CH2(CN)2, CH3O2NO2, CH3CH(ONO2)CH2(ONO2), CH3CH2CH(ONO2)CH2(ONO2), CH3CH(ONO2)CH(ONO2)CH3, CH2(ONO2)CH(ONO2)CHCH2, CH2(ONO2)CHCHCH2(ONO2), CH3C(O)O2NO2, FC(O)OONO2, CF3OONO2, CF3C(O)O2NO2, CF3OC(O)OONO2, ClC(O)OONO2, CH3COCH2(ONO2), CH3CH2COCH2(ONO2), CH3CH(ONO2)COCH3, C6H15N, (CH3)2NNO2, C2H3ClN2, CF3NO, CCl3NO
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| Authors | Journal/Source | Title/Paper |
Data Sheet |
| C2N2; cyanogen; ethanedinitrile; CAS-No.: 460-19-5 | |||
| R. E. Connors, J. L. Roebber, K. Weiss | J. Chem. Phys., 60, 5011, (1974) | Vacuum ultraviolet spectroscopy of cyanogen and cyanoacetylenes | |
| C. Fridh, L. Åsbrink, E. Lindholm | Chem. Phys., 27, 169-181, (1978) | Valence excitation of linear molecules. II. Excitation and UV spectra of C2N2, CO2 and N2O | |
| J. A. Nuth, S. Glicker | J. Quant. Spectr. Radiat. Transfer, 28, 223-231, (1982) | The vacuum ultraviolet spectra of HCN, C2N2, and CH3CN | |
| Y. Benilan | priv. comm., (2006) | LISA; Université Paris 12 | |
| HC≡CCN; HC3N; cyanoacetylene; propiolonitrile; propynenitrile; CAS-No.: 1070-71-9 | |||
| V. A. Job, G. W. King | J. Molecular Spectroscopy, 19, 155-177, (1966) | The electronic spectrum of cyanoacetylene : Part I. Analysis of the 2600-Å system | |
| V. A. Job, G. W. King | J. Molecular Spectroscopy, 19, 178-184, (1966) | The electronic spectrum of cyanoacetylene Part II. Analysis of the 2300-Å system | |
| R.E. Connors, J.L. Roebber, K. Weiss | J. Chem. Phys., 60, 5011, (1974) | Vacuum ultraviolet spectroscopy of cyanogen and cyanoacetylenes | |
| J. A. Halpern, G. E. Miller, H. Okabe, W. Nottingham | J. Photochem. Photobiol. A: Chem., 42, 63-72, (1988) | The UV photochemistry of cyanoacetylene | |
| P. Bruston, H. Poncet, F. Raulin, C. Cossart-Magos, R. Courtin | Icarus, 78 (1), 38-53, (1989) | UV spectroscopy of Titan's atmosphere, planetary organic chemistry, and prebiological synthesis : I. Absorption spectra of gaseous propynenitrile and 2-butynenitrile in the 185- to 250-nm region | |
| M. Khlifi, F. Raulin, E. Arie, G. Graner | J. Molecular Spectroscopy, 143 (2), 209-211, (1990) | Absolute intensity of the IR bands of propynenitrile | |
| Y. Benilan, P. Bruston, F. Raulin, C. Cossart-Magos, J.-C. Guillemin | J. Geophys. Res., 99, E8, 17069-17074, (1994) | Mid-UV spectroscopy of propynenitrile at low temperature: Consequences on expected results from observations of Titan's atmosphere | |
| D. Andrieux, Y. Benilan, E. de Vanssay, P. Paillous, M. Khlifi, F. Raulin, P. Bruston, J.-C. Guillemin | J. Geophys. Res., 100(E5), 9455–9460, (1995) | Absorption coefficient of propynenitrile in the mid-UV range for the study of Titan's atmosphere: Solution to sample contaminations | |
| K. Seki, M. He, R. Liu, H. Okabe | J. Phys. Chem., 100 (13), 5349–5353, (1996) | Photochemistry of Cyanoacetylene at 193.3 nm | |
| T. Titarchuk, J. B. Halpern | Chem. Phys. Lett., 323, 305-311, (2000) | The excitation spectrum of cyanoacetylene (HC3N) and emission from C3N fragments | |
| T. Ferradaz, Y.Benilan, N.Fray, A.Jolly, M.Schwell, M.C.Gazeau, H.-W.Jochims | Planetary Space Science, 57, 10-22, (2009) | Temperature-dependent photoabsorption cross-sections of cyanoacetylene and diacetylene in the mid-and vacuum-UV: Application to Titan’s atmosphere | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| Z. Guennoun, I. Couturier-Tamburelli, N. Piétri, J. P. Aycard | Chem. Phys. Lett., 368, 574-583, (2003) | UV photoisomerisation of cyano and dicyanoacetylene: the first identification of CCNCH and CCCNCN isomers – matrix isolation, infrared and ab initio study | |
| HC5N; H—C≡C—C≡C—C≡N; cyanodiacetylene; 2,4-pentadiynenitrile; CAS-No.: 59866-32-9 | |||
| A. Coupeaud, M. Turowski, M. Gronowski, N. Pietri, I. Couturier-Tamburelli, R. Kolos, J.-P. Aycard | J. Chem. Phys., 126, 164301, (2007) | Spectroscopy of cyanodiacetylene in solid argon and the photochemical generation of isocyanodiacetylene | |
| related data (quantum yield studies; photolysis studies, ir spectra, etc.) | |||
