Soft x-ray magnetic circular dichroism at 2 K: A tool in biological inorganic chemistry
Author:
Publisher
AIP Publishing
Subject
Instrumentation
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1645635
Reference4 articles.
1. Requirements for x-ray magnetic circular dichroism on paramagnetic biological systems and model compounds
2. Magnetic high-resolution spectroscopy with Beamline 4.0.1-2: an elliptically polarizing undulator beamline at the Advanced Light Source
3. Soft X-ray spectroscopy of metalloproteins using fluorescence detection
4. Chemically Distinct Ni Sites in the A-Cluster in Subunit β of the Acetyl-CoA Decarbonylase/Synthase Complex from Methanosarcina thermophila: Ni L-Edge Absorption and X-ray Magnetic Circular Dichroism Analyses
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1. Mechanism of L2,3-edge x-ray magnetic circular dichroism intensity from quantum chemical calculations and experiment—A case study on V(IV)/V(III) complexes;The Journal of Chemical Physics;2020-03-21
2. Iron L2,3-Edge X-ray Absorption and X-ray Magnetic Circular Dichroism Studies of Molecular Iron Complexes with Relevance to the FeMoco and FeVco Active Sites of Nitrogenase;Inorganic Chemistry;2017-06-27
3. Copper Active Sites in Biology;Chemical Reviews;2014-03-03
4. Measurement of the polarization for soft X-ray magnetic circular dichroism at the BSRF beamline 4B7B;Chinese Physics C;2013-01
5. A new ultra-high-vacuum variable temperature and high-magnetic-field X-ray magnetic circular dichroism facility at LNLS;Journal of Synchrotron Radiation;2009-03-17
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