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首页> 外文期刊>Journal of Electronic Materials >Thermal Annealing Influence on the Properties of Heterostructure Based on 2at.%Eu Doped SnO2 and Cu1.8S
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Thermal Annealing Influence on the Properties of Heterostructure Based on 2at.%Eu Doped SnO2 and Cu1.8S

机译:基于2AT的渗透性对异质结构性能的热退火。%Eu掺杂SnO2和Cu1.8s

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摘要

Aiming at optoelectronic applications, a heterostructure based on Eu-doped tin oxide (SnO2) and copper sulfide (Cu2-xS) is built. SnO2 thin films doped with 2at.% Eu were obtained by the sol-gel dip-coating and spin-coating techniques, whereas the Cu2-xS film was obtained by resistive evaporation. Samples were prepared using three distinct thermal annealing temperatures of the SnO2 bottom layer: 150 degrees C, 250 degrees C and 500 degrees C. Transmittance and absorption spectra of the heterostructure shows high transparency in the visible to near infrared range (600-1800nm), and considering the dominance of SnO2 on light absorption, it was possible to evaluate the sample indirect bandgap around 3.5eV, independently of the thermal annealing temperature. Cyclic voltammetry and impedance spectroscopy, in conjunction with calculation of the hysteresis index, show that the heterostructure presents a behavior highly capacitive, and the higher annealing temperature leads to higher capacitance at low frequencies, similar to the observed qualitative behavior of supercapacitive devices. Besides, the sample with the SnO2 bottom layer annealed at 500 degrees C yielded a higher current density.
机译:针对光电应用,基于氧化物Eu掺杂锡(SnO 2)和硫化铜(铜-XS)的异质结构构建。 SnO2薄膜掺杂有2原子%Eu的是由溶胶 - 凝胶浸涂和旋涂技术获得,而通过电阻蒸发获得的铜-XS膜。使用的SnO2底层的三个不同的热退火温度来制备样品:150℃,250℃和500℃下透射率和在可见光至近红外范围的异质结构显示出高透明性的吸收光谱(600-1800nm),和考虑的SnO 2上的光吸收的主导地位,这是可能评价周围3.5eV样品间接带隙,独立的热退火温度。循环伏安法和阻抗谱,与滞后指数计算结合,表明该异质结构呈现行为高电容,并且较高退火温度导致更高的电容在低频率,类似于超级电容设备的所观察到的定性行为。此外,在500度的退火的SnO 2底层样品C得到更高的电流密度。

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