| Y. Bénilan, A. Jolly, Y. Trolez, F. Raulin, J.-C. Guillemin | J. Molecular Spectroscopy, 245, 109-114, (2007) | Infrared band intensities of cyanobutadiyne (HC5N) between 400 and 4000 cm-1 | |
| C4H4N2; pyrimidine; 1,3-diazine; CAS-No.: 289-95-2 | |||
| F. Ferreira da Silva, D. Almeida, G. Martins, A. R. Milosavljevic, B. P. Marinkovic, S. V. Hoffmann, N. J. Mason, Y. Nunes, G. Garcia, P. Limão-Vieira | Phys. Chem. Chem. Phys., 12, 6717-6731, (2010) | The electronic states of pyrimidine studied by VUV photoabsorption and electron energy-loss spectroscopy | |
| C4N2; dicyanoacetylene; CAS-No.: 1071-98-3 | |||
| F.A. Miller, R.B. Hannan, Jr. | Spectrochim. Acta, 12, 321-331, (1958) | The ultraviolet absorption spectrum of dicyanoacetylene | |
| R.E. Connors, J.L. Roebber, K. Weiss | J. Chem. Phys., 60, 5011, (1974) | Vacuum ultraviolet spectroscopy of cyanogen and cyanoacetylenes | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| Z. Guennoun, I. Couturier-Tamburelli, N. Piétri, J. P. Aycard | Chem. Phys. Lett., 368, 574-583, (2003) | UV photoisomerisation of cyano and dicyanoacetylene: the first identification of CCNCH and CCCNCN isomers – matrix isolation, infrared and ab initio study | |
| C2HNO; formyl cyanide; CAS-No.: 4471-47-0 | |||
| R.H. Judge, D.C. Moule, A. Biernacki, M. Benkel, J.M. Ross, J. Rustenburg | J. Mol. Spectroscopy, 116, 364-370, (1986) | Laser Excitation Spectrum and the Long Path Length Absorption Spectrum of Formyl Cyanide, CHOCN | |
| D. J. Clouthier, D. C. Moule | J. Am. Chem. Soc., 109 (21), 6259-6261, (1987) | Spectroscopic identification of formyl cyanide (CHOCN) in the flash pyrolysis of methoxyacetonitrile | |
| CH3COCN; acetyl cyanide; CAS-No.: 631-57-2 | |||
| A. Furlan, H.A. Scheld, J.R. Huber | J. Phys. Chem. A, 104, 1920-1929, (2000) | The two competitive photodissociation channels in cyano carbonyls (NCC(O)X, X = CH3, CH(CH3)2, C(CH3)3, OCH3) at 193 nm. A study by photofragment translational energy spectroscopy | |
| CO(CN)2; carbonyl cyanide; CAS-No.: 1115-12-4 | |||
| A.B.F. Duncan, R. F. Whitlook | Spectrochim. Acta A: Mol. Spec., 27, 2539-2541, (1971) | Vacuum ultraviolet absorption spectrum of carbonyl cyanide | |
| H.A. Scheld, A. Furlan, J.R. Huber | J. Chem. Phys., 111, 923-930, (1999) | The photodissociation of carbonyl cyanide CO(CN)2 at 193 nm studied by photofragment translational energy spectroscopy | |
| related data (quantum yield studies; photolysis studies, ir spectra, etc.) | |||
| Q. Li, R. T. Carter, J. R. Huber | Chem. Phys. Lett., 323, 105-110, (2000) | 193 nm photodissociation of carbonyl cyanide CO(CN)2 probed by the CN(v,J) fragment | |
| H. U. Suter, R. Pfister, A. Furlan, J. R. Huber | J. Phys. Chem. A, 111 (5), 764-769, (2007) | Dissociation and Recombination in the Photochemical Decay of Carbonyl Cyanide CO(CN)2 in Cryogenic Matrixes | |
| NCC(O)C(CH3)3; pivaloyl cyanide; CAS-No.: 42867-40-3 | |||
| A. Furlan, H.A. Scheld, J.R. Huber | J. Phys. Chem. A, 104, 1920-1929, (2000) | The two competitive photodissociation channels in cyano carbonyls (NCC(O)X, X = CH3, CH(CH3)2, C(CH3)3, OCH3) at 193 nm. A study by photofragment translational energy spectroscopy | |
| NCC(O)CH(CH3)2; isobutyryl cyanide; CAS-No.: | |||
| A. Furlan, H.A. Scheld, J.R. Huber | J. Phys. Chem. A, 104, 1920-1929, (2000) | The two competitive photodissociation channels in cyano carbonyls (NCC(O)X, X = CH3, CH(CH3)2, C(CH3)3, OCH3) at 193 nm. A study by photofragment translational energy spectroscopy | |
| CH3OC(O)CN; methyl cyanoformate; CAS-No.: 17640-15-2 | |||
| A. Furlan, H.A. Scheld, J.R. Huber | J. Phys. Chem. A, 104, 1920-1929, (2000) | The two competitive photodissociation channels in cyano carbonyls (NCC(O)X, X = CH3, CH(CH3)2, C(CH3)3, OCH3) at 193 nm. A study by photofragment translational energy spectroscopy | |
| HCONH2; formamide; CAS-No.: 75-12-7 | |||
| H. D. Hunt, W. T. Simpson | J. Am. Chem. Soc., 75 (18), 4540-4543, (1953) | Spectra of Simple Amides in the Vacuum Ultraviolet | |
