Electron affinities of silicon hydrides:: SiHn (n=0-4) and Si2Hn (n=0-6)

被引:87
作者
Pak, C [1 ]
Rienstra-Kiracofe, JC [1 ]
Schaefer, HF [1 ]
机构
[1] Univ Georgia, Ctr Computat Quantum Chem, Athens, GA 30602 USA
关键词
D O I
10.1021/jp003029y
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The molecular structures and electron affinities of the SiHn/SiHn- (n = 1-4) and Si2H(n)/Si2Hn- (n = 0-6) molecules, as well as the silicon atom, have been investigated using density functional theory (DFT) and hybrid Hartree-Fock/density functional theory. Specifically, four different types of electron affinities are reported in this work: the adiabatic electron affinity (EA(ad)), zero-point corrected EA(ad) (EA(zero)), the vertical electron affinity (EA(vert)), and vertical detachment energy (VDE). The basis set used in this work is of double-zeta plus polarization quality with additional s- and p-type diffuse functions, and is denoted as DZP(++). Of the six different density functionals used in this work, the BHLYP functional predicted the best molecular structures, and the B3LYP functional predicted the best electron affinities. When compared to the available six experimental electron affinities, the B3LYP functional has an average absolute error of just 0.06 eV. We predict the unknown electron affinities for Si2H2 (dibridged), Si2H3, Si2H4 (disilene), and Si2H5 (disilyl radical) to be 0.45, 2.21, 1.34, and 1.85 eV, respectively. These predictions assume that the (unknown) molecular structure of each anion is analogous to the known structure of the corresponding neutral molecule. The most interesting aspect of the present research is that for Si2H2- and Si2H4-, the lowest energy structures are qualitatively different from those of the neutrals. For Si2H2- the disilavinylidene structure H2SiSi-, is predicted to lie 24 kcal/mol below the dibridged or "butterfly" anion. For Si2H4- the silylsilylene anion H3SiSiH-, is predicted to lie 3 kcal/mol below the disilene anion structure H2SiSiH2-. The zero-point corrected adiabatic electron affinities of disilavinylidene, silylsilylidyne, and silylsilylene are 1.87, 1.01, and 1.71 eV, respectively. The saturated closed shell systems SiH4 and Si2H6 do not have conventional electron affinities.
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页码:11232 / 11242
页数:11
相关论文
共 91 条
[61]   DENSITY-FUNCTIONAL APPROXIMATION FOR THE CORRELATION-ENERGY OF THE INHOMOGENEOUS ELECTRON-GAS [J].
PERDEW, JP .
PHYSICAL REVIEW B, 1986, 33 (12) :8822-8824
[62]  
PERDEW JP, 1986, PHYS REV B, V34, P7046
[63]   ELECTRONIC-STRUCTURES OF THE NEGATIVE-IONS SI-2--SI-10- - ELECTRON-AFFINITIES OF SMALL SILICON CLUSTERS [J].
RAGHAVACHARI, K ;
ROHLFING, CM .
JOURNAL OF CHEMICAL PHYSICS, 1991, 94 (05) :3670-3678
[64]   Medium ring compounds and their anions: a systematic density functional theory study [J].
Rienstra-Kiracofe, JC ;
Graham, DE ;
Schaefer, HF .
MOLECULAR PHYSICS, 1998, 94 (05) :767-787
[65]   AN OPEN-SHELL SPIN-RESTRICTED COUPLED CLUSTER METHOD - APPLICATION TO IONIZATION-POTENTIALS IN N-2 [J].
RITTBY, M ;
BARTLETT, RJ .
JOURNAL OF PHYSICAL CHEMISTRY, 1988, 92 (11) :3033-3036
[66]   PNO-CL AND CEPA STUDIES OF ELECTRON CORRELATION EFFECTS .6. ELECTRON-AFFINITIES OF 1ST-ROW AND 2ND-ROW DIATOMIC HYDRIDES AND SPECTROSCOPIC CONSTANTS OF THEIR NEGATIVE-IONS [J].
ROSMUS, P ;
MEYER, W .
JOURNAL OF CHEMICAL PHYSICS, 1978, 69 (06) :2745-2751
[67]   ABINITIO SCF STUDY OF THE NATURE OF BONDING IN SI2H2 AND SI2H4 [J].
SANNIGRAHI, AB ;
NANDI, PK .
CHEMICAL PHYSICS LETTERS, 1992, 188 (5-6) :575-583
[68]  
SAX AF, 1990, J MOL STRUCT THEOCHE, V208, P123
[69]   Systematic study of the stable states of C-, Si-, Ge-, and Sn- via infrared laser spectroscopy [J].
Scheer, M ;
Bilodeau, RC ;
Brodie, CA ;
Haugen, HK .
PHYSICAL REVIEW A, 1998, 58 (04) :2844-2856
[70]   THE FUNDAMENTAL VIBRATIONAL FREQUENCIES OF THE SILYL ANION (SIH3-) [J].
SHEN, M ;
SCHAEFER, HF .
MOLECULAR PHYSICS, 1992, 76 (02) :467-474