• Acta Photonica Sinica
  • Vol. 47, Issue 6, 630002 (2018)
LIU Xian-yun1、2、*, XIA Li1, WANG Zhen-ya2, and ZHANG Wei-jun2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/gzxb20184706.0630002 Cite this Article
    LIU Xian-yun, XIA Li, WANG Zhen-ya, ZHANG Wei-jun. Photoionization and Photodissociation Study of α-pinene Using Synchrotron Radiation[J]. Acta Photonica Sinica, 2018, 47(6): 630002 Copy Citation Text show less
    References

    [1] FEHSENFELD F, CALVERT J, FALL R, et al. Emissions of volatile organic compounds from vegetation and the implications for atmospheric chemistry[J]. Global Biogeochemical Cycles, 1992, 6(4): 389-430.

    [2] GELENCSE′R A. Carboneceous aerosol[M]. Springer: Dordrecht, the Netherlands, 2004: 289.

    [3] KANAKIDOU M, SEINFELD J H, PANDIS S N, et al. Organic aerosol and global climate modelling: A review [J]. Atmospheric Chemistry and Physics, 2005, 5(4): 1053-1123.

    [4] FRATTINI L, ISAACS M A, PARLETT C M A, et al. Support enhanced alpha-pinene isomerization over HPW/SBA-15[J]. Applied Catalysis B-Environmental, 2017, 100(1): 10-18.

    [5] SHILLING J E, CHEN Q, KING S M, et al. Particle mass yield in secondary organic aerosol formed by the dark ozonolysis of α-pinene[J]. Atmospheric Chemistry and Physics, 2008, 8(7): 2073-2088.

    [6] ZHAO J, ORTEGA J, CHEN M, MCMURRY P H. Dependence of particle nucleation and growth on high molecular weight gas phase products during ozonolysis of α-pinene[J]. Atmospheric Chemistry and Physics, 2013, 13 (15): 7631-7644.

    [7] FLORES-HOLGUN N, AGUILAR-ELGUéZABAL A, RODRíGUEZ-VALDEZ L M, et al. Theoretical study of chemical reactivity of the main species in the α-pinene isomerization reaction[J]. Journal of Molecular Structure: Theochem, 2008, 854(1–3): 81-88

    [8] MEJEAN M, GIULIANI A, BRUNELLE A. Determination of ionization energies of a monoterpene series by atmospheric pressure photoionization using tunable vacuum ultraviolet synchrotron radiation[J]. European Journal of Mass Spectrometry, 2014, 20(5): 403-407.

    [9] KONG R H, SHAN X B, WANG S S, et al. Experimental and theoretical study of Ne·CO cluster[J]. Journal of Electron Spectroscopy and Related Phenomena, 2007, 160: 49-53.

    [10] WANG S S, KONG R H, SHAN X B, et al. Performance of the atomic and molecular physics beamline at the national synchrotron radiation laboratory[J]. Journal of Synchrotron Radiation, 2006, 13(6): 415-420.

    [11] STEPHENSP J, DEVLIN F J, CHABALOWSKI C F, et al. Ab initio calculation of vibrational absorption and circular dichroism spectra using density functional force fields[J]. Journal of Physical Chemistry, 1994, 98 (45): 11623-11627.

    [12] BECKE A D. Density-functional thermochemistry. III. The role of exact exchange[J]. Journal of Chemical Physics, 1993, 98 (7): 5648-5652.

    [13] CHIANG S Y, BAHOU M, SANKARAN K, et al. Dissociative photoionization of CH2Cl2 and enthalpy of formation of CHCl+: Experiments and calculations[J]. Journal of Chemical Physics, 2003, 118(1), 62-69.

    [14] WANG Z Y, HAO L Q, ZHOU S K, et al. VUV dissociative photoionization of CHF2Cl[J]. Journal of Molecular Structure, 2007, 826(2-3): 192-197.

    [15] ALJOBOURY M I, TURNER D W. Molecular photoelectron spectroscopy. Part II. A summary of ionization potentials[J]. Journal of the Chemical Society, 1964, 4434-4441.

    [16] LIU X Y, ZHANG W J, WANG Z Y, et al. Dissociative photoionization of isoprene: experiments and calculations[J]. Journal of Mass Spectrometry, 2009, 44(3): 404-409.

    LIU Xian-yun, XIA Li, WANG Zhen-ya, ZHANG Wei-jun. Photoionization and Photodissociation Study of α-pinene Using Synchrotron Radiation[J]. Acta Photonica Sinica, 2018, 47(6): 630002
    Download Citation