Magnetic interactions in molecules and highly correlated materials: physical content, analytical derivation, and rigorous extraction of magnetic Hamiltonians
JP Malrieu, R Caballol, CJ Calzado, C De Graaf… - Chemical …, 2014 - ACS Publications
Magnetism is a phenomenon that has always captured the imagination of humans. Its
discovery in the western world is attributed to the ancient Greek civilization. More than 2500 …
discovery in the western world is attributed to the ancient Greek civilization. More than 2500 …
Oxo-centered trinuclear ruthenium acetates: Structure and applications
S Nikolaou, LGA do Nascimento… - Coordination Chemistry …, 2023 - Elsevier
Polynuclear μ-oxo complexes are commonly observed for second and third row transition
metals. This review is particularly interested in the μ 3-oxo-bridged ruthenium trinuclear …
metals. This review is particularly interested in the μ 3-oxo-bridged ruthenium trinuclear …
Guest-induced emergent properties in metal–organic frameworks
MD Allendorf, ME Foster, F Leonard… - The journal of …, 2015 - ACS Publications
Metal–organic frameworks (MOFs) are crystalline nanoporous materials comprised of
organic electron donors linked to metal ions by strong coordination bonds. Applications such …
organic electron donors linked to metal ions by strong coordination bonds. Applications such …
Mixed valence: origins and developments
P Day, NS Hush, RJH Clark - … Transactions of the …, 2008 - royalsocietypublishing.org
Mixed-valence compounds were recognized by chemists more than a century ago for their
unusual colours and stoichiometries, but it was just 40 years ago that two seminal articles …
unusual colours and stoichiometries, but it was just 40 years ago that two seminal articles …
X-ray Spectroscopic Characterization of Co(IV) and Metal–Metal Interactions in Co4O4: Electronic Structure Contributions to the Formation of High-Valent States …
The formation of high-valent states is a key factor in making highly active transition-metal-
based catalysts of the oxygen evolution reaction (OER). These high oxidation states will be …
based catalysts of the oxygen evolution reaction (OER). These high oxidation states will be …
Inorganic electron transfer: sharpening a fuzzy border in mixed valency and extending mixed valency across supramolecular systems
CP Kubiak - Inorganic Chemistry, 2013 - ACS Publications
This article describes research from our laboratory on the chemistry and spectroscopic
properties of inorganic mixed-valence complexes. After a brief review of the seminal work of …
properties of inorganic mixed-valence complexes. After a brief review of the seminal work of …
Inter-or intramolecular electron transfer between triruthenium clusters: we'll cross that bridge when we come to it
The purpose of this review is to examine the fundamental differences between
intermolecular self-exchange vs. intramolecular ET in mixed-valence complexes based on …
intermolecular self-exchange vs. intramolecular ET in mixed-valence complexes based on …
Predicting the localized/delocalized character of mixed-valence diquinone radical anions. Toward the right answer for the right reason
The Robin–Day class II/III mixed-valence character is established quantum-chemically for a
series of mixed-valence diquinone radical anions. Particular emphasis is placed on the …
series of mixed-valence diquinone radical anions. Particular emphasis is placed on the …
Electronic Interactions Between and Through Covalently-Bonded Polymetallic Complexes
The diverse structures and rich electrochemical response of polynuclear complexes have
made them attractive objects with which to study bridge-mediated electronic interactions. In …
made them attractive objects with which to study bridge-mediated electronic interactions. In …
Persistence of the three-state description of mixed valency at the localized-to-delocalized transition
SD Glover, CP Kubiak - Journal of the American Chemical Society, 2011 - ACS Publications
Application of a semiclassical three-state model of mixed valency to complexes of the type
[Ru3 (μ3-O)(OAc) 6 (CO)(py)–(μ2-BL)–Ru3 (μ3-O)(OAc) 6 (CO)(py)]− 1, where BL= 1, 4 …
[Ru3 (μ3-O)(OAc) 6 (CO)(py)–(μ2-BL)–Ru3 (μ3-O)(OAc) 6 (CO)(py)]− 1, where BL= 1, 4 …