Rhenium-oxo-bis(acetylene) anions: structure, properties, and electronic structure. Comparison of Re-O bonding with that in other rhenium-oxo complexes

1994 ◽  
Vol 13 (1) ◽  
pp. 322-331 ◽  
Author(s):  
Thomas R. Cundari ◽  
Rebecca R. Conry ◽  
Esther Spaltenstein ◽  
Susan C. Critchlow ◽  
Keith A. Hall ◽  
...  
Crystals ◽  
2021 ◽  
Vol 11 (6) ◽  
pp. 618
Author(s):  
Layla Shafei ◽  
Puja Adhikari ◽  
Wai-Yim Ching

Clay mineral materials have attracted attention due to their many properties and applications. The applications of clay minerals are closely linked to their structure and composition. In this paper, we studied the electronic structure properties of kaolinite, muscovite, and montmorillonite crystals, which are classified as clay minerals, by using DFT-based ab initio packages VASP and the OLCAO. The aim of this work is to have a deep understanding of clay mineral materials, including electronic structure, bond strength, mechanical properties, and optical properties. It is worth mentioning that understanding these properties may help continually result in new and innovative clay products in several applications, such as in pharmaceutical applications using kaolinite for their potential in cancer treatment, muscovite used as insulators in electrical appliances, and engineering applications that use montmorillonite as a sealant. In addition, our results show that the role played by hydrogen bonds in O-H bonds has an impact on the hydration in these crystals. Based on calculated total bond order density, it is concluded that kaolinite is slightly more cohesive than montmorillonite, which is consistent with the calculated mechanical properties.


2014 ◽  
Vol 136 (34) ◽  
pp. 11980-11993 ◽  
Author(s):  
Anna-Corina Schmidt ◽  
Frank W. Heinemann ◽  
Wayne W. Lukens ◽  
Karsten Meyer

2010 ◽  
Vol 254 (21-22) ◽  
pp. 2663-2676 ◽  
Author(s):  
Kevin R. Kittilstved ◽  
Andreas Hauser

2017 ◽  
Vol 136 (2) ◽  
Author(s):  
Jesús Muñiz ◽  
Christian Celaya ◽  
Ana Mejía-Ozuna ◽  
Ana Karina Cuentas-Gallegos ◽  
L. M. Mejía-Mendoza ◽  
...  

2021 ◽  
Vol 2021 ◽  
pp. 1-11
Author(s):  
Emmanuel Adu Fosu ◽  
Collins Obuah ◽  
Louis Hamenu ◽  
Albert Aniagyei ◽  
Michael Kojo Ainooson ◽  
...  

Transition-metal-mediated oxygen transfer reactions are of importance in both industry and academia; thus, a series of rhenium oxo complexes of the type ReO3L (L = O−, Cl−, F−, OH−, Br−, I−) and their effects as oxidation catalysts on ethylene have been studied. The activation and reaction energies for the addition pathways involving multiple spin states (singlet and triplet) have been computed. In all cases, structures on the singlet potential energy surfaces showed higher stability compared to their counterparts on the triplet potential energy surfaces (PESs). Frontier Molecular Orbital calculations show electrons flow from the HOMO of ethylene to the LUMO of rhenium for all complexes studied except ReO4− where the reverse case occurs. In the reaction between ReO3L (L = O−, Cl−, F−, OH−, Br−, and I−) and ethylene, the concerted [3 + 2] addition pathway on the singlet PES leading to the formation of dioxylate intermediate is favored over the [2 + 2] addition pathway leading to the formation of a metallaoxetane intermediate and subsequent rearrangement to the dioxylate. The activation and the reaction energies for the formation of the dioxylate on the singlet PES for the ligands studied followed the order O− > OH− > I− > F− > Br− > Cl− and O− > OH− > F− > I− > Br− > Cl−, respectively. Furthermore, the activation and the reaction energies for the formation of the metallaoxetane intermediate increase in the order O− > OH− > I− > Br− > Cl− > F− and O− > Br− > I− > Cl− > OH− > F−, respectively. The subsequent rearrangement of the metallaoxetane intermediate to the dioxylate is only feasible in the case of ReO4−. Of all the complexes studied, the best dioxylating catalyst is ReO3Cl (singlet surface) and the best epoxidation catalyst is ReO3F (singlet surface).


2008 ◽  
Vol 8 (4) ◽  
pp. 1994-1998 ◽  
Author(s):  
Joshua Schrier ◽  
Byounghak Lee ◽  
Lin-Wang Wang

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