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首页> 外文期刊>Nanoscale >Configuration-dependent anti-ambipolar van der Waals p-n heterostructures based on pentacene single crystal and MoS2
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Configuration-dependent anti-ambipolar van der Waals p-n heterostructures based on pentacene single crystal and MoS2

机译:外力anti-ambipolar范德瓦尔斯pn基于并五苯的异质结构单晶和二硫化钼

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摘要

Recently, van der Waals heterostructures (vdWHs) have trigged intensive interest due to their novel electronic and optoelectronic properties. The vdWHs could be achieved by stacking two dimensional layered materials (2DLMs) on top of another and vertically kept by van der Waals forces. Furthermore, organic semiconductors are also known to interact via van der Waals forces, which offer an alternative for the fabrication of organic-inorganic p-n vdWHs. However, the performances of organic-inorganic p-n vdWHs produced so far are rather poor, owing to the unmatched electrical property between the 2DLMs and organic polycrystalline films. To make improvements in such novel heterostructure architectures, here we adopt high quality organic single crystals instead of polycrystalline films to construct a pentacene/MoS2 p-n vdWH. The vdWHs show a much higher current density and better anti-ambipolar characteristics with a highest transconductance of 211 nS. Moreover, device configuration-dependent transfer characteristics are demonstrated and a mechanism of a gate bias modulated vertical space charge zone existing at the vertical p-n vdWHs interface is proposed. These findings provide a new route to optimize the organic-inorganic p-n vdWHs and a guideline for studying the intrinsic properties of vdWHs.
机译:最近,范德瓦耳斯异质结构(vdWHs)由于他们有三角密集的利息新颖的电子和光电特性。vdWHs可以通过叠加两个2维层状材料(dlm)之上另一个和垂直方向上由范德瓦耳斯部队。也通过范德华力相互作用,提供一个替代的制造有机-无机pn vdWHs。表演的有机-无机pn vdWHs生产到目前为止相当差,由于2 dlm之间无与伦比的电性质和有机多晶薄膜。在这种新型异质结构改进架构,这里我们采用高质量的有机食品单晶多晶薄膜构建并五苯/二硫化钼pn vdWH。表现出更高的电流密度和更好的anti-ambipolar最高的特点跨导211 nS。外力传递特性演示和栅偏压的机制吗调制垂直空间电荷区存在提出了垂直pn vdWHs接口。这些发现提供了一个优化的新路线有机-无机的pn vdWHs和指南为研究vdWHs的内在属性。

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