ChemInform Abstract: Molybdenum Open-Shell Organometallics. Spin State Changes and Pairing Energy Effects

ChemInform ◽  
2010 ◽  
Vol 29 (13) ◽  
pp. no-no
Author(s):  
R. POLI
2014 ◽  
Vol 26 (18) ◽  
pp. 2889-2893 ◽  
Author(s):  
Edna M. Hernández ◽  
Carlos M. Quintero ◽  
Olena Kraieva ◽  
Christophe Thibault ◽  
Christian Bergaud ◽  
...  

2009 ◽  
Author(s):  
Masayoshi Nakano ◽  
Hitoshi Fukui ◽  
Hiroshi Nagai ◽  
Takuya Minami ◽  
Ryohei Kishi ◽  
...  

2020 ◽  
Vol 59 (17) ◽  
pp. 12903-12912
Author(s):  
Nicolaas P. van Leest ◽  
Wowa Stroek ◽  
Maxime A. Siegler ◽  
Jarl Ivar van der Vlugt ◽  
Bas de Bruin
Keyword(s):  

1983 ◽  
Vol 79 ◽  
pp. 186-187 ◽  
Author(s):  
Susan Berners-Price ◽  
Martin C. Grootveld ◽  
Gabriel Okito ◽  
Heather R. Robbins ◽  
Peter J. Sadler

2021 ◽  
Author(s):  
Vyshnavi Vennelakanti ◽  
Aditya Nandy ◽  
Heather Kulik

<p>High-throughput computational catalyst studies are typically carried out using density functional theory (DFT) with a single, approximate exchange-correlation functional. In open shell transition metal complexes (TMCs) that are promising for challenging reactions (e.g., C–H activation), the predictive power of DFT has been challenged, and properties are known to be strongly dependent on the admixture of Hartree-Fock (HF) exchange. We carry out a large-scale study of the effect of HF exchange on the predicted catalytic properties of over 1,200 mid-row (i.e., Cr, Mn, Fe, Co) 3<i>d </i>TMCs for direct methane-to-methanol conversion. Reaction energetic sensitivities across this set depend both on the catalytic rearrangement and ligand chemistry of the catalyst. These differences in sensitivities change both the absolute energetics predicted for a catalyst and its relative performance. Previous observations of the poor performance of global linear free energy relationships (LFERs) hold with both semi-local DFT widely employed in heterogeneous catalysis and hybrid DFT. Narrower metal/oxidation/spin-state specific LFERs perform better and are less sensitive to HF exchange than absolute reaction energetics, except in the case of some intermediate/high-spin states. Importantly, the interplay between spin-state dependent reaction energetics and exchange effects on spin-state ordering means that the choice of DFT functional strongly influences whether the minimum energy pathway is spin-conserved. Despite these caveats, LFERs involving catalysts that can be expected to have closed shell intermediates and low-spin ground states retain significant predictive power.</p>


2020 ◽  
Author(s):  
Julia Brüggemann ◽  
Christoph R. Jacob

<div>Applications of density functionaltheory (DFT) in computational chemistry rely on an approximate exchange-correlation (xc) functional. However, existing approximations can fail dramatically for open-shell molecules, in particular for transition-metal complexes or radicals. Most importantly, predicting energy-differences between different spin-states with approximate exchange-correlation functionals remains extremely challenging. Formally, it is known that the exact xc functional should be spin-state dependent, but none of the available approximations features such an explicit spin-state dependence [Ch.~R.~Jacob, M.~Reiher, \textit{Int. J. Quantum Chem.}, 2012, \textbf{112}, 3661–3684]. Thus, to find novel approximations for the xc functional for open-shell systems, the development of spin-state dependent xc functionals appears to be a promising avenue. Here, we set out to shed light on the spin-state dependence of the xc functional by investigating the underlying xc holes, which we extract from configuration interaction calculations for model systems. We analyze the similarities and differences between the xc holes of the lowest-energy singlet and triplet states of the dihydrogen molecule, the helium atom, and the lithium dimer. To shed further light on the spin-state dependence of these xc holes we also discuss exact conditions that can be derived from the spin structure of the reduced two-electron density matrix. Altogether, our results suggest several possible routes towards the construction of explicitly spin-state dependent approximations for the xc functional.<br></div><br>


2019 ◽  
Vol 127 (11) ◽  
pp. 752
Author(s):  
А.В. Крисилов ◽  
И.В. Нечаев ◽  
В.Е. Чернов ◽  
Б.А. Зон

We perform quantum chemical calculations of structures and IR spectra for endofullerene Gd@C60 in different spin states. It was found that the IR spectrum of endofullerenes Gd@C60 contains many lines in the range of 10-1540 cm−1. The frequencies and intensities of the IR lines of Gd@C60 depend on the spin state and molecular symmetry of the endofullerene. The frequencies of the coupled “metal-cage’’ vibrations lie in the range of 10¬–160 cm−1 and change significantly when the spin state changes. The spin dependence of the vibrational spectra opens up opportunities for monitoring the spin state of endofullerene by measuring the IR line frequencies, which is important for nanoelectronics and quantum Informatics


2001 ◽  
Vol 114-116 ◽  
pp. 581-584 ◽  
Author(s):  
I.N. Shabanova ◽  
N.V. Keller ◽  
V.A. Sosnov ◽  
A.Z. Menshikov
Keyword(s):  
X Ray ◽  

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