[1] Grlnbeck H, Hellman A, Gavrin A. Structural, energetic, and vibrational properties of NO<em>x adsorption on Ag<em>n(n=1~8). J Phys Chem A, 2007, 111: 6062~6067
[2] Swart I, de Groot FMF, Weckhuysen BM, et al. H2 adsorption on 3d transition metal clusters: A combined infrared spectroscopy and density functional study. J Phys Chem A, 2008, 112: 1139~1149
[3] Balaj OP, Balteanu I, Roteuscher TTJ, et al. Catalytic oxidation of CO with N2O on gas-phase platinum clusters. Angew Chem Int Ed, 2004, 43: 6519~6522
[4] Shi Y, Ervin KM. Catalytic oxidation of carbon monoxide by platinum cluster anions. J Chem Phys, 1998, 108: 1757~1760
[5] Burkholder TR, Andrews L. Reactions of boron atoms with molecular oxygen. Infrared spectra of BO, BO2, B2O2, B2O3 and BO-2 in solid argon. J Chem Phys, 1991, 95: 8697~8709
[6] Johns JWC. The absorption spectrum of BO2. Can J Phys, 1961, 39: 1738~1768
[7] Mélen F, Dubois I, Bredohl H. The A-X and B-X transitions of BO. J Phys B: At Mol Phys, 1985, 18: 2423~2432
[8] Mélen F, Dubois I, Bredohl H. The C2Π<em>r-X2Σ+ transition of BO. J Mol Spectrosc,2001,208: 14~17
[9] Clyne MAA, Heaven MC. Laser-induced fluorescence of the BO and BO2 free radicals. Chem Phys, 1980, 51: 299~309
[10] Wenthold PG, Kim JB, Jonas KL, et al. An experimental and computational: study of the electron affinity of boron oxide. J Phys Chem A, 1997, 101: 4472~4474
[11] Griffing KM, Simons J. Theoretical studies of molecular ions. Ionization potentials of CN- and BO-. J Chem Phys, 1976, 64: 3610~3614
[12] Peterson KA, Woods RC. Ground state spectroscopic and thermodynamic properties of AlO-, SiN-, CP-, BS-, BO-, and CN- from Mller-Plesset perturbation theory. J Chem Phys, 1989, 90: 7239~7250
[13] Srivastava RD, Uy OM, Farber M. Effusion-mass spectrometric study of the thermodynamic properties of BO- and BO-2. Trans Faraday Soc, 1971, 67: 2941~2944
[14] Jensen DE. Electron attachment and compound formation in flames. II. Mass spectrometry of boron-containing flames. J Chem Phys, 1970, 52: 3305~3306
[15] Rienstra JC, Schaefer HF. Revision of the experimental electron affinity of BO. J Chem Phys, 1997, 106: 8278~8279
[16] Koszinowski K, Schrder D, Schwarz H. Reactivity of small cationic platinum clusters. J Phys Chem A, 2003, 107: 4999~5006
[17] On ák M, Cao YL, Beyer MK, et al. Gas-phase reactivities of charged platinum dimers with ammonia: A combined experimental/theoretical study. Chem Phys Lett, 2008, 450: 268~273
[18] Dean JA. Langes handbook of chemistry, 15th ed. New York: McGraw-Hill, 1999. 330~331
[19] Zhai HJ, Wang LM, Li SD, et al. Vibrationally resolved photoelectron spectroscopy of BO- and BO-2: A joint experimental and theoretical study. J Phys Chem A, 2007, 111: 1030~1035
[20] Zubarev DY, Boldyrev AI, Li J, et al. On the chemical bonding of gold in auro-boron oxide clusters Au<em>nBO- (n=1~3). J Phys Chem A, 2007, 111: 1648~1658
[21] Lee C, Yang W, Parr RG. Development of the colle-salvetti correlation-energy formula into a functional of the electron density. Phys Rev B, 1988, 37: 785~789
[22] Wadt WR, Hay PJ. Ab initio effective core potentials for molecular calculations. Potentials for main group elements Na to Bi. J Chem Phys, 1985, 82: 284~298
[23] Becke AD. Density-functional exchange-energy approximation with correct asymptotic behavior. Phys ReV A, 1988, 38: 3098~3100
[24] Frisch MJ, Pople JA, Binkley JS. Self-consistent molecular orbital methods 25. Supplementary functions for Gaussian basis sets. J Chem Phys, 1984, 80: 3265~3269
[25] Han JG, Ren ZY, Lu BZ. Geometries and stabilities of re-doped Sin (n=1~12) clusters: A density functional investigation. J Phys Chem A, 2004, 108: 5100~5110
[26] Gupta SK, Nappi BM, Gingerich KA. Mass spectrometric study of the stabilities of the gaseous molecules diatomic platinum and platinum-yttrium. Inorg Chem, 1981, 20: 966~969
[27] Müller U, Sattler K, Xhie J, et al. Scanning tunneling microscopy of single platinum atoms and small platinum clusters on highly oriented pyrolytic graphite. J Vac Sci Technol, 1991, B9(2): 829~832
[28] Wang XF, Andrews L. Precious metal-molecular oxygen complexes: neon matrix infrared spectra and density functional calculations for M(O2), M(O2)2 (M=Pd, Pt, Ag, Au). J Phys Chem A, 2001, 105: 5812~5822
[29] Taylor S, Lemire GW, Hamrick YM, et al. Resonant two-photon ionization spectroscopy of jet-cooled Pt2. J Chem Phys, 1988, 89: 5517~5523
[30] Frish MJ, Trucks GW, Schlegel HB. et al. Exploring chemistry with electronic structure methods. GAUSSIAN 03, Pittsburgh, PA: Gaussian Inc, 2003
[31] Ren XL, Hintz PA, Ervin KM. Chemisorption of carbon monoxide on platinum cluster anions. J Chem Phys, 1993, 99: 3575~3587
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