Evidence for an excited state with a large lattice relaxation in quasi-one-dimensional halogen-bridgedNicomplexes
Author:
Publisher
American Physical Society (APS)
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.70.081101/fulltext
Reference12 articles.
1. Electronic structure of the quasi-one-dimensional halogen-bridged Ni complexes [Ni(chxn)2X]X2(X=Cl, Br) and related Ni compounds
2. Ultrafast Optical Switching to a Metallic State by Photoinduced Mott Transition in a Halogen-Bridged Nickel-Chain Compound
3. Relaxation Process of CT Exciton State in a One-Dimensional MX-Chain Compound NiBr( chxn ) 2 ]Br 2
4. Strong effective suppression of electron-lattice interaction in the photoexcited states of halogen-bridged Ni complexes as one-dimensional Mott insulators
5. Competition between electron correlation of NiIIIstates and electron-phonon interaction of PdII-PdIVmixed-valence states in quasi-one-dimensional halogen-bridged mixed-metal complexes, Ni 1- x Pd X (chxn) 2 Br 3
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1. One-Dimensional Ni(III) and Pd(III) Mott Insulators;Comprehensive Inorganic Chemistry II;2013
2. Ni(III) Mott–Hubbard Compounds;Material Designs and New Physical Properties in MX- and MMX-Chain Compounds;2012-10-26
3. One-dimensional Halogen-bridged NiIIICompounds: Chemistry and Physics in Strongly Correlated Electron Systems;Chemistry Letters;2008-04-05
4. Nuclear wave-packet dynamics on nearly degenerate two adiabatic potential energy surfaces in the excited state of KIFcenters;Physical Review B;2007-09-20
5. Ultrafast time-resolved infrared luminescence spectroscopy in halogen-bridged Pd complexes;physica status solidi (c);2006-11
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