铁电性
亚稳态
离子键合
材料科学
光激发
质子
化学物理
离子
结晶学
原子物理学
光电子学
激发态
物理
化学
电介质
量子力学
作者
Xuanyuan Jiang,Xiao Wang,Pratyush Buragohain,Andy T. Clark,Haidong Lu,Shashi Poddar,Le Yu,Anthony D. DiChiara,Alexei Gruverman,Xuemei Cheng,Xiaoshan Xu
标识
DOI:10.1103/physrevmaterials.6.074412
摘要
Persistent photoresponses require optical excitations to metastable states, which are rare of ionic origin due to the indirect photon-ion interaction. In this work, we explore the photoinduced metastable proton states in the proton-transfer type molecular ferroelectric croconic acid.We observe that, after the photoexcitation, the changes of structural and ferroelectric properties relax in ~103 s, indicating persistent photoresponses of ionic origin. In contrast, the photoconductivity relaxes within 1 s. The 103 s timescale suggests that the ionic metastable states result from proton transfer both along and out of the hydrogen bonds. Furthermore, this discovery unveils an ionic mechanism for the phototunability, which offers persistent opto-ferroelectric control for proton-transfer type molecular ferroelectrics.
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