Department of Biology and Chemistry, City University of Hong Kong, Kowloon, Hong Kong SAR, People's Republic of China.
J Phys Chem A. 2011 Mar 31;115(12):2557-67. doi: 10.1021/jp200484j. Epub 2011 Mar 4.
The electronic absorption spectra of single crystals of Cs(2)NaHoF(6) have been recorded in the spectral region between 4700 and 42000 cm(-1) at temperatures down to 10 K. The structure in the (5)I(8) → (5)I(J) (J = 7-4), (5)F(J) (J = 5-1), (5)S(2), (5)G(J) (J = 4-6), (3)K(J) (J = 7, 8) transitions has been analyzed and assigned. The emission spectra (5)S(2) → (5)I(J) (J = 6-8) and (5)G(4) → (5)I(J) (J = 5-7), (5)F(5) have also been recorded at 10 K for crystals of Cs(2)NaHoF(6) and partly also for samples of Cs(2)NaHoF(6):Yb(3+). The spectra comprise magnetic dipole zero phonon lines and electric dipole allowed one-phonon vibronic sidebands. From the detailed interpretation of the emission and absorption spectra, aided by a clear understanding of the vibrational behavior of the HoF(6)(3-) moiety and by magnetic dipole intensity calculations, a data set of 59 energy levels spanning 17 multiplet terms was derived. Crystal field calculations were then performed using a 4f(10) basis, as well as including the configuration interaction with a p-electron configuration. The latter calculation, which employed 14 parameters, gave better agreement with experiment and the mean deviation was 13.5 cm(-1). A comparison with the energy level fittings for Cs(2)NaHoCl(6) has been included. The crystal field parameters for the fluoro- and chloro-systems followed empirically predicted ratios.
已在 4700 至 42000cm(-1) 的光谱范围内记录了 Cs(2)NaHoF(6)单晶在低至 10K 温度下的电子吸收光谱。已分析并分配了(5)I(8) → (5)I(J) (J = 7-4)、(5)F(J) (J = 5-1)、(5)S(2)、(5)G(J) (J = 4-6)、(3)K(J) (J = 7、8)跃迁的(5)I(8) → (5)I(J) (J = 7-4)、(5)F(J) (J = 5-1)、(5)S(2)、(5)G(J) (J = 4-6)、(3)K(J) (J = 7、8)跃迁的结构。还记录了 Cs(2)NaHoF(6)晶体在 10K 下的发射光谱(5)S(2) → (5)I(J) (J = 6-8)和(5)G(4) → (5)I(J) (J = 5-7)、(5)F(5),并部分记录了 Cs(2)NaHoF(6):Yb(3+)的样品。这些光谱包括磁偶极子零声子线和电偶极子允许的单声子振动态边带。通过对 HoF(6)(3-)部分的振动行为有清晰的了解,并借助于对发射和吸收光谱的详细解释,以及基于磁偶极子强度的计算,得出了跨越 17 个多重态的 59 个能级的数据集。然后使用 4f(10)基进行了晶体场计算,并结合了 p 电子组态的组态相互作用。后者的计算采用了 14 个参数,与实验更吻合,平均偏差为 13.5cm(-1)。还包括了与 Cs(2)NaHoCl(6)的能级拟合的比较。氟和氯体系的晶体场参数遵循经验预测的比值。