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Towards Highly-Efficient Phototriggered Data Storage by Utilizing a Diketopyrrolopyrrole-Based Photoelectronic Small Molecule

机译:利用基于二酮吡咯并吡咯的光电小分子实现高效的光触发数据存储

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摘要

A cooperative photoelectrical strategy is proposed for effectively modulating the performance of a multilevel data-storage device. By taking advantage of organic photoelectronic molecules as storage media, the fabricated device exhibited enhanced working parameters under the action of both optical and electrical inputs. In cooperation with UV light, the operating voltages of the memory device were decreased, which was beneficial for low energy consumption. Moreover, the ON/OFF current ratio was more tunable and facilitated high-resolution multilevel storage. Compared with previous methods that focused on tuning the storage media, this study provides an easy approach for optimizing organic devices through multiple physical channels. More importantly, this method holds promise for integrating multiple functionalities into high-density data-storage devices.
机译:为了有效地调节多级数据存储设备的性能,提出了一种协同光电策略。通过利用有机光电子分子作为存储介质,所制造的装置在光和电输入的作用下表现出增强的工作参数。与紫外线合作,降低了存储设备的工作电压,这有利于降低能耗。此外,开/关电流比更可调,并有助于高分辨率多层存储。与以前专注于调整存储介质的方法相比,本研究提供了一种通过多个物理通道优化有机设备的简便方法。更重要的是,这种方法有望将多种功能集成到高密度数据存储设备中。

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