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Temperature-dependent Raman spectroscopy and sensor applications of PtSe2 nanosheets synthesized by wet chemistry

机译:湿化学合成的PtSe2纳米片的温度依赖性拉曼光谱和传感器应用

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摘要

We report on a wet chemistry method used to grow PtSe2 nanosheets followed by thermal annealing. The SEM and TEM analysis confirms the formation of PtSe2 nanosheets. Furthermore, XRD, Raman, XPS and SAED patterns were used to analyze the crystal structure and to confirm the formation of the PtSe2 phase. The temperature-dependent Raman spectroscopy investigations were carried out on PtSe2 nanosheets deposited on Si substrates in the temperature range 100–506 K. The shifts in Raman active Eg and A1g modes as a function of temperature were monitored. The temperature coefficient for both modes was calculated and was found to match well with the reported 2D transition metal dichalcogenides. A PtSe2 nanosheet-based sensor device was tested for its applicability as a humidity sensor and photodetector. The humidity sensor based on PtSe2 nanosheets showed an excellent recovery time of ≈5 s, indicating the great potential of PtSe2 for future sensor devices.
机译:我们报告了一种湿化学方法,用于生长PtSe2纳米片,然后进行热退火。 SEM和TEM分析证实了PtSe2纳米片的形成。此外,使用XRD,拉曼,XPS和SAED图案分析晶体结构并确认PtSe2相的形成。温度依赖性拉曼光谱研究是在100-506 K的温度范围内对沉积在Si衬底上的PtSe2纳米片进行的。监测了拉曼活性Eg和Algg模式随温度的变化。计算了两种模式的温度系数,发现它们与报道的2D过渡金属二卤化金属很好地匹配。测试了基于PtSe2纳米片的传感器设备作为湿度传感器和光电探测器的适用性。基于PtSe2纳米片的湿度传感器显示了约5 s的极佳恢复时间,表明PtSe2对于未来的传感器设备具有巨大的潜力。

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