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通过钴掺杂提高TiO纳米颗粒的物理性能和光催化活性。

Enhancing the physical properties and photocatalytic activity of TiO nanoparticles cobalt doping.

作者信息

Safeen Akif, Safeen Kashif, Ullah Rehan, Shah Wiqar H, Zaman Quaid, Althubeiti Khaled, Al Otaibi Sattam, Rahman Nasir, Iqbal Shahid, Khan Alamzeb, Khan Aurangzeb, Khan Rajwali

机构信息

Department of Physics, University of Poonch Rawalakot AJK 12350 Pakistan.

Department of Physics, Abdul Wali Khan University Mardan 23200 KPK Pakistan.

出版信息

RSC Adv. 2022 May 25;12(25):15767-15774. doi: 10.1039/d2ra01948e. eCollection 2022 May 23.

Abstract

Cobalt-doped TiO-based diluted magnetic semiconductors were successfully synthesized using a co-precipitation method. The X-ray diffraction study of all the samples showed good crystallinity, matching the standard tetragonal anatase phase. The X-ray diffraction peaks of the cobalt-doped sample slightly shifted towards a lower angle showing the decrease in particle size and distortion in the unit cell due to cobalt incorporation in the lattice of TiO. Transmission electron microscopy showed the spherical morphology of the TiO nanoparticles, which decreased with Co-doping. The optical characteristics and band gap investigation revealed that defects and oxygen vacancies resulted in lower band gap energy and maximum absorption in the visible region. Dielectric measurements showed enhancement in the dielectric constant and AC conductivity, while the dielectric loss decreased. The enhancement in the dielectric properties was attributed to interfacial polarization and charge carrier hopping between Co and Ti ions. The magnetic properties displayed that pure TiO was diamagnetic, while Co-doped TiO showed a ferromagnetic response at 300 K. The visible light-driven photocatalytic activity showed an improvement for Co-doped TiO. Our results demonstrate that Co-doping can be used to tune the physical properties and photocatalytic activity of TiO for possible spin-based electronics, optoelectronics, and photo-degradation applications.

摘要

采用共沉淀法成功合成了钴掺杂的TiO基稀磁半导体。所有样品的X射线衍射研究表明结晶度良好,与标准四方锐钛矿相匹配。钴掺杂样品的X射线衍射峰向低角度略有偏移,表明由于钴掺入TiO晶格中,粒径减小且晶胞发生畸变。透射电子显微镜显示TiO纳米颗粒呈球形形态,随着钴掺杂而减小。光学特性和带隙研究表明,缺陷和氧空位导致带隙能量降低,在可见光区域有最大吸收。介电测量显示介电常数和交流电导率增强,而介电损耗降低。介电性能的增强归因于界面极化以及钴离子和钛离子之间的电荷载流子跳跃。磁性显示纯TiO是抗磁性的,而钴掺杂的TiO在300 K时表现出铁磁响应。可见光驱动的光催化活性表明钴掺杂的TiO有所提高。我们的结果表明,钴掺杂可用于调节TiO的物理性质和光催化活性,以用于可能的自旋基电子学、光电子学和光降解应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded8/9132072/aaa7b9c0a130/d2ra01948e-f1.jpg

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