| J.M. Heller, L.R. Painter, R.D. Birkhoff | J. Chem. Phys., 71 (11), 4641-4645, (1979) | Optical studies of liquid formamide in the vacuum ultraviolet | |
| J. M. Gingell, N. J. Mason, H. Zhao, I. C. Walker, M. R. F. Siggel | Chem. Phys., 220, 191-205, (1997) | VUV optical-absorption and electron-energy-loss spectroscopy of formamide | |
| N2H4; hydrazine; CAS-No.: 302-01-2 | |||
| G. L. Vaghjiani | J. Chem. Phys., 98, 2123-2131, (1993) | Ultraviolet absorption cross sections for N2H4 vapor between 191-291 nm and H(2S) quantum yield in 248 nm photodissociation at 296 K | |
| G. L. Vaghjiani | J. Phys. Chem. A, 101 (23), 4167-4171, (1997) | UV Absorption Cross Sections, Laser Photodissociation Product Quantum Yields, and Reactions of H Atoms with Methylhydrazines at 298 K | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| R.R. Wenner, A.O. Beckman | J. Am. Chem. Soc., 54 (7), 2787-2797, (1932) | The quantum yield in the photochemical decomposition of gaseous Hydrazine | |
| L. J. Stief, V. J. DeCarlo, R. J. Mataloni | Journal of Chemical Physics, 46, Issue 2, 592-598, (1967) | Vacuum-Ultraviolet Photochemistry. VII. Photolysis of Hydrazine at 1236 and 1470 A | |
| P. Lindberg, D. Raybone, J. A. Salthouse, T. M. Watkinson, J. C. Whitehead | Molecular Physics, Volume 62, Issue 6, 1297 - 1306, (1987) | The production of electronically-excited species from the photolysis of N2H4 and N2D4 at 193 nm | |
| G. L. Vaghjiani | Int. J. Chem. Kinetics, 27, 777-790, (1995) | Laser photolysis studies of hydrazine vapor: 193 and 222-nm H-atom primary quantum yields at 296 K, and the kinetics of H + N2H4 reaction over the temperature range 222-657 K | |
| CH3NHNH2; monomethylhydrazin; CAS-No.: 60-34-4 | |||
| G. L. Vaghjiani | J. Phys. Chem. A, 101 (23), 4167-4171, (1997) | UV Absorption Cross Sections, Laser Photodissociation Product Quantum Yields, and Reactions of H Atoms with Methylhydrazines at 298 K | |
| (CH3)2NNH2; dimethylhydrazine; CAS-No.: 57-14-7 | |||
| G. L. Vaghjiani | J. Phys. Chem. A, 101 (23), 4167-4171, (1997) | UV Absorption Cross Sections, Laser Photodissociation Product Quantum Yields, and Reactions of H Atoms with Methylhydrazines at 298 K | |
| C3H3NO; isoxazole; 1-oxa-2-azacyclopentadiene; CAS-No.: 288-14-2 | |||
| M. Dampc, B. Mielewska, M. R.F. Siggel-King, G C. King, B. Sivaraman, S. Ptasinska, N. Mason, M. Zubek | Chem. Phys., 367, 75-79, (2010) | Threshold photoelectron studies of isoxazolenext term over the energy range 9.9-30 eV | |
| C2H2N2O; 1,2,5-oxadiazole; furazan; CAS-No.: 288-37-9 | |||
| B.J. Forrest, A.W. Richardson | Can. J. Chem., 50, 2088-2091, (1972) | The ultraviolet absorption spectrum of furazan | |
| M.H. Palmer | Chem. Phys., 360, 150-161, (2009) | The electronic states of 1,2,5-oxadiazole studied by VUV absorption spectroscopy and CI, CCSD(T) and DFT methods | |
| C2H6N2O; N-nitrosodimethylamine; NDMA; CAS-No.: 62-75-9 | |||
| M. H. Plumlee, M. Reinhard | Environ. Sci. Technol., 41 (17), 6170-6176, (2007) | Photochemical Attenuation of N-Nitrosodimethylamine (NDMA) and Other Nitrosamines in Surface Water | |
| C3H8N2O; N-nitrosomethylethylamine; CAS-No.: 10595-95-6 | |||
| M. H. Plumlee, M. Reinhard | Environ. Sci. Technol., 41 (17), 6170-6176, (2007) | Photochemical Attenuation of N-Nitrosodimethylamine (NDMA) and Other Nitrosamines in Surface Water | |
| C4H8N2O; NPYR; N-nitrosopyrrolidine; CAS-No.: 930-55-2 | |||
| M. H. Plumlee, M. Reinhard | Environ. Sci. Technol., 41 (17), 6170-6176, (2007) | Photochemical Attenuation of N-Nitrosodimethylamine (NDMA) and Other Nitrosamines in Surface Water | |
| C4H10N2O; N-nitrosodiethylamine; NDEA; CAS-No.: 55-18-5 | |||
| M. H. Plumlee, M. Reinhard | Environ. Sci. Technol., 41 (17), 6170-6176, (2007) | Photochemical Attenuation of N-Nitrosodimethylamine (NDMA) and Other Nitrosamines in Surface Water | |
| C5H10N2O; N-nitrosopiperidine; NPIP; CAS-No.: 100-75-4 | |||
| M. H. Plumlee, M. Reinhard | Environ. Sci. Technol., 41 (17), 6170-6176, (2007) | Photochemical Attenuation of N-Nitrosodimethylamine (NDMA) and Other Nitrosamines in Surface Water | |
