University of Bayreuth, Bayreuth Institute of Macromolecular Research (BIMF), Bayreuth, Germany.
Chemistry. 2011 Nov 4;17(45):12722-8. doi: 10.1002/chem.201100941. Epub 2011 Sep 29.
This paper reports on the synthesis and the thermal and optical properties of photochromic low-molecular-weight compounds, especially with respect to the formation of holographic volume gratings in the pure materials and in binary blends with polystyrene. Its aim is to provide a basic understanding of the holographic response with regard to the molecular structure, and thus to show a way to obtain suitable rewritable materials with high sensitivity for holographic data storage. The photoactive low-molecular-weight compounds consist of a central core with three or four azobenzene-based arms attached through esterification. Four different cores were investigated that influence the glass transition temperature and the glass-forming properties. Additional structural variations were introduced by the polar terminal substituent at the azobenzene chromophore to fine-tune the optical properties and the holographic response. Films of the neat compounds were investigated in holographic experiments, especially with regard to the material sensitivity. In binary blends of the low-molecular-weight compounds with polystyrene, the influence of a polymer matrix on the behavior in holographic experiments was studied. The most promising material combination was also investigated at elevated temperatures, at which the holographic recording sensitivity is even higher.
本文报告了光致变色低分子化合物的合成及其热学和光学性质,特别是在纯材料和与聚苯乙烯的二元混合物中形成全息体光栅。其目的是提供对分子结构的全息响应的基本理解,从而展示获得具有高灵敏度的适用于全息数据存储的可重写材料的途径。光活性低分子化合物由通过酯化连接的三个或四个基于偶氮苯的臂的中心核组成。研究了四个不同的核,它们影响玻璃化转变温度和玻璃形成性质。通过在偶氮苯发色团的极性末端取代基引入额外的结构变化,来微调光学性质和全息响应。对纯化合物的薄膜进行了全息实验研究,特别是对材料灵敏度的研究。在低分子化合物与聚苯乙烯的二元混合物中,研究了聚合物基质对全息实验行为的影响。还研究了在升高温度下最有前途的材料组合,在该温度下,全息记录灵敏度甚至更高。