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A 1,3,5-triazine based polymer as a nonlinear near-infrared antenna for two-photon activated volumetric optical memory devices

机译:基于1,3,5-三嗪的聚合物作为双光子激活的体积光学存储设备的非线性近红外天线

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The ability of a 1,3,5-triazine based polymer to work as a nonlinear near-infrared (NIR) antenna in functional optical materials is discussed. The push-pull polymer is composed of alternating electron acceptor cores of 2,4,6-tris(thiophen-2-yl)-1,3,5-triazine, bridged by electron donor groups of 9,9-dihexyl-9H-fluorene. It has been tailored for high two-photon absorption and efficient up-conversion of the excitation energy into fluorescence emission. These properties are here explored in the operation of prototypical storage material for volumetric nonlinear optical memory devices. Multilayer data storage is demonstrated in composite films of photochromic (PC) molecules doped with the polymer. The two-photon excitation of the polymer triggers a unidirectional isomerization of the PC molecules (a cycloreversion process from the closed to the open isomer) via Forster resonant energy transfer. Data recording with as little as 1 ms of exposure time and 1 mW of 740 nm radiation is accomplished.
机译:讨论了1,3,5-三嗪基聚合物在功能光学材料中用作非线性近红外(NIR)天线的能力。推挽聚合物由2,4,6-三(噻吩-2-基)-1,3,5-三嗪的交替电子受体核组成,并由9,9-二己基-9H-的电子供体基团桥接芴。它专为高双光子吸收和将激发能高效上转换为荧光发射而设计。在用于体积非线性光学存储器件的原型存储材料的操作中探索了这些特性。在掺杂有聚合物的光致变色(PC)分子的复合膜中证明了多层数据存储。聚合物的双光子激发通过Forster共振能量转移触发PC分子的单向异构化(从封闭异构体到开放异构体的环还原过程)。只需1 ms的曝光时间和1 mW的740 nm辐射即可完成数据记录。

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