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Organic flash memory on various flexible substrates for foldable and disposable electronics

机译:可折叠和一次性电子产品的各种柔性基板上的有机闪存

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摘要

With the emergence of wearable or disposable electronics, there grows a demand for a flash memory realizable on various flexible substrates. Nevertheless, it has been challenging to develop a flash memory that simultaneously exhibits a significant level of flexibility and performance. This is mainly due to the scarcity of flexible dielectric materials with insulating properties sufficient for a flash memory, which involves dual dielectric layers, respectively, responsible for tunneling and blocking of charges. Here we report ultra-flexible organic flash memories based on polymer dielectrics prepared by initiated chemical vapor deposition. Using their near-ideal dielectric characteristics, we demonstrate flash memories bendable down to a radius of 300 μm that exhibits a relatively long-projected retention with a programming voltage on par with the present industrial standards. The proposed memory technology is then applied to non-conventional substrates, such as papers, to demonstrate its feasibility in a wide range of applications.
机译:随着可穿戴或一次性电子设备的出现,对在各种柔性基板上可实现的闪存的需求不断增长。然而,开发同时显示出显着水平的灵活性和性能的闪存具有挑战性。这主要是由于缺乏具有足以用于闪存的绝缘特性的柔性电介质材料,该闪存分别涉及负责电荷隧穿和阻挡的双电介质层。在这里,我们报告了基于通过起始化学气相沉积制备的聚合物电介质的超柔韧性有机闪存。利用它们的近乎理想的介电特性,我们演示了可弯曲至300μm半径的闪存,其编程电压与目前的工业标准相当,具有相对较长的投影保留时间。然后,将提出的存储技术应用于非常规基材,例如纸张,以证明其在广泛应用中的可行性。

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