Mid-IR spectroscopy of protonated leucine methyl ester performed with an FTICR or a Paul type ion-trap

被引:167
作者
Mac Aleese, L
Simon, A
McMahon, TB
Ortega, JM
Scuderi, D
Lemaire, J
Maître, P
机构
[1] CNRS, Lab Chim Phys, UMR 8000, F-91405 Orsay, France
[2] Univ Paris 11, Fac Sci, F-91405 Orsay, France
[3] Univ Waterloo, Dept Chem, Waterloo, ON N2L 3G1, Canada
[4] Univ Paris 11, CLIO, LCP, F-91405 Orsay, France
关键词
tandem mass spectrometry; infrared spectroscopy; protonated; amino acid derivatives; leucine;
D O I
10.1016/j.ijms.2006.01.008
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
The protonated leucine methyl ester structure was probed using mid-infrared multiphoton dissociation (IRMPD) spectroscopy performed at CLIO, the Orsay Free Electron Laser facility. A first experimental spectrum was obtained with a Fourier-transform ion-cyclotron-resonance mass spectrometer with ions generated through a MALDI process. A second spectrum was recorded with ions generated using ElectroSpray Ionisation and trapped in a Paul ion-trap. These two experimental spectra are analyzed and compared with infrared absorption spectra derived from hybrid density functional theory calculations. The two IRMPD spectra are in excellent agreement, although the one recorded with the Paul ion-trap presents a better resolution with an fwhm of the IRMPD bands of 20-25 cm(-1). Comparison with the calculated IR absorption spectra clearly shows that only the lowest energy isomer is formed under both experimental conditions. The CO stretch, together with two vibrational modes of the ammonium group were the three infrared signatures identified in the photon energy range explored here. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:14 / 20
页数:7
相关论文
共 46 条
[1]   Gas-phase infrared spectrum of the protonated water dimer [J].
Asmis, KR ;
Pivonka, NL ;
Santambrogio, G ;
Brümmer, M ;
Kaposta, C ;
Neumark, DM ;
Wöste, L .
SCIENCE, 2003, 299 (5611) :1375-1377
[2]   LEUCINE AND ISOLEUCINE IN CHEMICAL-IONIZATION AND PLASMA DESORPTION MASS-SPECTROMETRY - A COMPARATIVE-STUDY [J].
BOUCHOUX, G ;
BOURCIER, S ;
HOPPILLIARD, Y ;
MAURIAC, C .
ORGANIC MASS SPECTROMETRY, 1993, 28 (10) :1064-1072
[3]   Time-resolved potodissociation (TRPD) of the naphthalene and azulene cations in an ion trap/reflectron [J].
Cui, WD ;
Hadas, B ;
Cao, BP ;
Lifshitz, C .
JOURNAL OF PHYSICAL CHEMISTRY A, 2000, 104 (27) :6339-6344
[4]   Frontiers in the spectroscopy of mass-selected molecular ions [J].
Duncan, MA .
INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 2000, 200 (1-3) :545-569
[5]  
FRIDGEN TD, 2006, PHYS CHEM CHEM PHYS, V8, P1
[6]  
Frisch M.J., 1998, GAUSSIAN 98
[7]   Comparison of the performance of local, gradient-corrected, and hybrid density functional models in predicting infrared intensities [J].
Halls, MD ;
Schlegel, HB .
JOURNAL OF CHEMICAL PHYSICS, 1998, 109 (24) :10587-10593
[8]   Harmonic frequency scaling factors for Hartree-Fock, S-VWN, B-LYP, B3-LYP, B3-PW91 and MP2 with the Sadlej pVTZ electric property basis set [J].
Halls, MD ;
Velkovski, J ;
Schlegel, HB .
THEORETICAL CHEMISTRY ACCOUNTS, 2001, 105 (06) :413-421
[9]   How do small water clusters bind an excess electron? [J].
Hammer, NI ;
Shin, JW ;
Headrick, JM ;
Diken, EG ;
Roscioli, JR ;
Weddle, GH ;
Johnson, MA .
SCIENCE, 2004, 306 (5696) :675-679
[10]  
HAMMER NI, 2005, J CHEM PHYS, V122