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Flexible Non Volatile Memory devices based on organic semiconductors

机译:基于有机半导体的柔性非易失性存储器件

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The possibility of developing fully organic electronic circuits is critically dependent on the ability to realize a full set of electronic functionalities based on organic devices. In order to complete the scene, a fundamental element is still missing, i.e. reliable data storage. Over the past few years, a considerable effort has been spent on the development and optimization of organic polymer based memory elements. Among several possible solutions, transistor-based memories and resistive switching-based memories are attracting a great interest in the scientific community. In this paper, a route for the fabrication of organic semiconductor-based memory devices with performances beyond the state of the art is reported. Both the families of organic memories will be considered. A flexible resistive memory based on a novel combination of materials is presented. In particular, high retention time in ambient conditions are reported. Complementary, a low voltage transistor-based memory is presented. Low voltage operation is allowed by an hybrid, nano-sized dielectric, which is also responsible for the memory effect in the device. Thanks to the possibility of reproducibly fabricating such device on ultra-thin substrates, high mechanical stability is reported.
机译:开发完全有机电子电路的可能性批判性地取决于基于有机装置实现全套电子功能的能力。为了完成现场,仍然缺少基本元素,即可靠的数据存储。在过去的几年里,已经花了大量努力的基于有机聚合物的内存元件的开发和优化。在几种可能的解决方案中,基于晶体管的存储器和基于电阻的转换的存储器在科学界引起了极大的兴趣。在本文中,报道了一种用于制造基于有机半导体的存储器件的途径,其具有超出现有技术的性能。将考虑有机记忆的家庭。提出了一种基于新型材料组合的柔性电阻存储器。特别地,报告了环境条件下的高保留时间。互补,提出了基于低电压晶体管的存储器。混合,纳米大小电介质允许低电压操作,这也负责设备中的存储器效果。由于可以在超薄基板上可重复制造这种装置的可能性,报道了高机械稳定性。

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