| C6H14N2O; N-nitrosodi-n-propylamine; NDPA; CAS-No.: 621-64-7 | |||
| M. H. Plumlee, M. Reinhard | Environ. Sci. Technol., 41 (17), 6170-6176, (2007) | Photochemical Attenuation of N-Nitrosodimethylamine (NDMA) and Other Nitrosamines in Surface Water | |
| C8H18N2O; NDBA; N-nitrosodi-n-butylamine; CAS-No.: 924-16-3 | |||
| M. H. Plumlee, M. Reinhard | Environ. Sci. Technol., 41 (17), 6170-6176, (2007) | Photochemical Attenuation of N-Nitrosodimethylamine (NDMA) and Other Nitrosamines in Surface Water | |
| O=CN(C)C; DMF; N, N-dimethylformamide; CAS-No.: 68-12-2 | |||
| H. D. Hunt, W. T. Simpson | J. Am. Chem. Soc., 75 (18), 4540-4543, (1953) | Spectra of Simple Amides in the Vacuum Ultraviolet | |
| A. Chakir, G. Solignac, A. Mellouki, D. Daumont | Chem. Phys. Let., 404, 74 - 78, (2005) | Gas phase UV absorption cross-sections for a series of amides (298 - 363 K) | |
| C4H9NO; CH3CON(CH3)2; DMA; dimethylacetamide; CAS-No.: 127-19-5 | |||
| A. Chakir, G. Solignac, A. Mellouki, D. Daumont | Chem. Phys. Let., 404, 74 - 78, (2005) | Gas phase UV absorption cross-sections for a series of amides (298 - 363 K) | |
| C5H9NO; NMP; n-methyl pyrrolidone; CAS-No.: 872-50-4 | |||
| A. Chakir, G. Solignac, A. Mellouki, D. Daumont | Chem. Phys. Let., 404, 74 - 78, (2005) | Gas phase UV absorption cross-sections for a series of amides (298 - 363 K) | |
| (CH3)2NC(O)CCH3; DMPA; N,N-dimethylpropionamide; CAS-No.: 758-96-3 | |||
| A. Chakir, G. Solignac, A. Mellouki, D. Daumont | Chem. Phys. Let., 404, 74 - 78, (2005) | Gas phase UV absorption cross-sections for a series of amides (298 - 363 K) | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| G. El Dib, A. Chakir | Atmospheric Environment, 41, 5887–5896, (2007) | Temperature-dependence study of the gas-phase reactions of atmospheric NO3 radicals with a series of amides | |
| CH3ONO; methyl nitrite; CAS-No.: 624-91-9 | |||
| H.A. Wiebe, J. Heicklen | J. Am. Chem. Soc., 95, 1-7, (1973) | Photolysis of methyl nitrite | |
| W.D. Taylor, T.D. Allston, M.J. Moscato, G.B. Fazekas, R. Koslowski, G.A. Takacs | Int. J. Chem. Kinetics, 12, 231-240, (1980) | Atmospheric photodissociation lifetimes for nitromethane, methyl nitrite, and methyl nitrate | |
| M. Hippler, J. Pfab | J. Chem. Soc., Faraday Trans., 88, 2109 - 2110, (1992) | Faraday communications. Electronic absorption spectrum of methyl nitrite in the near-ultraviolet | |
| Dianxun Wang, Sheng Li, Ying Li, Shijun Zheng, Chuanfan Ding, Yiqin Gao, Wenwu Chen | J. Electron Spectroscopy and Related Phenomena, 82, 19-22, (1996) | HeI photoelectron spectroscopic (PES) studies of the electronic structure for alkyl nitrites CH3(CH2)nONO (n = 0, 1, 2, 3) | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| F. Lahmani, C. Lardeux, D. Solgadi | Il Nuovo Cimento B (1971-1996), 63, 233-240, (1981) | Photodissociation of organic nitrites in the vacuum ultraviolet | |
| M. R. S. McCoustra, M. Hippler, J. Pfab | Chem. Phys. Lett., 200, 451-458, (1992) | The 355 nm laser photolysis of jet-cooled methyl nitrite (CH3ONO). Internal energy distributions of the NO fragment | |
| Xian-fang Yue, Ju-long Sun, Zhen-feng Liu, Qiang Wei, Ke-li Han | Chem. Phys. Lett., 426, 57-60, (2006) | Photodissociation dynamics of the S2 state of CH3ONO: LIF observation of nascent OH State distributions | |
| CH3NO2; nitromethane; CAS-No.: 75-52-5 | |||
| S. Nagakura | Mol. Phys., 3, 152-162, (1960) | Ultra-violet absorption spectra and pi-electron structures of nitromethane and the nitromethyl anion | |
| I.M. Napier, R.G.W. Norrish | Proc. Roy. Soc. London A, 299, 317-336, (1967) | The photolysis and pyrolysis of nitromethane and methyl nitrite | |
| W.D. Taylor, T.D. Allston, M.J. Moscato, G.B. Fazekas, R. Koslowski, G.A. Takacs | Int. J. Chem. Kinet., 12, 231-240, (1980) | Atmospheric photodissociation lifetimes for nitromethane, methyl nitrite, and methyl nitrate | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| J.C. Mialocq | Translated from: Journal de Physique, 48 (9), C4-163 - C4-178, (1987) | Photodecomposition of energetic nitro compounds | |
