首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Multifunctional Applications of a Novel Ru-Metal Mixed PVAL Flexible Composite for Limiting Absorption and Varistor: Synthesis, Optical, and Electrical Characterization
【24h】

Multifunctional Applications of a Novel Ru-Metal Mixed PVAL Flexible Composite for Limiting Absorption and Varistor: Synthesis, Optical, and Electrical Characterization

机译:一种新型Ru-Metal混合PVAL柔性复合材料的多功能应用,用于限制吸收和变阻器:合成,光学和电学特性

获取原文
获取原文并翻译 | 示例
           

摘要

Composite films with vital multifunctional properties for optoelectronic and varistor applications were prepared via casting procedures. Herein, the present novel composites are based on semi-crystalline polyvinyl alcohol, PVAL, mixed with different contents of Ruthenium-metal. The structure of the films has been fully identified through Fourier Transform (FT-IR), diffraction analysis of X-ray (XRD), and microscopy of scanning electron (SEM). They confirm significant interactions between Ru-metal and PVAL, which leads to a decrease in polymer crystallinity. Ru-metal's impact on the optical performance has been studied using spectroscopy of UV-Vis-NIR, whereas the applicability of these films for varistor devices was investigated by measuring the electrical conductivity andI-Vcurves. The crystallite length (D), the spacing of interplanar (d), dislocation density (delta), internal strain (epsilon), and separation of interchain (R) parameters were calculated from the measurement of XRD. The active absorption band in FTIR spectra shows a significant interaction of Ru-metal with the PVAL via OH groups. The cluster of metal on the composite surface increases with the doping concentration, as illustrated via SEM. Optical bandgaps (E-gi&E-gd) are estimated from Tauc and absorption fitting (ASF) are nearly equal and reduced with ruthenium addition. Limiting optical absorption (LOA) performance tested using two laser sources showing the reduction of optical transmission via high doping concentration films. With rising Ru-metal content and frequency, the dielectric and AC conductivity tends to be enhanced. Also, theI-Vcharacteristic was improved, and the conductivity follows the fitting of Jonscher. The collected result reflects the consideration of flexible Ru/PVAL as a promising polymeric film in varistor, micro-optics, optical fibers, and CUT-OFF laser applications.
机译:通过铸造方法制备具有用于光电和压敏电阻应用的重要多功能性能的复合薄膜。这里,本新的新型复合材料基于半结晶聚乙烯醇,PVAL,与钌 - 金属的不同含量混合。通过傅里叶变换(FT-IR),X射线(XRD)的衍射分析和扫描电子(SEM)的显微镜完全识别薄膜的结构。它们确认了Ru-Metal和PVAl之间的显着相互作用,这导致聚合物结晶度降低。使用UV-Vis-Nir的光谱研究了Ru-Metal对光学性能的影响,而通过测量电导率和vcurves,研究了用于压敏电阻器件的这些膜的适用性。微晶长度(D),血管跨越式(D),位错密度(DELTA),内菌株(ε)和间歇(R)参数的分离的间距是根据XRD的测量计算的。 FTIR光谱中的活性吸收带显示Ru-金属与PVAL的显着相互作用通过OH基团。复合表面上的金属簇随掺杂浓度的增加而增加,如通过SEM所示。从TaUC加入估计光带隙(E-GI和E-GD)估计,吸收配件(ASF)几乎相等,并用钌添加减少。限制光学吸收(LOA)性能测试使用两个激光源测试,显示通过高掺杂浓度膜的光传输的降低。随着RU-金属含量和频率上升,电介质和交流电导率趋于增强。此外,Thei-Vecracteratigative得到了改善,电导率遵循Jonscher的配合。收集的结果反映了柔性Ru / PVAL的考虑在压敏电阻,微光学,光纤和截止激光应用中的承诺聚合物膜。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号