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Optical Characteristics of Polymer Films Based on Bacteriorhodopsin for Irreversible Recording of Optical Information

机译:基于细菌视紫红质的不可逆记录光学信息的聚合物膜的光学特性

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摘要

Bacteriorhodopsin (BR)-containing polymer films have been developed in which photoinduced transformations of BR molecules take place during the process of photoinduced hydroxylaminolysis (PHA). The routine simplified scheme of the phototransformation is B <-> M-412 in the case of polymer films based on nonmodified BR. In the case of polymer films based on BR modified by hydroxylamine (HA), this scheme is changed to (B double left right arrow M412)(up arrow---------down arrow) (-> RO) where retinal oxime (RO) is a final product of chemical trapping of retinal by the HA molecule. Under certain conditions, the rate of RO to B regeneration is in finitely low. So, the irreversibility of RO formation allows one to use PHA for the preparation of films for irreversible write once recording. Some optical sensitometric characteristics are compared for polymer-BR films and polymer-BR-HA films. It has been shown that the photosensitivity level for polymer-BR-HA films depends on the time after film preparation. A method is offered to increase the photosensitivity of polymer-BR-HA films and to avoid the photosensitivity decrease with the time after film preparation.
机译:已经开发了含细菌视紫红质(BR)的聚合物膜,其中在光诱导的羟胺解(PHA)过程中发生了BR分子的光诱导转化。在基于非改性BR的聚合物膜的情况下,光转化的常规简化方案是B M-412。对于基于羟胺(HA)改性的BR的聚合物薄膜,此方案更改为(B左右双箭头M412)(上箭头---------下箭头)(-> RO)视网膜肟(RO)是HA分子化学捕获视网膜的最终产物。在某些条件下,RO到B的再生速率非常低。因此,RO形成的不可逆性使人们可以使用PHA制备用于一旦记录就不可逆写的胶片。比较了聚合物-BR膜和聚合物-BR-HA膜的一些光敏特性。已经表明,聚合物-BR-HA膜的光敏度取决于膜制备后的时间。提供一种增加聚合物-BR-HA膜的光敏性并且避免光敏性随膜制备后的时间而降低的方法。

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