Choudhury R R, Chitra R, Aliouane N, Schefer J
Solid State Physics Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2013 Dec;69(Pt 6):595-602. doi: 10.1107/S2052519213024573. Epub 2013 Oct 23.
Protonated crystals of glycine silver nitrate (C4H10Ag2N4O10) undergo a displacive kind of structural phase transition to a ferroelectric phase at 218 K. Glycine silver nitrate (GSN) is a light-sensitive crystal. Single-crystal X-ray diffraction investigations are difficult to perform on these crystals due to the problem of crystal deterioration on prolonged exposure to X-rays. To circumvent this problem, single-crystal neutron diffraction investigations were performed. We report here the crystal structure of GSN in a ferroelectric phase. The final R value for the refined structure at 150 K is 0.059. A comparison of the low-temperature structure with the room-temperature structure throws some light on the mechanism of the structural phase change in this crystal. We have attempted to explain the structural transition in GSN within the framework of the vibronic theory of ferroelectricity, suggesting that the second-order Jahn-Teller (pseudo-Jahn-Teller) behavior of the Ag(+) ion in GSN leads to structural distortion at low temperature (218 K).
甘氨酸硝酸银(C₄H₁₀Ag₂N₄O₁₀)的质子化晶体在218 K时经历一种位移型结构相变,转变为铁电相。甘氨酸硝酸银(GSN)是一种光敏晶体。由于长时间暴露于X射线下晶体变质的问题,对这些晶体进行单晶X射线衍射研究很困难。为了规避这个问题,进行了单晶中子衍射研究。我们在此报告GSN在铁电相中的晶体结构。在150 K下精修结构的最终R值为0.059。低温结构与室温结构的比较为该晶体结构相变的机制提供了一些线索。我们试图在铁电体的电子 - 振动理论框架内解释GSN中的结构转变,表明GSN中Ag(+)离子的二阶 Jahn - Teller(伪 Jahn - Teller)行为导致低温(218 K)下的结构畸变。