Dielectric and nonlinear optical dual switching in an organic–inorganic hybrid relaxor [(CH 3 ) 3 PCH 2 OH][Cd(SCN) 3 ]

A new organic–inorganic hybrid compound [(CH 3 ) 3 PCH 2 OH][Cd(SCN) 3 ] ( 1 ) has been synthesized, which exhibits a reversible phase transition at 248.5 K confirmed by differential scanning calorimetry. The phase transition in 1 is from a centrosymmetric space group Pmcn to a non-centrosymmetric s...

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Veröffentlicht in:Inorganic chemistry frontiers 2017-09, Vol.4 (9), p.1445-1450
Hauptverfasser: Zheng, Xuan, Shi, Ping-Ping, Lu, Yang, Zhou, Lin, Gao, Ji-Xing, Geng, Fu-Juan, Wu, De-Hong, Fu, Da-Wei, Ye, Qiong
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Sprache:eng
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Zusammenfassung:A new organic–inorganic hybrid compound [(CH 3 ) 3 PCH 2 OH][Cd(SCN) 3 ] ( 1 ) has been synthesized, which exhibits a reversible phase transition at 248.5 K confirmed by differential scanning calorimetry. The phase transition in 1 is from a centrosymmetric space group Pmcn to a non-centrosymmetric space group P 2 1 , so that 1 exhibits a switchable second harmonic generation (SHG) effect between SHG-on and SHG-off states. This phase transition also displays switchable dielectric behaviors between high and low dielectric states accompanied by the remarkable dielectric relaxation described by the Cole–Cole equation. Variable-temperature single-crystal X-ray diffraction analyses reveal that the origin of the phase transition can be attributed to the motion or reorientation of the [(CH 3 ) 3 PCH 2 OH] + cations and the movement of (SCN) − ions in solid-state crystals. These superior physical properties suggest that 1 could be a potential switchable dielectric and NLO relaxor-type material, which provides a new approach to design novel multiple switch materials.
ISSN:2052-1553
2052-1553
DOI:10.1039/C7QI00300E