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論文

Proton order-disorder phenomena in a hydrogen-bonded rhodium-$$eta$$$$^{5}$$-semiquinone complex; A Possible dielectric response mechanism

満身 稔*; 江崎 一成*; 小松 裕貴*; 鳥海 幸四郎*; 宮東 達也*; 水野 元裕*; 東 信晃*; 宮崎 裕司*; 中野 元裕*; 北河 康隆*; et al.

Chemistry; A European Journal, 21(27), p.9682 - 9696, 2015/06

 被引用回数:6 パーセンタイル:26.76(Chemistry, Multidisciplinary)

A newly synthesized one-dimensional (1D) hydrogen-bonded (H-bonded) rhodium(II)-$$eta$$$$^{5}$$-semiquinone complex, [Cp$$^{*}$$Rh($$eta$$$$^{5}$$-$$p$$-HSQ-Me$$_{4}$$)]PF$$_{6}$$ exhibits a paraelectric-;antiferroelectric second-order phase transition at 237.1 K. Neutron and X-ray crystal structure analyses reveal that the H-bonded proton is disordered over two sites in the room-temperature (RT) phase. The phase transition would arise from this proton disorder together with rotation or libration of the Cp$$^{*}$$ ring and PF$$_{6}$$ ion. The relative permittivity $$varepsilon$$$$_{b}$$' along the H-bonded chains reaches relatively high values (ca., 130) in the RT phase.

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