简单热退火辅助直接合成CuO纳米颗粒聚乙烯醇膜及其光学性能研究

Ram Sevak Singh, R. D. Patidar, Ashutosh Kumar Singh, Kalim Deshmukh, K. Thakur, A. Gautam
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引用次数: 1

摘要

本文报道了一种简单的热退火辅助直接合成方法,制备了聚乙烯醇(PVA)薄膜中的氧化铜(CuO)纳米颗粒,并对其光学性质进行了系统的研究。在PVA基体中加入不同重量百分比的CuO,制备CuO - PVA纳米复合膜。采用扫描电镜(SEM)、X射线衍射(XRD)、紫外可见光谱(UV - visible spectroscopy)和光致发光光谱(photoluminescence spectroscopy)对制备的薄膜进行了研究。XRD证实PVA中形成了结晶状的CuO纳米颗粒,SEM分析表明PVA中形成了均匀分布的球形纳米颗粒。研究结果表明,在温和温度下进行热退火对提高纳米复合薄膜的结晶度和光学性能起着至关重要的作用。与PVA相比,CuO‐PVA纳米复合材料在较低波长区域具有新的吸收带,具有更好的吸收性能。300 nm激发的纳米复合材料在365 nm处表现出较强的光致发光(PL),且发光强度随PVA基体中CuO浓度的增加而增加。相比之下,425 nm激发的样品在电磁波谱可见区显示550 nm的绿色发射。CuO - PVA纳米复合材料中的PL可能是由于材料中受体和给体缺陷相关的转变而产生的。该研究为制备具有优异光学性能的CuO - PVA纳米复合材料开辟了一条新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simple Thermal Annealing‐Assisted Direct Synthesis and Optical Property Study of CuO Nanoparticles Incorporated Polyvinyl Alcohol Films
This article reports a simple thermal annealing‐assisted direct synthesis method to prepare copper oxide (CuO) nanoparticles incorporated in polyvinyl alcohol (PVA) films and a systematic study of their optical properties. CuO‐PVA nanocomposite films are prepared with a different weight percentage of CuO in the PVA matrix. Scanning electron microscopy (SEM), X‐ray diffraction (XRD), UV‐visible spectroscopy, and photoluminescence spectroscopy are employed to study the prepared films. XRD confirms the formation of crystalline CuO nanoparticles in PVA, while the SEM analysis shows uniformly distributed spherical nanoparticles in PVA. The findings show that thermal annealing at a mild temperature plays a crucial role in improving the crystallinity and optical properties of the nanocomposite film. In comparison to PVA, CuO‐PVA nanocomposite exhibits improved absorption with a new absorption band in the lower wavelength region. The nanocomposite samples excited with 300 nm show intense photoluminescence (PL) at 365 nm and an increase of PL intensity with CuO concentration in the PVA matrix. In contrast, samples excited with 425 nm show green emission at 550 nm in the visible region of the electromagnetic spectrum. The PL in CuO‐PVA nanocomposites can be originated due to the transitions associated with acceptor and donor defects in the material. The study opens up a new route to fabricate CuO‐PVA nanocomposites with superior optical properties.
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