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Artificial visual memory device based on a photo-memorizing composite and one-step manufacturing

机译:基于光记忆复合材料和一步制造的人工视觉存储器

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摘要

The functional deficiency between physically separated electronic components makes the up-to-date artificial photo memory devices undergo an intricate preparation and assembly process for the discrete elements, modules and final product. In this research, a multi-functional composite, which consists of conductive nanoparticles with a photothermal conversion effect and a polymeric matrix with memory characteristics, is proposed to realize the sensing and successive memory of optical information in the same material instead of device integration. Nanoparticles in the composite can convert light into heat, and heat can change the irreversible viscous flow of the polymers, which results in changing the distribution distance of conductive nanoparticles in the matrix, as well as the resistance of the composite. Therefore, the composite itself can realize light perception and memory. The composite can mimic multiple basic neuro behaviors. This new way of thinking about the polymer physical properties may open doors for polymers in the electronics area, which may be applied in future flexible and wearable electronics or even artificial intelligence with sensory demands.
机译:物理分离的电子元件之间的功能缺陷使得最新的人造照片存储器件经历分子的分子,模块和最终产品的复杂制备和装配过程。在该研究中,提出了一种多功能复合材料,其由具有光热转换效应的导电纳米颗粒和具有存储器特性的聚合物基质组成,以实现相同材料中的光学信息的感测和连续存储器而不是设备集成。复合材料中的纳米颗粒可以将光转化为热量,热量可以改变聚合物的不可逆粘性流动,这导致改变导电纳米颗粒在基质中的分布距离以及复合材料的电阻。因此,复合材料本身可以实现光明感知和记忆。复合材料可以模仿多个基本的神经行为。这种关于聚合物物理性质的新思考方式可以在电子区域中的聚合物开门,这可以在未来的柔性和可穿戴电子设备或甚至具有感官需求的人工智能中应用。

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