Tang Yuan-Yuan, Zeng Yu-Ling, Xiong Ren-Gen
Ordered Matter Science Research Center, Nanchang University, Nanchang 330031, People's Republic of China.
J Am Chem Soc. 2022 May 18;144(19):8633-8640. doi: 10.1021/jacs.2c01069. Epub 2022 May 10.
The optical manipulation of polarization has gained widespread attention because it offers a promising route to new contactless memories and switches. However, the current research basically focuses on the photocontrol of data storage rather than data reading, which cannot realize the whole process of contactless write-read-erase data storage. Here, we present a pair of enantiomorphic diarylethene derivative ferroelectric crystals, showing a light-driven phase transition triggered by photoisomerization between the open and closed forms. Under the visible light, they exhibit a binary-domain state in the open form with white color and the band gap of 3.26 eV, while they show a single-domain state in the closed form with blue color and the band gap of 1.68 eV after UV irradiation of 254/365 nm. In addition to writing and erasing ferroelectric domains with light, we can also use light to read their color to determine the polarization state of domains. Moreover, diarylethene derivatives have better thermal stability, higher photoexcited conversion efficiency, and larger changes of the absorption wavelength between two isomers than those in salicylideneaniline derivatives. This work not only discovers the first diarylethene-based ferroelectric crystals but also successfully realizes completely contactless manipulation of write-read-erase data storage in the organic ferroelectric semiconductors.
偏振的光学操控已受到广泛关注,因为它为新型非接触式存储器和开关提供了一条有前景的途径。然而,目前的研究基本上集中在数据存储的光控方面,而非数据读取,这无法实现非接触式写-读-擦除数据存储的全过程。在此,我们展示了一对对映体形式的二芳基乙烯衍生物铁电晶体,其呈现出由开环和闭环形式之间的光异构化触发的光驱动相变。在可见光下,它们在开环形式下呈现二元畴状态,颜色为白色,带隙为3.26 eV,而在254/365 nm紫外线照射后,它们在闭环形式下呈现单畴状态,颜色为蓝色,带隙为1.68 eV。除了用光写入和擦除铁电畴外,我们还可以用光读取它们的颜色以确定畴的偏振状态。此外,二芳基乙烯衍生物比水杨醛苯胺衍生物具有更好的热稳定性、更高的光激发转换效率以及两种异构体之间更大的吸收波长变化。这项工作不仅发现了首例基于二芳基乙烯的铁电晶体,还成功实现了有机铁电半导体中写-读-擦除数据存储的完全非接触式操控。