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Nanoscale control and detection of electric dipoles in organic molecules

机译:纳米级控制和检测有机分子中的电偶极子

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摘要

The nanoscopic ferroelectric domains could be formed in P(VDF/TrFE) thin films by applying electric pulses with a conductive atomic force microscope, and detected by using piezoelectric response, revealing that the directions of electric dipoles in organic molecules can be controlled in nanoscale. By changing the polarity of the applied pulses, temporally stable binary information could be 'written' in these films. Moreover, the possibilities of the molecular manipulation and the creation of high-density molecular memory devices utilizing the electric interaction between the polar molecules and the scanning probe microscopy tips are discussed. [References: 5]
机译:可以通过用导电原子力显微镜施加电脉冲在P(VDF / TrFE)薄膜中形成纳米铁电畴,并通过压电响应进行检测,这表明有机分子中电偶极子的方向可以在纳米级控制。通过改变施加脉冲的极性,可以将时间稳定的二进制信息“写入”这些胶片。此外,讨论了利用极性分子和扫描探针显微镜尖端之间的电相互作用进行分子操纵和创建高密度分子存储设备的可能性。 [参考:5]

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