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基于非破坏性红外读取的光致变色光学存储。

Photochromic optical memory based on non-destructive IR read-out.

机构信息

College of Environment and Applied Chemistry and MRCID, Kyung Hee University, Yongin, 446-701, Korea.

出版信息

Photochem Photobiol Sci. 2009 Nov;8(11):1590-4. doi: 10.1039/b906891k. Epub 2009 Sep 28.

Abstract

The photochromic material 1-(2,5-dimethylthien-1,1-dioxide-3-yl)-2-(2,5-dimethylthien-3-yl)hexafluorocyclopentene (DMTFO2) undergoes reversible photocyclization and ring opening reactions upon alternate irradiation with UV and visible light, respectively. Upon photocyclization, the closed-ring isomer of DMTFO2 showed a strong IR absorption band at 1532 cm(-1) which was not observed for the open-ring isomer. To understand the IR spectra of DMTFO2, theoretical calculations were carried out using Gaussian 03 program at the B3LYP/6-31G(d) level. We also demonstrated non-destructive readout of photochromic recording by IR spectral difference between the open- and closed-ring isomers of DMTFO2 in film. We found that DMTFO2 exhibited a higher contrast ratio of IR image between open- and closed-ring isomer compared with previously reported 1,2-bis(2,5-dimethylthien-3-yl)perfluorocyclopentene (DMTF6) because of the increased photoconversion yield as well as higher vibrational transition intensity. These findings along with its high fatigue resistance indicate that DMTFO2 could be an excellent candidate for photon-mode RW (re-writable) memory devices based on photochromic recording and non-destructive IR read-out.

摘要

光致变色材料 1-(2,5-二甲基噻吩-1,1-二氧化物-3-基)-2-(2,5-二甲基噻吩-3-基)六氟环戊烯(DMTFO2)在分别用紫外光和可见光交替辐照时,经历可逆的光环化和开环反应。在光环化时,DMTFO2 的闭环异构体在 1532cm(-1)处显示出强的红外吸收带,而开环异构体则没有观察到。为了理解 DMTFO2 的红外光谱,使用 Gaussian 03 程序在 B3LYP/6-31G(d)水平上进行了理论计算。我们还通过 DMTFO2 薄膜中环开环异构体之间的红外光谱差异演示了光致变色记录的非破坏性读出。我们发现,与之前报道的 1,2-双(2,5-二甲基噻吩-3-基)全氟环戊烯(DMTF6)相比,DMTFO2 具有更高的开环和闭环异构体之间的红外图像对比度比,这是因为光转化率增加以及振动跃迁强度更高。这些发现以及其高抗疲劳性表明,DMTFO2 可能是基于光致变色记录和非破坏性红外读出的光子模式 RW(可重写)存储器件的优秀候选材料。

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