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Light-Written Reversible 3D Fluorescence and Topography Dual-Pattern with Memory and Self-Healing Abilities

机译:具有记忆和自我修复功能的光写可逆3D荧光和形貌双模式

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摘要

To achieve the dynamical dual-pattern with multiplex information of complex topography and 3D fluorescence is challenging yet promising for wide applications ranging from visual bioassays, memory, smart devices to smart display. Here, we develop a convenient, reliable, and versatile method to realize the well-ordered dual-pattern with reversible topography and 3D fluorescence via a light direct-writing approach based on the wrinkle mechanism. By introducing the charge transfer (CT) interaction between -electron-rich anthracene (AN) and -electron-poor naphthalene diimide (NDI) into the polymer system, both modulus and fluorescence of the polymer films can be spatially regulated through the photodimerization of AN, which is controlled by photomasks, and becomes gradient in the direction due to the filter effect of light. Therefore, the exposed sample displays a well-ordered complex pattern with the same topography as the applied photomask and 3D gradient change of fluorescence from red to green laterally across the layers simultaneously. The spatial cross-linking and CT interaction of the gradient layer can be controlled independently, which not only provides the reliability and reversibility of the topographical and fluorescence dual-pattern but also endows the possibility for tailoring the pattern with memory and self-healing. These characters of the dual-pattern with reversible topography and 3D fluorescence declare the clear applications in smart multiplex displays, memory, anticounterfeiting, visual detections, and so on.
机译:为了实现具有复杂地形和3D荧光的多重信息的动态双模式,具有挑战性,但对于从视觉生物测定法,存储器,智能设备到智能显示器的广泛应用来说,都是充满希望的。在这里,我们开发了一种方便,可靠且通用的方法,通过基于皱纹机制的光直接写入方法来实现具有可逆形貌和3D荧光的井井有条的双图案。通过将富电子蒽(AN)和贫电子萘二酰亚胺(NDI)之间的电荷转移(CT)相互作用引入到聚合物体系中,可以通过AN的光二聚作用在空间上调节聚合物膜的模量和荧光由光掩模控制,由于光的滤光效果而在方向上变为渐变。因此,暴露的样品显示出秩序井然的复杂图案,其形貌与所施加的光掩模相同,并且荧光的3D梯度变化同时从层的侧面横向从红色变为绿色。梯度层的空间交联和CT相互作用可以独立控制,这不仅提供了地形图和荧光双图样的可靠性和可逆性,而且还为通过记忆和自我修复来定制图样提供了可能性。具有可逆形貌和3D荧光的双图案的这些特征表明,它们在智能多路复用显示器,内存,防伪,视觉检测等方面的明确应用。

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