| CH3ONO2; methyl nitrate; CAS-No.: 598-58-3 | |||
| V. McMillan | John Wiley & Sons, London, p. 454, (1966) | Calvert and Pitts, Photochemistry | |
| W.D. Taylor, T.D. Allston, M.J. Moscato, G.B. Tazekas, R. Koslowski, G.A. Takacs | Int. J. Chem. Kin., 12, 231-240, (1980) | Atmospheric Photodissociation Lifetimes for Nitromethane, Methyl Nitrite, and Methyl Nitrate | |
| J.M. Roberts, R.W. Fajer | Environm. Sci. Technol., 23, 945-951, (1989) | UV Absorption Cross Sections of Organic Nitrates of Potential Atmospheric Importance and Estimation of Atmospheric Lifetimes | |
| O. Rattigan, E. Lutman, R.L. Jones, R.A. Cox, K. Clemitshaw, and J. Williams | J. Photochem. Photobiol., 66, 313-326, (1992) | Temperature-Dependent Absorption Cross-Sections of Gaseous Nitric Acid and Methyl Nitrate | |
| H.G. Libuda, F. Zabel | Ber. Bunsenges. Phys. Chem., 99, 1205-1213, (1995) | UV Absorption Cross Section of Acetyl Peroxynitrate and Trifuoroacetyl Peroxynitrate at 298 K | |
| R.K. Talukdar, J.B. Burkholder, M. Hunter, M.K. Gilles, J.M. Roberts, A.R. Ravishankara | J. Chem. Soc., Faraday Trans., 93, 16, 2797-2805, (1997) | Atmospheric fate of several alkyl nitrates | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| X. Yang, P. Felder, J. R. Huber | J. Phys. Chem., 97 (42), 10903-10910, (1993) | Photodissociation of methyl nitrate in a molecular beam | |
| P. Gorrotxategi Carbajo, A. J. Orr-Ewing | Phys. Chem. Chem. Phys., 12, 6084-6091, (2010) | NO2 quantum yields from ultraviolet photodissociation of methyl and isopropyl nitrate | |
| C2H5ONO2; ethyl nitrate; CAS-No.: 625-58-1 | |||
| V. McMillan | John Wiley & Sons, London, 1966, p. 454 | Calvert and Pitts, Photochemistry | |
| J.M. Roberts, R.W. Fajer | Environ. Sci. Technol., 23, 945-951, (1989) | UV absorption cross sections of organic nitrates of potential atmospheric importance and estimation of atmospheric lifetimes | |
| M.P. Turberg, D.M. Giolando, C. Tilt, T. Soper, S. Mason, M. Davies, P. Klingensmith, G.A. Takacs | J. Photochem. Photobiol. A. Chem., 51, 281-292, (1990) | Atmospheric chemistry of alkyl nitrates | |
| K.C. Clemitshaw, J. Williams, O.V. Rattigan, D.E. Shallcross, K.S. Law, R.A. Cox | J. Photochem. Photobiol. A: Chem., 102, 117-126, (1996) | Gas-phase ultraviolet absorption cross-sections and atmospheric lifetimes of several C2-C5 alkyl nitrates | |
| L. Zhu, C.F. Ding | Chem. Phys. Lett., 265, 177-184, (1997) | Temperature Dependence of the Near UV Absorption Spectra and Photolysis Products of Ethyl Nitrate | |
| R.K. Talukdar, J.B. Burkholder, M. Hunter, M.K. Gilles, J.M. Roberts, A.R. Ravishankara | J. Chem. Soc., Faraday Trans., 93, 16, 2797-2805, (1997) | Atmospheric fate of several alkyl nitrates | |
| C3H7ONO2; n-propyl nitrate; CAS-No.: 627-13-4 | |||
| M.P. Turberg, D.M. Giolando, C. Tilt, T. Soper, S. Mason, M. Davies, P. Klingensmith, G.A. Takacs | J. Photochem. Photobiol. A. Chem., 51, 281-292, (1990) | Atmospheric chemistry of alkyl nitrates | |
| L. Zhu, D. Kellis | Chem. Phys. Lett., 278, 41-48, (1997) | Temperature dependence of the UV absorption cross sections and photodissociation products of C3-C5 alkyl nitrates | |
| i-C3H7ONO2; i-propyl nitrate; CAS-No.: 1712-64-7 | |||
| R.K. Talukdar, J.B. Burkholder, M. Hunter, M.K. Gilles, J.M. Roberts, A.R. Ravishankara | J. Chem. Soc., Faraday Trans., 93, 16 (1997), 2797-2805 | Atmospheric fate of several alkyl nitrates | |
| L. Zhu, D. Kellis | Chem. Phys. Lett., 278, 41-48, (1997) | Temperature dependence of the UV absorption cross sections and photodissociation products of C3-C5 alkyl nitrates | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| P. Gorrotxategi Carbajo, A. J. Orr-Ewing | Phys. Chem. Chem. Phys., 12, 6084-6091, (2010) | NO2 quantum yields from ultraviolet photodissociation of methyl and isopropyl nitrate | |
| C4H9ONO2; 1-butyl nitrate; CAS-No.: | |||
