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两种高温相变杂化物的半导体、可切换介电和光致发光特性

Semi-conductive, Switchable Dielectric and Photoluminescent Properties of Two High-Temperature Phase Transition Hybrids.

作者信息

Ying Tingting, Li Yukong, Song Ning, Tan Yuhui, Tang Yunzhi, Zhuang Jiachang, Zhang Hao, Wang Lijuan

机构信息

Faculty of Materials Metallurgy and Chemistry, Jiangxi University of Science and Technology, 156 Hakka Avenue, Jiangxi, Ganzhou, 341000, P. R. China.

出版信息

Chem Asian J. 2021 Nov 15;16(22):3664-3668. doi: 10.1002/asia.202100837. Epub 2021 Sep 27.

Abstract

Bistable switches (electrical switching between "ON" and "OFF" bistable states) have gradually developed into an ideal category of highly intelligent materials, due to their significant applications in optical technology, signal processors, data storage and other switchable media applications in the field of electrical devices. Here, we successfully designed and synthesized [(FC H C H NH ) MCl ] (FC H C H NH )=deprotonated 4-fluoro- phenethylamine; M=Cd (1), Mn (2)), which realized the coupling of thermo-dielectric switching characteristics, semi-conductor characteristics and photo-luminescent properties. DSC (differential scanning calorimetry) and dielectric measurements show that 1 is a sensitive dielectric bistable switch between the high dielectric (ON) and low dielectric (OFF) states. The temperature-variable single crystal structure shows that the both 1 and 2 undergo a high-temperature reversible phase transition around 383 K/380 K, which is caused by the order-disordered transformation of organic cations and the slight distortion of the inorganic framework. In particular, 1 shows outstanding switchable dielectric behavior and semiconducting properties. Further, 1 and 2 emit strong green and yellow luminescence at 527 and 595 nm, respectively.

摘要

双稳态开关(在“开”和“关”双稳态之间进行电切换)由于其在光学技术、信号处理器、数据存储以及电气设备领域的其他可切换介质应用中的重要应用,已逐渐发展成为一类理想的高智能材料。在此,我们成功设计并合成了[(FC₆H₄CH₂NH₂)₂MCl₂](FC₆H₄CH₂NH₂⁻ = 去质子化的4-氟苯乙胺;M = Cd (1),Mn (2)),实现了热介电开关特性、半导体特性和光致发光特性的耦合。差示扫描量热法(DSC)和介电测量表明,1是一种在高介电(开)和低介电(关)状态之间的灵敏介电双稳态开关。变温单晶结构表明,1和2在约383 K/380 K附近都经历高温可逆相变,这是由有机阳离子的有序 - 无序转变和无机骨架的轻微畸变引起的。特别地,1表现出出色的可切换介电行为和半导体性质。此外,1和2分别在527和595 nm处发出强烈的绿色和黄色发光。

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