铁电性
热稳定性
多态性(计算机科学)
组分(热力学)
材料科学
单晶
结晶学
有机成分
化学
基因型
光电子学
有机化学
物理
热力学
环境化学
电介质
基因
生物化学
作者
Sanjay Dutta,Vikas Vikas,Ashok Yadav,Ramamoorthy Boomishankar,Anu Bala,Vijay Kumar,Tirthankar Chakraborty,Suja Elizabeth,Parthapratim Munshi
摘要
Traditionally, lead and heavy metal containing inorganic oxides dominate the area of ferroelectricity. Although, recently, lightweight non-toxic organic ferroelectrics have emerged as excellent alternatives, achieving higher temperature up to which the ferroelectric phase can persist has remained a challenge. Moreover, only a few of those are single-component molecular ferroelectrics and were discovered upon revisiting their crystal structures. Here we report a novel phenanthroimidazole derivative, which not only displays notable spontaneous and highly stable remnant polarizations with a low coercive field but also retains its ferroelectric phase up to a record-high temperature of ∼521 K. Subsequently, the crystal undergoes phase transition to form non-polar and centrosymmetric polymorphs, the first study of its kind in a single-component ferroelectric crystal. Moreover, the compound exhibits a significantly high thermal stability. Given the excellent figures-of-merit for ferroelectricity, this material is likely to find potential applications in microelectronic devices pertaining to non-volatile memory.
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