Anisotropic thermo-mechanical response of layered hexagonal boron nitride and black phosphorus: application as a simultaneous pressure and temperature sensor
Hermann Muhammad, Mohamed Mezouar, Gaston Garbarino, Tomasz Poreba,, Giorgia Confalonieri, Matteo Ceppatelli, Manuel Serrano-Ruiz, Maurizio, Peruzzini, Fr\'ed\'eric Datchi

TL;DR
This study provides detailed measurements of the anisotropic thermo-mechanical properties of hBN and bP, revealing their potential as sensors for simultaneous pressure and temperature detection in high-pressure, high-temperature environments.
Contribution
It offers precise thermal expansion and compressibility data for hBN and bP, and introduces black phosphorus as a novel sensor for pressure and temperature.
Findings
Quantified anisotropic thermo-mechanical parameters of hBN and bP.
Demonstrated black phosphorus's potential as a dual pressure-temperature sensor.
Provided high-resolution data across wide pressure and temperature ranges.
Abstract
Hexagonal boron nitride (hBN) and black phosphorus (bP) are crystalline materials that can be seen as ordered stackings of two-dimensional layers, which lead to outstanding anisotropic physical properties. The knowledge of the thermal equations of state of hBN and bP is of great interest in the field of 2D materials for a better understanding of the anisotropic thermo-mechanical properties and exfoliation mechanism of these materials. Despite several theoretical and experimental studies, important uncertainties remain in the determination of the thermoelastic parameters of hBN and bP. Here, we report accurate thermal expansion and compressibility measurements along the individual crystallographic axes, using in situ high-temperature and high-pressure high-resolution synchrotron X-ray diffraction. In particular, we have quantitatively determined the subtle variations of the in-plane…
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Taxonomy
TopicsBoron and Carbon Nanomaterials Research · 2D Materials and Applications · MXene and MAX Phase Materials
