安全密码显示,信息消失,并根据一定的温度和时间出现

Cheong-Min Shin, Gi-Eun Kim, Kyeong-Gyu Min, Yanqiu Chen, Eugene J Choi, Chang‐Jae Yu, Jae-Hoon Kim
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引用次数: 0

摘要

安全显示将是未来的重要技术之一。所以我们在研究显示器的过程中找到了一种使用偏振的方法。圆偏振光的发射在提高器件性能方面受到广泛关注。CP发射度由不对称因子$(q=2(I_{\ mathm {L}}-I_{\ mathm {R}})/(I_{\ mathm {L}}+I_{\ mathm {R}})$定义,其中$I_{\ mathm {L}}$和$I_{\ mathm {R}}$分别表示左手和右手CP光的强度。特别是,通过掺杂手性剂[15]或摩擦两个不同的表面[16],在中致发光团的螺旋构型中实现了高程度的CP发射。在这项工作中,我们研究了本征手性发光团的不对称因子作为样品制造后经过时间的函数。采用含手性的芴基团作为发光层(EML),涂覆在摩擦取向层上后,对其进行热退火。EML在室温下冷却后,无需任何处理即可构建扭曲结构。扭曲EML产生CP光,其不对称因子由螺旋扭曲功率(HTP)和EML厚度决定。有趣的是,根据样品制备后的时间,光致发光(PL)的不对称因子(gPL)逐渐降低。在快速和慢速冷却过程中均观察到这些降解行为。这种现象可能是由于本征手性的HTP比S(R)05011等特定手性掺杂剂弱[15]所致。研究了不对称因子的恢复过程。因此,利用这种现象,可以应用于军事安防或各种安防显示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Security Crypto Display that Information Disappears and Appears According to a Certain Temperature and Time
Security displays will be one of the important technologies of the future. So we were able to find a way during the study of displays using polarization. Emission of circularly polarized (CP) light has attracted great attention for improving device performance. The degree of CP emission is defined by the dissymmetric factor, $(q=2(I_{\mathrm{L}}-I_{\mathrm{R}})/(I_{\mathrm{L}}+I_{\mathrm{R}})$, where $I_{\mathrm{L}}$ and $I_{\mathrm{R}}$ denote the intensities of left-handed and right-handed CP light, respectively. Especially, high degree of CP emission was achieved in a helical configuration of mesogenic luminophore by doping a chiral agent [15] or by rubbing two different surfaces [16]. In this work, we investigate the dissymmetric factor of the intrinsic chiral luminophore as a function of elapsed time after sample fabrication. The fluorene moiety containing chirality was used for an emitting layer (EML) and annealed thermally above its mesogenic temperature after coating on the rubbed alignment layer. The EML constructed the twisted structure without any treatment after cooling down at room temperature. The twisted EML generates the CP light, whose dissymmetric factor is governed by helical twisting power (HTP) and thickness of the EML. Interestingly, the dissymmetric factor (gPL) of the photoluminescence (PL) was gradually degraded according to time elapsed after sample preparation. These degradation behaviors were observed in both rapidly and slowly cooling processes. Such phenomenon is expected to be originated from weaker HTP of the intrinsic chirality than the specific chiral dopant such as S(R)05011 [15]. Restoring process of the dissymmetric factor was also investigated. Therefore, using this phenomenon, it can be applied to military security or various security displays.
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