Chen Wei-Kan, Lu I-Chung, Chaudhuri Chanchal, Huang Wen-Jian, Lee Shih-Huang
National Synchrotron Radiation Research Center (NSRRC), 101 Hsin-Ann Road, Hsinchu Science Park, Hsinchu 30076, Taiwan.
J Phys Chem A. 2008 Sep 18;112(37):8479-86. doi: 10.1021/jp804435y. Epub 2008 Aug 21.
Using a quadrupole mass filter and vacuum-ultraviolet ionization, we measured the time-of-flight spectra of species at mass-to-charge ratios of m/ z = 45-42 from the reaction of N + SiH 4 in crossed molecular beams. Species with m/ z = 44 and 43 correspond to reaction products HSiNH/SiNH 2 and HSiN/HNSi, respectively; species with m/ z = 45 and 42 are assigned to isotopic variants and daughter ions, respectively, of those two reaction products. We measured the photoionization yields and branching ratios for dissociative ionization of reaction products as a function of photoionization energy. The ionization thresholds of products HSiNH/SiNH 2 and HSiN/HNSi were determined to be 6.7 and 9.2 eV, respectively. Furthermore, we calculated the equilibrium structures, electronic energies, and vibrational wavenumbers of various silicon-nitrogen hydrides H x SiNH y ( x + y = 0-3) using quantum-chemical methods. SiNH 2 (X (2)B 2) and HNSi (X (1)Sigma (+)) are more stable than HSiNH (X (2)A') and HSiN (X (1)Sigma (+)) by 0.82 and 2.81 eV, respectively. SiNH 2 (X (2)B 2), HSiNH (X (2)A'), HNSi (X (1)Sigma (+)), and HSiN (X (1)Sigma (+)) have adiabatic ionization energies of 6.81, 8.19, 10.21, and 10.23 eV, respectively. These experimental and calculated results indicate that SiNH 2 (X (2)B 2) and HNSi (X (1)Sigma (+)) are dominant among isomeric products in the reaction of N + SiH 4. This work presents the first observation of products from the reaction of N + SiH 4 in crossed beams and extensive calculations on pertinent silicon-nitrogen hydrides.
我们使用四极质量过滤器和真空紫外电离技术,在交叉分子束中测量了N与SiH₄反应生成的质荷比m/z = 45 - 42的物种的飞行时间光谱。质荷比为44和43的物种分别对应反应产物HSiNH/SiNH₂和HSiN/HNSi;质荷比为45和42的物种分别被指定为这两种反应产物的同位素变体和子离子。我们测量了反应产物的光电离产率和解离电离分支比随光电离能量的变化。产物HSiNH/SiNH₂和HSiN/HNSi的电离阈值分别确定为6.7和9.2 eV。此外,我们使用量子化学方法计算了各种硅氮氢化物HₓSiNH_y(x + y = 0 - 3)的平衡结构、电子能量和振动波数。SiNH₂(X²B₂)和HNSi(X¹Σ⁺)分别比HSiNH(X²A')和HSiN(X¹Σ⁺)稳定0.82和2.81 eV。SiNH₂(X²B₂)、HSiNH(X²A')、HNSi(X¹Σ⁺)和HSiN(X¹Σ⁺)的绝热电离能分别为6.81、8.19、10.21和10.23 eV。这些实验和计算结果表明,在N + SiH₄反应的异构产物中,SiNH₂(X²B₂)和HNSi(X¹Σ⁺)占主导地位。这项工作首次报道了交叉束中N + SiH₄反应产物的观测结果以及对相关硅氮氢化物的广泛计算。