The electronic structure of multinuclear transition metal complexes is a highly challenging problem for quantum chemical methods. The problems to be solved for a successful analysis include the following: (1) many unpaired electrons leading to "highly entangled" wave functions that cannot be calculated by standard electronic structure methods, (2) drastic differences between the one-particle and many-particle spectra and a high density of low-lying states, and (3) the interpretation of such highly complex wave functions in chemical terms. In this work, we continue our research on oligonuclear clusters by presenting an in-depth analysis of the electronic structure of a prototypical iron-sulfur (Fe2S2) dimer. Accurate wave functions are obtai...
The high-spin-low-spin (HS-LS) transition i iron(II) complexes was studied by the recently developed...
ABSTRACT: The electronic structure relevant to low spin (LS)↔high spin (HS) transitions in Fe(II) co...
$^{\ast}$ Supported by the Advanced Research Projects Agency (SD-102).Author Institution: Department...
The electronic structure of multinuclear transition metal complexes is a highly challenging problem ...
Iron–sulfur (FeS) proteins are universally found in nature with actives sites ranging in complexity ...
The replacement of S with Se is a useful technique for studying iron‐sulfur clusters. The substituti...
The application of classical molecular dynamics simulations to the study of metalloenzymes has been ...
ABSTRACT: The electronic structure of a diiron (FeFe) complex with strong metal−metal interaction an...
Author Institution: ELORET Corporation, mail stop 230-3, Moffett Field, CA 94035Iron-Sulphur cluster...
Molecular orbital calculations (Extented Hückel Method) with an electronic population analysis on or...
Glaser T, Rose K, Shadle SE, Hedman B, Hodgson KO, Solomon EI. SK-edge X-ray absorption studies of t...
The research outlined in this dissertation focuses on understanding the role of metal-sulfur interac...
Abstract: A computational method targeted to Werner-type complexes is developed on the basis of quan...
Iron-sulfur complexes play an important role in biological processes such as metabolic electron tran...
Mixed valence compounds have been recognized over the past five decades as a unique class of chemica...
The high-spin-low-spin (HS-LS) transition i iron(II) complexes was studied by the recently developed...
ABSTRACT: The electronic structure relevant to low spin (LS)↔high spin (HS) transitions in Fe(II) co...
$^{\ast}$ Supported by the Advanced Research Projects Agency (SD-102).Author Institution: Department...
The electronic structure of multinuclear transition metal complexes is a highly challenging problem ...
Iron–sulfur (FeS) proteins are universally found in nature with actives sites ranging in complexity ...
The replacement of S with Se is a useful technique for studying iron‐sulfur clusters. The substituti...
The application of classical molecular dynamics simulations to the study of metalloenzymes has been ...
ABSTRACT: The electronic structure of a diiron (FeFe) complex with strong metal−metal interaction an...
Author Institution: ELORET Corporation, mail stop 230-3, Moffett Field, CA 94035Iron-Sulphur cluster...
Molecular orbital calculations (Extented Hückel Method) with an electronic population analysis on or...
Glaser T, Rose K, Shadle SE, Hedman B, Hodgson KO, Solomon EI. SK-edge X-ray absorption studies of t...
The research outlined in this dissertation focuses on understanding the role of metal-sulfur interac...
Abstract: A computational method targeted to Werner-type complexes is developed on the basis of quan...
Iron-sulfur complexes play an important role in biological processes such as metabolic electron tran...
Mixed valence compounds have been recognized over the past five decades as a unique class of chemica...
The high-spin-low-spin (HS-LS) transition i iron(II) complexes was studied by the recently developed...
ABSTRACT: The electronic structure relevant to low spin (LS)↔high spin (HS) transitions in Fe(II) co...
$^{\ast}$ Supported by the Advanced Research Projects Agency (SD-102).Author Institution: Department...