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通过人工压力梯度制造的横向异质结构

Lateral Heterostructures Fabricated via Artificial Pressure Gradient.

作者信息

Li Chen, Liu Ke, Yan Huacai, Zhang Long, Jiang Dequan, Wen Ting, Yue Binbin, Wang Yonggang

机构信息

School of Materials Science and Engineering, Peking University, Beijing, 100871, China.

Center for High Pressure Science and Technology Advanced Research (HPSTAR), Beijing, 100193, China.

出版信息

Adv Mater. 2024 Nov;36(47):e2407922. doi: 10.1002/adma.202407922. Epub 2024 Sep 30.

Abstract

Hydrostatic conditions are generally pursued in high-pressure research, maintained to prevent the intrinsic pressure gradient on the culets of diamond anvil cells (DACs) from introducing heterogeneity to the structure and physical properties of the regulated materials. Here, a pioneering route to fabricate lateral heterostructures is proposed via artificial pressure gradients intentionally designed in DACs. Under the tailored pressure gradients, different structural phases emerge in distinct parts of the material, resulting in the formation of heterostructures. Harnessing the polymorphic transition nature of violet phosphorus under high pressure, violet/blue and violet/black phosphorus lateral heterostructures with different electrical properties have been successfully prepared by the pressure gradient method. This achievement highlights the potential of artificial pressure gradients as a portable and universal strategy for the fabrication of lateral heterostructures, shedding new light on the preparation and regulation of lateral heterostructures across a wider range of materials.

摘要

在高压研究中通常追求静水压力条件,维持这种条件是为了防止金刚石对顶砧(DAC)压砧上的固有压力梯度给被调控材料的结构和物理性质引入不均匀性。在此,提出了一种通过在DAC中有意设计的人工压力梯度来制造横向异质结构的开创性途径。在定制的压力梯度下,材料的不同部分会出现不同的结构相,从而导致异质结构的形成。利用高压下紫磷的多晶型转变特性,通过压力梯度法成功制备了具有不同电学性质的紫/蓝和紫/黑磷横向异质结构。这一成果突出了人工压力梯度作为一种便捷且通用的制造横向异质结构策略的潜力,为更广泛材料的横向异质结构的制备和调控提供了新的思路。

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