论文标题
精确制造活性纳米级设备的均匀分子间隙
Precise Fabrication of Uniform Molecular Gaps for Active Nanoscale Devices
论文作者
论文摘要
具有多功能功能和明确结构的分子可以作为极端纳米级设备的基础。这需要它们精确地集成到功能性异质结中,最常见于金属 - 金属架构的形式。但是,由当前制造技术引起的结构损伤和不均匀性,限制了它们的有效掺入。在这里,我们提出了一种混合制造方法,可以实现均匀的分子间隙。带有亚纳米粗糙度的模板分散的石印刷的金电极用作通过自组装形成分子层的底部触点。使用胶体金纳米棒的介电性捕获来组装顶部触点,从而产生均匀的低5 nm连接。在这些电动设计中,我们进一步探讨了机械可调性的可能性。分子的存在可能有助于控制亚纳米机械调制,由于表面粘合力引起的不稳定性,通常难以实现。我们的方法是多功能的,为开发和研究有效的分子差距提供了针对功能性纳米台词的平台。
Molecules with versatile functionalities and well-defined structures, can serve as building blocks for extreme nanoscale devices. This requires their precise integration into functional heterojunctions, most commonly in the form of metal-molecule-metal architectures. Structural damage and nonuniformities caused by current fabrication techniques, however, limit their effective incorporation. Here, we present a hybrid fabrication approach enabling uniform molecular gaps. Template-stripped lithographically-patterned gold electrodes with sub-nanometer roughness are used as the bottom contacts upon which the molecular layer is formed through self-assembly. The top contacts are assembled using dielectrophoretic trapping of colloidal gold nanorods, resulting in uniform sub-5 nm junctions. In these electrically-active designs, we further explore the possibility of mechanical tunability. The presence of molecules may help control sub-nanometer mechanical modulation which is conventionally difficult to achieve due to instabilities caused by surface adhesive forces. Our approach is versatile, providing a platform to develop and study active molecular gaps towards functional nanodevices.