Institute for Methods and Instrumentation for Synchrotron Radiation Research, Helmholtz-Zentrum Berlin GmbH , Albert-Einstein-Str. 15, 12489 Berlin, Germany.
J Phys Chem B. 2013 Dec 27;117(51):16512-21. doi: 10.1021/jp4100813. Epub 2013 Dec 12.
Bonding of the Ni(2+)(aq) complex is investigated with an unprecedented combination of resonant inelastic X-ray scattering (RIXS) measurements and ab initio calculations at the Ni L absorption edge. The spectra directly reflect the relative energies of the ligand-field and charge-transfer valence-excited states. They give element-specific access with atomic resolution to the ground-state electronic structure of the complex and allow quantification of ligand-field strength and 3d-3d electron correlation interactions in the Ni(2+)(aq) complex. The experimentally determined ligand-field strength is 10Dq = 1.1 eV. This and the Racah parameters characterizing 3d-3d Coulomb interactions B = 0.13 eV and C = 0.42 eV as readily derived from the measured energies match very well with the results from UV-vis spectroscopy. Our results demonstrate how L-edge RIXS can be used to complement existing spectroscopic tools for the investigation of bonding in 3d transition-metal coordination compounds in solution. The ab initio RASPT2 calculation is successfully used to simulate the L-edge RIXS spectra.
采用前所未有的共振非弹性 X 射线散射(RIXS)测量和 Ni L 吸收边的从头算计算相结合的方法研究了 Ni(2+)(aq)配合物的键合。光谱直接反映了配体场和电荷转移价激发态的相对能量。它们以原子分辨率提供了对配合物基态电子结构的元素特异性访问,并允许量化 Ni(2+)(aq)配合物中的配体场强度和 3d-3d 电子相关相互作用。实验确定的配体场强度为 1.1 eV。这些以及表征 3d-3d 库仑相互作用的 Racah 参数 B = 0.13 eV 和 C = 0.42 eV 很容易从测量的能量中得出,与紫外可见光谱的结果非常吻合。我们的结果表明,L 边 RIXS 如何可用于补充现有光谱工具,以研究溶液中 3d 过渡金属配位化合物的键合。从头算 RASPT2 计算成功用于模拟 L 边 RIXS 光谱。