Ram RS, Liévin J, Bernath PF
Department of Chemistry, University of Arizona, Tucson, Arizona, 85721
J Mol Spectrosc. 1999 Oct;197(2):133-146. doi: 10.1006/jmsp.1999.7911.
The emission spectrum of IrN was recorded in the near infrared using a Fourier transform spectrometer. The IrN molecules were excited in an Ir hollow cathode lamp operated with a mixture of Ne and a trace of N(2). Numerous IrN bands observed in the 7500-9200 cm(-1) region were assigned to a new a(3)Pi-X(1)Sigma(+) electronic transition with the 0-0 bands of the a(3)Pi(0)-X(1)Sigma(+) and a(3)Pi(1)-X(1)Sigma(+) subbands near 9175 and 8841 cm(-1), respectively. A rotational analysis of several bands of the 0-0 and 0-1 sequences was obtained and molecular constants were extracted. The effective Hund's case (a) constants for the new a(3)Pi state are: T(00) = 8840.31747(88) cm(-1), A(0) = -340.53329(93) cm(-1), DeltaG(1/2) = 984.3629(23) cm(-1), B(e) = 0.4699116(27) cm(-1), alpha(e) = 0.0030058(50) cm(-1), and r(e)= 1.6576432(47) Å. The spectroscopic properties of the ground state and several low-lying electronic states of IrN were also predicted by ab initio calculations. These calculations are consistent with our assignment of the a(3)Pi-X(1)Sigma(+) transition and also support our previous assignments of the A' (1)Pi and A(1)Pi electronic states [R. S. Ram and P. F. Bernath, J. Mol. Spectrosc. 193, 363 (1999)]. The excited a(3)Pi state of IrN has an 1varsigma(2)2varsigma(2)1pi(4)3varsigma(1)1delta(4)2pi(1) electron configuration and the configurations of the other low-lying electronic states are also discussed. Copyright 1999 Academic Press.
使用傅里叶变换光谱仪在近红外区域记录了IrN的发射光谱。IrN分子在以Ne和微量N₂的混合物运行的Ir空心阴极灯中被激发。在7500 - 9200 cm⁻¹区域观察到的众多IrN谱带被归属为一个新的a³Π - X¹Σ⁺电子跃迁,其中a³Π₀ - X¹Σ⁺和a³Π₁ - X¹Σ⁺子带的0 - 0带分别接近9175和8841 cm⁻¹。对0 - 0和0 - 1序列的几个谱带进行了转动分析,并提取了分子常数。新的a³Π态的有效洪德情况(a)常数为:T(00) = 8840.31747(88) cm⁻¹,A(0) = -340.53329(93) cm⁻¹,ΔG(1/2) = 984.3629(23) cm⁻¹,B(e) = 0.4699116(27) cm⁻¹,α(e) = 0.0030058(50) cm⁻¹,以及r(e)= 1.6576432(47) Å。还通过从头算计算预测了IrN基态和几个低电子态的光谱性质。这些计算与我们对a³Π - X¹Σ⁺跃迁的归属一致,也支持我们之前对A'(¹Π)和A(¹Π)电子态的归属[R. S. Ram和P. F. Bernath,J. Mol. Spectrosc. 193, 363 (1999)]。IrN的激发a³Π态具有1ς²2ς²1π⁴3ς¹1δ⁴2π¹电子构型,并且还讨论了其他低电子态的构型。版权所有1999年学术出版社。