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A theoretical guide for fabricating a conductive molecular wire on a silicon surface via an in situ surface polymerization reaction

机译:编造一个导电的理论指导通过在硅表面分子导线表面原位聚合反应

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摘要

It has been a long-standing goal to make conductive molecular wires or linear polymer chains on traditional semiconductors or insulator substrates to satisfy the ongoing miniaturization in electronic devices. Here, we have proposed a surface in situ polymerization reaction for a pre-absorbed molecule, 4-hydrazinyl-3-(pyridin-4-ylmethyl)-benzaldehyde (HPyMB), to produce a conductive molecular wire on a silicon surface. Our first-principles calculations show that HPyMB molecules can absorb alternatively on the exposed Si atoms created via ultrahigh vacuum scanning tunneling microscopy on a hydrogen passivated H-Si(001) 2 x 1 surface along the [110] direction. The adsorption is exothermic and its generated energy is sufficient for the following intermolecular dehydration polymerization reaction to overcome the activation energy barriers and thereafter form a molecular wire on the surface. This polymerized molecular wire is mechanically stable since it is chemically bonded onto the surface. After polymerization, the system becomes conductive due to the charge transfer from the molecule-surface bonds to their pyridine rings. More importantly, by removing 1.1 electrons from the system, the surface polymer chain is the sole conductive channel. Furthermore, its conducting nature remains robust even under a large external electric field. Our findings open a new window for the fabrication of conductive molecular wires or polymer chains on semiconductor surfaces, and provide insights into the mechanism behind the molecular wire conductivity.
机译:这是一个长期的目标导电分子导线或线性聚合物链在传统半导体或绝缘体基板来满足持续的小型化在电子设备。表面原位聚合反应pre-absorbed分子,4-hydrazinyl-3 pyridin-4-ylmethyl / -benzaldehyde(HPyMB),产生一个导电分子导线在硅的表面上。计算表明,HPyMB分子能吸收或者在暴露Si原子通过创建超高真空扫描隧道显微镜一个氢钝化H-Si (001) 2 x 1表面沿[110]方向。放热及其生成的能量就足够了下列分子间脱水聚合反应克服活化能和之后形成的障碍分子导线表面上。因为它是分子导线机械稳定化学结合到表面上。聚合,系统变得导电molecule-surface的电荷转移债券的吡啶环。通过删除1.1电子系统,表面聚合物链是唯一的导电通道。即使在大的外部仍然强劲电场。导电分子制造的电线或在半导体表面聚合物链,提供洞察背后的机制分子导线导电率。

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