Mixed polytype/polymorph formation and its effects on the electronic properties in InSe films grown by molecular beam epitaxy on GaAs(111)B
Maria Hilse, Justin Rodriguez, Jennifer Gray, Jinyuan Yao, Shaoqing, Ding, Derrick Shao Heng Liu, Mo Li, Joshua Young, Ying Liu, and Roman, Engel-Herbert

TL;DR
This study demonstrates the growth of InSe films with mixed polytypes on GaAs substrates via MBE, revealing how nanoscale polytype domains influence electronic properties and suggesting new pathways for stabilizing novel InSe phases.
Contribution
It provides detailed analysis of polytype coexistence in InSe films grown by MBE and links nanoscale domain structures to electronic behavior, highlighting the potential for stabilizing new polymorphs.
Findings
Multiple polytypes coexist in InSe films.
Nanoscale domains cause electronic disorder.
Electronic properties vary with polytype distribution.
Abstract
The top-down synthesis of inherently ferroelectric semiconductors and their integration with traditional material platforms have the potential to enable new low power logic devices, and to harness the bulk photoelectric effect for more efficient photovoltaic cells. InSe is a layered van der Waals compound exhibiting multiple polytypes, with semiconducting gamma-InSe revealing a non-centrosymmetric space group and showing a high carrier mobility at room temperature. Here we report the growth of InSe films on close to lattice matched semi-insulating GaAs(111)B substrates by molecular beam epitaxy (MBE). Excellent nucleation behavior resulted in the growth of smooth, single phase InSe films. The dominant polytype determined from X-ray diffraction was the targeted gamma-InSe, however Raman spectroscopy revealed spatial variations in the overall low-intensity non-centrosymmetric vibration…
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Taxonomy
TopicsSolid-state spectroscopy and crystallography · Chalcogenide Semiconductor Thin Films · Semiconductor materials and interfaces
