Department of Chemistry , University of Guelph , Guelph , ON , Canada N1G 2W1.
J Phys Chem B. 2019 Aug 29;123(34):7385-7409. doi: 10.1021/acs.jpcb.9b01544. Epub 2019 Aug 19.
Quantitative first and second formation constants of aqueous uranyl sulfate complexes were obtained from Raman spectra of solutions in fused silica capillary cells at 25 MPa, at temperatures ranging from 25 to 375 °C. Temperature-dependent values of the symmetric O-U-O vibrational frequencies of UO(aq), UOSO(aq), and UO(SO)(aq) were determined from the high-temperature spectra. Temperature-independent Raman scattering coefficients of UO(aq) were calculated directly from uranyl triflate spectra from 25 to 300 °C, while those of UOSO(aq) and UO(SO)(aq) were derived from spectroscopic data at 25 °C and concentrations calculated using the formation constants of Tian and Rao ( 2009 , 41 , 569 - 574 ), together with the Specific Ion Interaction Theory (SIT) activity coefficient model. Chemical structures and vibrational frequencies predicted from Density Functional Theory (Gaussian 09) were employed to interpret the Raman spectra. Values of the cumulative formation constants ranged from log β = 3.23 ± 0.08 and log β = 4.22 ± 0.15 at 25 °C, to log β = 12.35 ± 0.22 and log β = 14.97 ± 0.02 at 350 °C. This is the first reported use of high-pressure fused silica capillary cells to determine formation constants of metal ligand complexes from their reduced isotropic Raman spectra under hydrothermal conditions.
在 25 MPa 下,通过熔融石英毛细管细胞中溶液的拉曼光谱,获得了水合硫酸铀酰络合物的定量第一和第二形成常数,温度范围为 25 至 375°C。从高温光谱中确定了 UO(aq)、UOSO(aq)和 UO(SO)(aq)的对称 O-U-O 振动频率的温度依赖性值。UO(aq)的温度无关拉曼散射系数直接从 25 至 300°C 的铀酰三氟酸盐光谱中计算得出,而 UOSO(aq)和 UO(SO)(aq)的散射系数则源自 25°C 的光谱数据和使用 Tian 和 Rao 的形成常数(2009 年,41 卷,569-574 页)计算得出的浓度,以及 Specific Ion Interaction Theory(SIT)活度系数模型。通过密度泛函理论(Gaussian 09)预测的化学结构和振动频率用于解释拉曼光谱。累积形成常数的值范围从 25°C 时的 log β = 3.23 ± 0.08 和 log β = 4.22 ± 0.15,到 350°C 时的 log β = 12.35 ± 0.22 和 log β = 14.97 ± 0.02。这是首次在热液条件下,使用高压熔融石英毛细管细胞从其简化各向同性拉曼光谱中确定金属配体络合物的形成常数。