TY - JOUR
T1 - Direct determination of low-dimensional structures
T2 - Synchrotron X-ray scattering on one-dimensional charge-ordered MMX-chain complexes
AU - Wakabayashi, Yusuke
AU - Kobayashi, Atsushi
AU - Sawa, Hiroshi
AU - Ohsumi, Hiroyuki
AU - Ikeda, Naoshi
AU - Kitagawa, Hiroshi
PY - 2006/5/24
Y1 - 2006/5/24
N2 - A powerful method to determine the hidden structural parameters in functional molecules has been developed. Local valence arrangements that dominate the material properties are sometimes not three-dimensionally ordered. This method that comprises diffuse X-ray scattering and resonant X-ray scattering is suitable in such cases. Using this method, we present clear evidence of the low-dimensional valence arrangement in two halogen-bridged one-dimensional metal complexes, so-called MMX chains. This family allows us to control many physical and structural parameters by chemical substitution of bridging halogen, counterions, or metal ions, and one of our samples carries an unusual metallic phase. It is demonstrated with this complex that the present method makes it possible to have microscopic insight to low-dimensionally ordered systems.
AB - A powerful method to determine the hidden structural parameters in functional molecules has been developed. Local valence arrangements that dominate the material properties are sometimes not three-dimensionally ordered. This method that comprises diffuse X-ray scattering and resonant X-ray scattering is suitable in such cases. Using this method, we present clear evidence of the low-dimensional valence arrangement in two halogen-bridged one-dimensional metal complexes, so-called MMX chains. This family allows us to control many physical and structural parameters by chemical substitution of bridging halogen, counterions, or metal ions, and one of our samples carries an unusual metallic phase. It is demonstrated with this complex that the present method makes it possible to have microscopic insight to low-dimensionally ordered systems.
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U2 - 10.1021/ja060111j
DO - 10.1021/ja060111j
M3 - Article
C2 - 16704269
AN - SCOPUS:33646739526
SN - 0002-7863
VL - 128
SP - 6676
EP - 6682
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 20
ER -