化学
铁电性
极化率
钙钛矿(结构)
电负性
氟
位阻效应
居里温度
结晶学
替代(逻辑)
纳米技术
立体化学
凝聚态物理
分子
电介质
光电子学
有机化学
铁磁性
材料科学
物理
程序设计语言
计算机科学
作者
Yong Ai,Xiao‐Gang Chen,Ping‐Ping Shi,Yuan‐Yuan Tang,Peng‐Fei Li,Wei‐Qiang Liao,Ren‐Gen Xiong
摘要
The past decade has witnessed much progress in designing molecular ferroelectrics, whose intrinsic mechanical flexibility, structural tunability, and easy processability are desirable for next-generation flexible and wearable electronic devices. However, an obstacle in expanding their promising applications in nonvolatile memory elements, capacitors, and sensors is effectively modulating the Curie temperature ( Tc). Here, taking advantage of fluorine substitution on the reported molecular ferroelectric, (pyrrolidinium)MnCl3, we present enantiomeric perovskite ferroelectrics, namely, ( R) - and ( S) -3-(fluoropyrrolidinium)MnCl3. The close van der Waal's radii and the similar steric parameters between H and F atoms ensure the minimum disruption of the crystal structure, while their different electronegativity and polarizability can trigger significant changes in the physical and chemical properties. As expected, the Tc gets successfully increased from 295 K in (pyrrolidinium)MnCl3 to 333 K in these two homochiral compounds. Such a dramatic enhancement of 38 K signifies an important step toward designing high- Tc molecular ferroelectrics. In the light of the conceptually new idea of fluorine substitution, one could look forward to a continuous succession of new molecular ferroelectric materials and technology developments.
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