首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Effect of Molecular Guest Binding on the d-d Transitions of Ni2+ of CPO-27-Ni: A Combined UV-Vis, Resonant-Valence-to-Core X-ray Emission Spectroscopy, and Theoretical Study
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Effect of Molecular Guest Binding on the d-d Transitions of Ni2+ of CPO-27-Ni: A Combined UV-Vis, Resonant-Valence-to-Core X-ray Emission Spectroscopy, and Theoretical Study

机译:CPO-27-Ni的Ni2 + D-D转变对CPO-27-Ni的D-D转变的影响:一种组合的UV-Vis,谐振算命与核心X射线发射光谱和理论研究

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We used Ni K-edge resonant-valence-to-core X-ray emission spectroscopy (RVtC-XES, also referred to as direct RIXS), an element-selective bulk-sensitive synchrotron-based technique, to investigate the electronic structure of the CPO-27-Ni metal-organic framework (MOF) upon molecular adsorption of significant molecular probes: H2O, CO, H2S, and NO. We compare RVtC-XES with UV-vis spectroscopy, and we show that the element selectivity of RVtC-XES is of strategic significance to observe the full set of d-d excitations in Ni2+, which are partially overshadowed by the low-energy pi-pi* transitions of the Ni ligands in standard diffuse reflectance UV-vis experiments. Our combined RVtC-XES/UV vis approach provides access to the whole set of d-d excitations, allowing us a complete discussion of the changes undergone by the electronic configuration of the Ni2+ sites hosted within the MOF upon molecular adsorption. The experimental data have been interpreted by multiplet ligand-field theory calculations based on Wannier orbitals. This study represents a step further in understanding the ability of the CPO-27-Ni MOFs in molecular sorption and separation applications.
机译:我们使用Ni K-Edge谐振 - 核心X射线发射光谱(RVTC-XE,也称为直接rixs),一种基于元素选择性批量敏感的同步技术,研究了电子结构CPO-27-NI金属 - 有机框架(MOF)在分子吸附后显着的分子探针:H2O,CO,H2S和NO。我们将RVTC-X与UV-VIS光谱进行比较,我们表明RVTC-XE的元素选择性是在NI2 +中观察到NI2 +中的全套DD激发的战略意义,这些+由低能量PI-PI *部分地掩盖标准弥射紫外线VIS实验中Ni配体的转变。我们的RVTC-XES / UV VIS方法提供了对整个D-D激励的访问,允许我们通过MOF内托管的Ni2 +位点的电子配置完全讨论变化,在分子吸附后。基于Wannier轨道的多重配体 - 场论计算已经解释了实验数据。该研究在理解CPO-27-NI MOF在分子吸附和分离应用中的能力方面进一步逐步。

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