Navigation auf zora.uzh.ch

Search ZORA

ZORA (Zurich Open Repository and Archive)

Computational Studies of the Solid-State Molecular Organometallic (SMOM) Chemistry of Rh σ-Alkane Complexes

Algarra, Andrés G; Burnage, Arron L; Iannuzzi, Marcella; Krämer, Tobias; Macgregor, Stuart A; Pirie, Rachael E M; Tegner, Bengt; Weller, Andrew S (2020). Computational Studies of the Solid-State Molecular Organometallic (SMOM) Chemistry of Rh σ-Alkane Complexes. In: Mingos, D Michael P; Raithby, Paul R. 21st Century Challenges in Chemical Crystallography II : Structural Correlations and Data Interpretation. Cham: Springer, 183-228.

Abstract

A review of computational studies on the structures, bonding and reactivity of rhodium σ-alkane complexes in the solid state is presented. These complexes of the general form [(R2P(CH2)nPR2)Rh(alkane)][BArF4] (where ArF = 3,5-(CF3)2C6H3) are formed via solid/gas hydrogenation of alkene precursors, often in single-crystal-to-single-crystal (SC-SC) transformations. Molecular and periodic density functional theory (DFT) calculations complement experimental characterisation techniques (X-ray, solid-state NMR) to provide a detailed picture of the structure and bonding in these species. These σ-alkane complexes exhibit reactivity in the solid state, undergoing fluxional processes, and access different alkane binding modes that link to C-H activation and H/D exchange. The mechanisms of several of these processes have been defined using periodic DFT calculations which provide excellent quantitative agreement with the available experimental activation barriers. A comparison of computed results derived from periodic DFT calculations, where the full solid-state environment is taken into account, with simple model calculations using the isolated molecular cations highlights the importance of modelling the solid state to reproduce the structures of these alkane complexes. The solid-state environment can also have a significant impact on the computed reaction energetics.

Additional indexing

Item Type:Book Section, refereed, original work
Communities & Collections:07 Faculty of Science > Department of Chemistry
Dewey Decimal Classification:540 Chemistry
Scopus Subject Areas:Physical Sciences > Spectroscopy
Physical Sciences > Physical and Theoretical Chemistry
Physical Sciences > Inorganic Chemistry
Language:English
Date:1 January 2020
Deposited On:15 Nov 2021 09:22
Last Modified:09 Mar 2025 04:34
Publisher:Springer
Number:186
ISBN:978-3-030-64747-6
OA Status:Closed
Publisher DOI:https://doi.org/10.1007/430_2020_77
Related URLs:https://link.springer.com/chapter/10.1007/430_2020_77
Full text not available from this repository.

Metadata Export

Statistics

Citations

Dimensions.ai Metrics
5 citations in Web of Science®
6 citations in Scopus®
Google Scholar™

Altmetrics

Authors, Affiliations, Collaborations

Similar Publications