Lattice Transformation from 2-D to Quasi 1-D and Phonon Properties of Exfoliated ZrS2 and ZrSe2
Awsaf Alsulami, Majed Alharbi, Fadhel Alsaffar, Olaiyan Alolaiyan,, Ghadeer Aljalham, Shahad Albawardi, Sarah Alsaggaf, Faisal Alamri, Thamer A., Tabbakh, and Moh R. Amer

TL;DR
This study explores the lattice transformation from 2D to quasi-1D in ZrS2 and ZrSe2 nanosheets, revealing distinctive phonon behaviors and thermal properties relevant for thermoelectric applications.
Contribution
It uncovers a major lattice transformation from 2D to quasi-1D in ZrX2 nanosheets and characterizes their phonon and thermal properties using Raman spectroscopy and thermal measurements.
Findings
Distinct Raman signatures for 2D and quasi-1D ZrX2 nanosheets.
Quasi-1D ZrX2 exhibits phonon confinement and lower thermal conductance.
Most phonon modes show linear temperature dependence, with some exceptions.
Abstract
We investigate the thermal properties of these Zirconium based materials using confocal Raman spectroscopy. We observed 2 different and distinctive Raman signatures for exfoliated ZrX2 (where X = S or Se). These Raman modes generally depend on the shape of the exfoliated nanosheets, regardless of the incident laser polarization. These 2 shapes are divided into 2D- ZrX2 and quasi 1D- ZrX2. For 2D- ZrX2, Raman modes are in alignment with those reported in literature. However, for quasi 1D-ZrX2, we show that Raman modes are identical to exfoliated ZrX3 nanosheets, indicating a major lattice transformation from 2D to quasi-1D. We also measure thermal properties of each resonant Raman mode for each ZrX2 shape. Based on our measurements, most Raman modes exhibit a linear downshift dependence with temperature. However, for ZrS2, we see an upshift (blueshift) with temperature for A1g mode,…
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Taxonomy
TopicsMachine Learning in Materials Science · 2D Materials and Applications · Thermal properties of materials
