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改善用于柔性电子器件的羧甲基纤维素/淀粉/氧化硒纳米复合材料的结构、光学和电学性能。

Improving the structural, optical, and electrical properties of carboxymethyl cellulose/starch/selenium oxide nanocomposites for flexible electronic devices.

作者信息

El Sayed Adel M, Alanazi Tarek I

机构信息

Physics Department, Faculty of Science, Fayoum University, El-Fayoum, 63514, Egypt.

Department of Physics, College of Science, Northern Border University, 73222, Arar, Saudi Arabia.

出版信息

Sci Rep. 2024 Feb 10;14(1):3398. doi: 10.1038/s41598-024-53268-w.

DOI:10.1038/s41598-024-53268-w
PMID:38336969
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10858174/
Abstract

Nanocomposites based on biopolymers are interesting materials owing to their multifunctionality and ease of preparation. In this study, the solution casting method was used to mix selenium oxide nanoparticles (SeO NP) made by a solvothermal method into a bio-blend of carboxymethyl cellulose and starch (CMC/St). XRD analysis showed that SeO NP increased the amorphous portion inside the blend. HR-TEM revealed the spherical morphology of these NP with an average diameter of 16.88 nm. The FE-SEM indicated a satisfactory uniform distribution and homogeneity in the surface morphology of the films. FTIR confirmed the interaction between SeO and the blend functional groups. The films preserved good transmission after doping, and their direct and indirect band gaps decreased. The refractive index, absorption index, optical conductivity, and other dispersion parameters were improved after SeO loading. The DC conductivity of the blend is in the range of 3.8 × 10 to 5.6 × 10 S/m and improved after loading SeO NP. The IV characteristic curves in the temperature range of 300-415 K were studied to figure out the conduction mechanism in the CMC/St/SeO composites. Because the optical and electrical properties improved, these nanocomposites could be used for coatings and other things like waveguides, photovoltaic cells, and light-emitting diodes.

摘要

基于生物聚合物的纳米复合材料因其多功能性和易于制备而成为有趣的材料。在本研究中,采用溶液浇铸法将通过溶剂热法制备的氧化硒纳米颗粒(SeO NP)混入羧甲基纤维素和淀粉的生物共混物(CMC/St)中。XRD分析表明,SeO NP增加了共混物内部的非晶部分。高分辨率透射电子显微镜(HR-TEM)揭示了这些纳米颗粒的球形形态,平均直径为16.88纳米。场发射扫描电子显微镜(FE-SEM)表明薄膜表面形态具有令人满意的均匀分布和均质性。傅里叶变换红外光谱(FTIR)证实了SeO与共混物官能团之间的相互作用。掺杂后薄膜保持了良好的透射率,其直接和间接带隙减小。负载SeO后,折射率、吸收指数、光导率和其他色散参数得到改善。共混物的直流电导率在3.8×10至5.6×10 S/m范围内,负载SeO NP后有所提高。研究了300-415 K温度范围内的IV特性曲线,以确定CMC/St/SeO复合材料中的传导机制。由于光学和电学性能得到改善,这些纳米复合材料可用于涂层以及波导、光伏电池和发光二极管等其他领域。

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