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Piezoelectric and opto-electrical properties of silver-doped ZnO nanorods synthesized by low temperature aqueous chemical method

机译:低温水化学法合成掺杂银的ZnO纳米棒的压电和光电性能

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摘要

In this paper, we have synthesized Zn1-xAgxO (x = 0, 0.03, 0.06, and 0.09) nanorods (NRs) via the hydrothermal method at low temperature on silicon substrate. The characterization and comparison between the different Zn1-xAgxO samples, indicated that an increasing Ag concentration from x = 0 to a maximum of x = 0.09; All samples show a preferred orientation of (002) direction with no observable change of morphology. As the quantity of the Ag dopant was changed, the transmittances, as well as the optical band gap were decreased. X-ray photoelectron spectroscopy data clearly indicate the presence of Ag in ZnO crystal lattice. A nanoindentation-based technique was used to measure the effective piezo-response of different concentrations of Ag for both direct and converse effects. The value of the piezoelectric coefficient (d(33)) as well as the piezo potential generated from the ZnO NRs and Zn1-xAgxO NRs was found to decrease with the increase of Ag fraction. The finding in this investigation reveals that Ag doped ZnO is not suitable for piezoelectric energy harvesting devices.
机译:本文通过低温水热法在硅衬底上合成了Zn1-xAgxO(x = 0、0.03、0.06和0.09)纳米棒(NRs)。不同Zn1-xAgxO样品之间的表征和比较表明,Ag浓度从x = 0增加到最大x = 0.09;所有样品均表现出优选的(002)方向,并且没有可观察到的形态变化。随着Ag掺杂剂的量的改变,透射率以及光学带隙减小。 X射线光电子能谱数据清楚地表明ZnO晶格中存在Ag。基于纳米压痕的技术用于测量不同浓度的银对直接和相反作用的有效压电响应。发现压电系数(d(33))的值以及ZnO NRs和Zn1-xAgxO NRs产生的压电势随Ag分数的增加而降低。在这项研究中的发现表明,掺杂Ag的ZnO不适合压电能量收集设备。

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