| L. Zhu, D. Kellis | Chem. Phys. Lett., 278, 41-48, (1997) | Temperature dependence of the UV absorption cross sections and photodissociation products of C3-C5 alkyl nitrates | |
| (CH3)3CONO; t-butyl nitrite, CAS-No.: 540-80-7 | |||
| H. W. Thompson, F. S. Dainton | Trans. Faraday Soc., 33, 1546-1555, (1937) | The photochemistry of alkyl nitrites. III | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| G. R. McMillan | J. Am. Chem. Soc., 84, 4007-4011, (1962) | Photolysis of Alkyl Nitrites. I. tert-Butyl Nitrite | |
| C5H11ONO2; 1-pentyl nitrate; CAS-No.: | |||
| K.C. Clemitshaw, J. Williams, O.V. Rattigan, D.E. Shallcross, K.S. Law, R.A. Cox | J. Photochem. Photobiol. A: Chem., 102, 117-126, (1996) | Gas-phase ultraviolet absorption cross-sections and atmospheric lifetimes of several C2-C5 alkyl nitrates | |
| L. Zhu, D. Kellis | Chem. Phys. Lett., 278, 41-48, (1997) | Temperature dependence of the UV absorption cross sections and photodissociation products of C3-C5 alkyl nitrates | |
| CCl3O2NO2; trichloromethyl peroxynitrate; CAS-No.: 70490-93-6 | |||
| O. Morel, R. Simonaitis, J. Heicklen | Chem. Phys. Lett., 73, 38-42, (1980) | Ultraviolet Absorption Spectra of HO2NO2, CCl3O2NO2, CCl2FO2NO2, and CH3O2NO2 | |
| CH3CN; acetonitrile; CAS-No.: 75-05-8 | |||
| M. N. R. Ashfold, J. P. Simons | J. Chem. Soc., Faraday Trans., 2, 74, 1263-1274, (1978) | Vacuum ultraviolet photodissociation spectroscopy of CH3CN, CD3CN, CF3CN and CH3NC | |
| J. A. Nuth, S. Glicker | J. Quant. Spectr. Radiat. Transfer, 28, 223-231, (1982) | The vacuum ultraviolet spectra of HCN, C2N2, and CH3CN | |
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| C. Zetzsch | Ozone in the Atmosphere (R.D. Boikov and P. Fabian, Eds.), DEEPAK Publishing, 685-689, (1989) | UV absorption cross sections of sulfur hexafluoride and acetonitrile | |
| M. Gochel-Dupuis, J. Delwiche, M. -J. Hubin-Franskin, J. E. Collin | Chem. Phys. Lett., 193, 41-48, (1992) | High-resolution HeI photoelectron spectrum of acetonitrile | |
| S. Eden, P. Limão-Vieira, P. Kendall, N.J. Mason, S.V. Hoffmann, S.M. Spyrou | Eur. Phys. J. D, 26, 201-210, (2003) | High resolution photo-absorption studies of acrylonitrile, C2H3CN, and acetonitrile, CH3CN | |
| S. Leach, M. Schwell, Sun Un, H.-W. Jochims, H. Baumgärtel | Chem. Phys., 344, 147-163, (2008) | VUV absorption spectroscopy of acetonitrile between 7 and 20 eV: A revisionist study | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| M. Schwell, H.-W. Jochims, H. Baumgärtel, S. Leach | Chem. Phys., 344, 164-175, (2008) | VUV photophysics of acetonitrile: Fragmentation, fluorescence and ionization in the 7–22 eV region | |
| CH2(CN)2; malononitrile; CAS-No.: 109-77-3 | |||
| S. Uchida, K. Tabayashi, M. Tanaka, O. Takahashi, K. Saito, M. Kono, T. Ibuki | Chem. Phys. Lett., 282, 375-380, (1998) | Photoabsorption and fluorescence excitation of malononitrile in the vacuum UV region | |
| CH3O2NO2; methyl peroxynitrate; CAS-No.: 42829-59-4 | |||
| R.A. Cox, G.S. Tyndall | Chem. Phys. Lett., 65, 357-360, (1979) | Rate Constants for Reactions of CH3O2 in the Gas Phase | |
| O. Morel, R. Simonaitis, J. Heicklen | Chem. Phys. Lett., 73, 38-42, (1980) | Ultraviolet Absorption Spectra of HO2NO2, CCl3O2NO2, CCl2FO2NO2, and CH3O2NO2 | |
| S.P. Sander, R.T. Watson | J. Phys. Chem., 84, 1664-1674, (1980) | Kinetic studies of the reactions of methyldioxy with nitric oxide, nitrogen dioxide, and methyldioxy at 298 K | |
| I. Bridier, R. Lesclaux, B. Veyret | Chem. Phys. Lett., 191, 259-263, (1992) | Flash photolysis kinetic study of the equilibrium CH3O2 + NO2 <--> CH3O2NO2 | |
| CH3CH(ONO2)CH2(ONO2); 1,2-propanediol dinitrate; CAS-No.: 6423-43-4 | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reser voir | |
| CH3CH2CH(ONO2)CH2(ONO2); 1,2-butanediol dinitrate | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reservoir | |
| CH3CH(ONO2)CH(ONO2)CH3; 2,3-butanediol dinitrate; CAS-No.: 6423-45-6 | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reservoir | |
