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Anomalous phase transition behavior in hydrothermal grown layered tellurene

机译:异常的相变行为水热生长分层tellurene

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摘要

Recent studies have demonstrated that tellurene is a van der Waals (vdW) two-dimensional material with potential optoelectronic and thermoelectric applications as a result of its pseudo-one-dimensional structure and properties. Here, we report on the pressure induced anomalous phase transition of tellurium nanoribbons. The observation of clean phase transitions was made possible with high quality single crystalline Te nanoribbons that are synthesized by hydrothermal reaction growth. The results show that phase transition has a large pressure hysteresis and multiple competing phases: during compression, the phase transition is sudden and takes place from trigonal to orthorhombic phase at 6.5 GPa. Orthorhombic phase remains stable up to higher pressures (15 GPa). In contrast, phase transition is not sudden during decompression, but orthorhombic and trigonal phases co-exist between 6.9 to 3.4 GPa. Gruneisen parameter calculations further confirm the presence of co-existing phases and suggest hysteretic phase change behavior. Finally, orthorhombic to trigonal phase transition occurs at 3.4 GPa which means overall pressure hysteresis is around 3.1 GPa.
机译:最近的研究表明,tellurene就是secu * tanu减去vdW范德瓦耳斯()的二维材料与潜在的光电和热电由于其应用pseudo-one-dimensional结构和属性。在这里,我们报告的压力诱导异常碲nanoribbons相变。观察清洁相变可能与高质量的单结晶Tenanoribbons由水热合成反应的增长。转型滞后和有一个很大的压力多个竞争阶段:在压缩,突然发生相变从三角斜方晶系的阶段在6.5的绩点。斜方晶系的更高阶段保持稳定压力(GPa) 15日。不是突然在减压,但斜方晶系的和三方晶系的阶段之间的共存6.9到3.4的绩点。进一步证实共存的存在阶段和建议滞后相位变化的行为。发生在3.4绩点这意味着整体的过渡压力滞后大约是3.1的绩点。

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