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Magnetic Response Dependence of ZnO Based Thin Films on Ag Doping and Processing Architecture

机译:ZnO基薄膜对AG掺杂和加工架构的磁响应依赖性

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摘要

Multifunctional and multiresponsive thin films are playing an increasing role in modern technology. This work reports a study on the magnetic properties of ZnO and Ag-doped ZnO semiconducting films prepared with a zigzag-like columnar architecture and their correlation with the processing conditions. The films were grown through Glancing Angle Deposition (GLAD) co-sputtering technique to improve the induced ferromagnetism at room temperature. Structural and morphological characterizations have been performed and correlated with the paramagnetic resonance measurements, which demonstrate the existence of vacancies in both as-cast and annealed films. The magnetic measurements reveal changes in the magnetic order of both ZnO and Ag-doped ZnO films with increasing temperature, showing an evolution from a paramagnetic (at low temperature) to a diamagnetic behavior (at room temperature). Further, the room temperature magnetic properties indicate a ferromagnetic order even for the un-doped ZnO film. The results open new perspectives for the development of multifunctional ZnO semiconductors, the GLAD co-sputtering technique enables the control of the magnetic response, even in the un-doped semiconductor materials.
机译:多功能和多型薄膜在现代技术中发挥着越来越大的作用。该工作报告了用Z字形样柱式架构制备的ZnO和Ag掺杂ZnO半导体膜的磁性及其与加工条件相关的研究。通过透明角沉积(高兴)共溅射技术而生长薄膜,以在室温下改善诱导的铁磁性。已经进行了结构和形态学特性和与顺磁共振测量相关的,这证明了两种浇铸和退火膜中的空位存在。磁测量揭示了ZnO和Ag掺杂ZnO膜的磁气变化,随着温度的增加,显示从顺磁性(低温)到抗磁性行为(在室温下)的演变。此外,室温磁性特性均匀表示即使对于未掺杂的ZnO膜也是一种铁磁性阶。结果开放了开发多功能ZnO半导体的新观点,即使在未掺杂的半导体材料中,高兴的共溅射技术也能控制磁响应。

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