| CH2(ONO2)CH(ONO2)CHCH2; 3,4-dinitrooxy-1-butene | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reservoir | |
| CH2(ONO2)CHCHCH2(ONO2); cis 1,4-dinitrooxy-2-butene | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reservoir | |
| CH3COO2NO2; PAN; CAS-No.: 2278-22-0 | |||
| E.R. Stephens | priv. comm., (1981) | University of California, (298 K) | |
| G.I. Senum, Y.-N. Lee, J.S. Gaffney | J. Phys. Chem., 88, 1269-1270, (1984) | Ultraviolet Absorption Spectrum of Peroxyacetyl Nitrate and Peroxypropionyl Nitrate | |
| N. Basco and S.S. Parmar | Int. J. Chem. Kinet. 19, 115-128 (1987) | The reaction of acetylperoxy radicals with NO2 | |
| N. Tsalkani, G. Toupance | Atmos. Env., 23, 1849-1854, (1989) | Infrared absorptivities and integrated band intensities for gaseous peroxyacetyl nitrate (PAN) | |
| H.G. Libuda, F. Zabel | Proceedings of an International Scientific Colloquium, Collogne, Germany DLR 94-06, (1994) | UV Absorption Spectra of Peroxynitrates | |
| H.G. Libuda, F. Zabel | Ber. Bunsenges. Phys. Chem., 99, 1205-1213, (1995) | UV Absorption Cross Section of Acetyl Peroxynitrate and Trifuoroacetyl Peroxynitrate at 298 K | |
| R.K. Talukdar, J.B. Burkholder, A.-M. Schmoltner, J.M. Roberts, R.R. Wilson, A.R. Ravishankara | J. Geophys. Res., 100, 14163-14173, (1995) | Investigation of the Loss Processes for Peroxyacetyl Nitrate in the Atmosphere: UV Photolysis and Reaction with OH | |
| G. Allen, J. J. Remedios, D. A. Newnham, K. M. Smith, P. S. Monks | Atmos. Chem. Phys., 5, 47–56, (2005) | Improved mid-infrared cross-sections for peroxyacetyl nitrate (PAN) vapour | |
| G. Allen, J. J. Remedios, K. M. Smith | Atmos. Chem. Phys., 5, 3153–3158, (2005) | Low temperature mid-infrared cross-sections for peroxyacetyl nitrate (PAN) vapour | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| T. L. Mazely, R. R. Friedl, S. P. Sander | J. Phys. Chem., 99 (20), 8162–8169, (1995) | Production of NO2 from Photolysis of Peroxyacetyl Nitrate | |
| T. L. Mazely, R. R. Friedl, S. P. Sander | J. Phys. Chem. A, 101 (38), 7090–7097, (1997) | Quantum Yield of NO3 from Peroxyacetyl Nitrate Photolysis | |
| M. H. Harwood, J. M. Roberts, G. J. Frost, A. R. Ravishankara, J. B. Burkholder | J. Phys. Chem. A, 107 (8), 1148–1154, (2003) | Photochemical Studies of CH3C(O)OONO2 (PAN) and CH3CH2C(O)OONO2 (PPN): NO3 Quantum Yields | |
| S. A. Nizkorodov, J. D. Crounse, J. L. Fry, C. M. Roehl, P. O.Wennberg | Atmos. Chem. Phys., 5, 385–392, (2005) | Near-IR photodissociation of peroxy acetyl nitrate | |
| B.A. Flowers, M.E. Angerhofer, W.R. Simpson, T. Nakayama, Y. Matsumi | J. Phys. Chem. A, 109 (11), 2552-2558, (2005) | Nitrate radical quantum yield from peroxyacetyl nitrate photolysis | |
| B. A. Flowers, J. F. Stanton, W. R. Simpson | J. Phys. Chem. A, 111 (45), 11602 -11607, (2007) | Wavelength Dependence of Nitrate Radical Quantum Yield from Peroxyacetyl Nitrate Photolysis: Experimental and Theoretical Studies | |
| FC(O)OONO2; fluorocarbonyl peroxynitrate; CAS-No.: | |||
| D. Scheffler, I. Schaper, H. Willner, H.-G. Mack, H. Oberhammer | Inorg. Chemistry, 36, 339-344, (1997) | Properties of Fluorocarbonyl Peroxynitrate | |
| F.E. Malanca, Chiappero M.S., Arguello G.A. | J. Photochem. Photobio. A: Chemistry, 184, 212-215, (2006) | Fluorocarbonyl peroxynitrate (FC(O)OONO2): temperature dependence of the UV absorption spectrum | |
| CF3OONO2; trifluoromethyl peroxynitrate; CAS-No.: 50311-48-3 | |||
| R. Kopitzky, H. Willner, H.-G. Mack, A. Pfeiffer, H. Oberhammer | Inorg. Chem., 37, 6208-6213, (1998) | IR and UV absorption cross sections, vibrational analysis, and the molecular structure of trifluoromethyl peroxynitrate, CF3OONO2 | |
| F. E. Malanca, M. S. Chiappero, G. A. Argüello, T. J. Wallington | Atmospheric Environment, 39, 5051-5057, (2005) | Trifluoro methyl peroxynitrate (CF3OONO2): Temperature dependence of the UV absorption spectrum and atmospheric implications | |
| CF3C(O)O2NO2; trifluoroacetyl peroxynitrate | |||
