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氦离子束诱导的层状铁电半导体中的化学变化

Chemical Changes in Layered Ferroelectric Semiconductors Induced by Helium Ion Beam.

作者信息

Belianinov Alex, Burch Matthew J, Hysmith Holland E, Ievlev Anton V, Iberi Vighter, Susner Michael A, McGuire Michael A, Maksymovych Peter, Chyasnavichyus Marius, Jesse Stephen, Ovchinnikova Olga S

机构信息

The Institute for Functional Imaging of Materials, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.

Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.

出版信息

Sci Rep. 2017 Nov 30;7(1):16619. doi: 10.1038/s41598-017-16949-3.

Abstract

Multi-material systems interfaced with 2D materials, or entirely new 3D heterostructures can lead to the next generation multi-functional device architectures. Physical and chemical control at the nanoscale is also necessary tailor these materials as functional structures approach physical limit. 2D transition metal thiophosphates (TPS), with a general formulae CuInPS have shown ferroelectric polarization behavior with a T above the room temperature, making them attractive candidates for designing both: chemical and physical properties. Our previous studies have demonstrated that ferroic order persists on the surface, and that spinoidal decomposition of ferroelectric and paraelectric phases occurs in non-stoichiometric Cu/In ratio formulations. Here, we discuss the chemical changes induced by helium ion irradiation. We explore the TPS compound library with varying Cu/In ratio, using Helium Ion Microscopy, Atomic Force Microscopy (AFM), and Time of Flight-Secondary Ion Mass Spectrometry (ToF-SIMS). We correlate physical nano- and micro- structures to the helium ion dose, as well as chemical signatures of copper, oxygen and sulfur. Our ToF-SIMS results show that He ion irradiation leads to oxygen penetration into the irradiated areas, and diffuses along the Cu-rich domains to the extent of the stopping distance of the helium ions.

摘要

与二维材料相连接的多材料系统,或者全新的三维异质结构能够引领下一代多功能器件架构的发展。随着功能结构接近物理极限,在纳米尺度上进行物理和化学控制对于定制这些材料而言也是必要的。通式为CuInPS的二维过渡金属硫代磷酸盐(TPS)在高于室温的温度下表现出铁电极化行为,这使其成为设计化学和物理性质的极具吸引力的候选材料。我们之前的研究表明,铁性有序在表面持续存在,并且在非化学计量比的铜/铟比例配方中会发生铁电相和顺电相的旋节线分解。在此,我们讨论氦离子辐照引起的化学变化。我们使用氦离子显微镜、原子力显微镜(AFM)和飞行时间二次离子质谱(ToF-SIMS)来探索具有不同铜/铟比例的TPS化合物库。我们将物理纳米和微观结构与氦离子剂量以及铜、氧和硫的化学特征相关联。我们的ToF-SIMS结果表明,氦离子辐照导致氧渗透到辐照区域,并沿着富铜区域扩散至氦离子的射程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/577f/5709364/e836da49f2b3/41598_2017_16949_Fig1_HTML.jpg

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