真空沉积分子铁电薄膜中球状体增强的宏观极化

IF 2.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
CrystEngComm Pub Date : 2024-06-11 DOI:10.1039/D4CE00417E
Bibek Tiwari, Yuanyuan Ni, Jackson Savage, Ellen Daugherty, Bharat Giri, Xin Li and Xiaoshan Xu
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引用次数: 0

摘要

质子传递型分子铁电因其自发极化大、居里温度高和开关场小而在实际应用中大有可为。然而,令人困惑的是,只有极少数分子铁电材料被报道制备出具有宏观铁电行为的准二维薄膜。为了解决这个难题,我们研究了微观结构对使用低温沉积后限制结晶(LDRC)方法生长的 5,6-二氯-2-甲基苯并咪唑(DC-MBI)薄膜的宏观铁电特性的影响。我们的研究结果表明,在生长后的薄膜中,致密球晶和含有随机取向纳米晶粒的多孔微结构之间存在竞争。生长后的适温退火促进了球晶的形成,从而导致了宏观铁电极化转换。这些结果强调了微观结构密度在决定宏观铁电特性中的关键作用,有可能解决许多分子铁电薄膜中缺乏这种行为的难题。我们预计,本研究提出的提高微结构密度的方法将极大地推动准二维分子铁电薄膜的制造,并释放其在器件应用中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spherulite-enhanced macroscopic polarization in molecular ferroelectric films from vacuum deposition†

Spherulite-enhanced macroscopic polarization in molecular ferroelectric films from vacuum deposition†

Spherulite-enhanced macroscopic polarization in molecular ferroelectric films from vacuum deposition†

Proton-transfer type molecular ferroelectrics hold significant promise for practical application due to their large spontaneous polarizations, high Curie temperatures, and small switching fields. However, it remains puzzling that preparation of quasi-2D films exhibiting macroscopic ferroelectric behaviors has been reported in only few molecular ferroelectrics. To address this puzzle, we studied the impact of microstructures on the macroscopic ferroelectric properties of 5,6-dichloro-2-methylbenzimidazole (DC-MBI) films grown using the low-temperature deposition followed by the restrained crystallization (LDRC) method. Our findings revealed a competition between dense spherulites and porous microstructures containing randomly oriented nanograins in the as-grown films. Post-growth annealing at moderate temperature promotes the formation of spherulites, leading to macroscopic ferroelectric polarization switching. These results underscore the critical role of microstructure density in determining macroscopic ferroelectric properties, potentially resolving the puzzle for the absence of such behavior in many molecular ferroelectric films. We anticipate that the approach proposed in this study to enhance microstructure density will significantly advance the fabrication of quasi-2D molecular ferroelectric films and unlock their potential in device applications.

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来源期刊
CrystEngComm
CrystEngComm 化学-化学综合
CiteScore
5.50
自引率
9.70%
发文量
747
审稿时长
1.7 months
期刊介绍: Design and understanding of solid-state and crystalline materials
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