| H.G. Libuda, F. Zabel | Proceedings of an International Scientific Colloquium, Collogne, Germany DLR 94-06, (1994) | UV Absorption Spectra of Peroxynitrates | |
| H.G. Libuda, F. Zabel | Ber. Bunsenges. Phys. Chem., 99, 1205-1213, (1995) | UV Absorption Cross Section of Acetyl Peroxynitrate and Trifuoroacetyl Peroxynitrate at 298 K | |
| R. Kopitzky, M. Beuleke, G. Balzer, H. Willner | Inorg. Chemistry, 36, 1994-1997, (1997) | Properties of Trifluoroacetyl Peroxynitrate, CF3C(O)OONO2 | |
| CF3OC(O)OONO2; trifluoromethoxycarbonyl peroxynitrate | |||
| S. von Ahsen, P. Garcia, H. Willner, G. A. Arguello | Inorg. Chem., 44, 5713-5718, (2005) | Trifluoromethoxycarbonyl Peroxynitrate, CF3OC(O)OONO2 | |
| F.E. Malanca, M.D. Manetti, M.S. Chiappero, P. Gallay, G.A. Argüello | J. Photochem. Photobiol. A: Chem., 205, 44-50, (2009) | Photochemistry and absorption cross-sections temperature dependence of trifluoromethoxycarbonyl peroxy nitrate (CF3OC(O)OONO2) | |
| ClC(O)OONO2; chloroformyl peroxynitrate | |||
| P. Garcia, H. Pernice, H. Willner, H. Oberhammer, G. A. Arguello | Inorg. Chem., 44, 4415-4420, (2005) | Properties of Chloroformyl Peroxynitrate, ClC(O)OONO2 | |
| CH3COCH2(ONO2); alpha-nitrooxy acetone | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reservoir | |
| CH3CH2COCH2(ONO2); 1-nitrooxy-2-butanone | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reservoir | |
| CH3CH(ONO2)COCH3; 3-nitrooxy-2-butanone | |||
| I. Barnes, K.H. Becker, T. Zhu | J. Atmos. Chem., 17, 353-373, (1993) | Near UV Absorption Spectra and Photolysis Products of Difunctional Organic Nitrates: Possible Importance as NOx Reservoir | |
| C6H15N; triethylamine; CAS-No.: 121-44-8 | |||
| H. Tsubomura, K. Kimura, K. Kaya, J. Tanaka, S. Nagakura | Bulletin of the Chemical Society of Japan, 37 (3), 417-423, (1964) | Vacuum Ultraviolet Absorption Spectra of Saturated Organic Compounds with Non-bonding Electrons | |
| (CH3)2NNO2; dimethylnitramine; CAS-No.: 4164-28-7 | |||
| M.J. McQuaid, R.C. Sausa | Appl. Spectrosc., 45, 916-917, (1991) | Absorption Cross Sections of Gaseous Dimethylnitramine at Selected Wavelengths between 185 and 325 nm | |
| R.C. Sausa, M.J. McQuaid | Final technical rept. Jun 90-Jun 91; A366242; (1992) | UV Absorption Cross Sections of Gaseous Dimethylnitramine | |
| related data (quantum yield studies; photolysis studies, etc.) | |||
| M. J. McQuaid, A. W. Miziolek, R. C. Sausa, C. N. Merrow | J. Phys. Chem., 95 (7), 2713-2718, (1991) | Photodissociation of dimethylnitramine at 248 nm | |
| C2H3ClN2; 3-chloro-3-methyldiazirine; CAS-No.: 4222-21-3 | |||
| related data (quantum yield studies; photolysis studies, etc.) | |||
| W. E. Jones, J. S. Wasson, M. T. H. Liu | J. Photochem., 5 (3), 194-195, (1976) | The photochemistry of 3-Chloro-3-methyl-diazirine | |
| J. M. Figuera, A. Tobar | J. Photochem., 10 (5), 473-482, (1979) | Photodecomposition quantum yields of 3-chloro-3-methyldiazirine in the gas phase | |
| CF3NO; trifluoronitrosomethane; CAS-No.: 334-99-6 | |||
| J. Jander, R.N. Haszeldine | J. Chem. Soc., 912-919, (1954) | Reactions of fluorocarbon radicals. Part XIII. Alternative syntheses, properties, and spectra of trifluoro-nitroso- and -nitro-methane | |
| J. Mason, J. Banus | J. Chem. Soc., 3904-3912, (1957) | Perfluoroalkyl compounds of nitrogen. Part IV. Electronic absorption spectra of perfluoro-nitroso- and -nitro-alkanes, and related molecules | |
| T.D. Allston, M.L. Fedyk, G.A. Takacs | Chem. Phys. Lett., 60, 97-101, (1978) | Photoabsorption spectra of gaseous CF3NO, CCl3NO, and CCl3NO2 | |
| J. A. Dyet, M. R. S. McCoustra, J. Pfab | Chem. Phys. Lett., 135, 534-538, (1987) | The visible spectrum of jet-cooled CF3NO | |
| CCl3NO; trichloronitrosomethane; CAS-No.: 3711-49-7 | |||
| A. R. Briden, D. Price, H. Sutcliffe | J. Chem. Soc. B, 387 - 389, (1968) | Trichloronitrosomethane. Part I. Physicochemical studies | |
| T.D. Allston, M.L. Fedyk, G.A. Takacs | Chem. Phys. Lett., 60, 97-101, (1978) | Photoabsorption spectra of gaseous CF3NO, CCl3NO, and CCl3NO2 | |