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用于医疗应用的激光烧蚀大麻秸秆获得的纳米生物复合材料及其在新型太阳能电池中的潜在组件。

Nano-Biocomposite Materials Obtained from Laser Ablation of Hemp Stalks for Medical Applications and Potential Component in New Solar Cells.

机构信息

Atmosphere Optics, Spectroscopy and Laser Laboratory (LOASL), Faculty of Physics, Alexandru Ioan Cuza University of Iasi, 11 Carol I Bld., 700506 Iasi, Romania.

Laboratory of Applied Meteorology and Climatology, RECENT AIR, Research Center with Integrated Techniques for Atmospheric Aerosol Investigation in Romania, Alexandru Ioan Cuza University of Iasi, A Building, Physics, 11 Carol I, 700506 Iasi, Romania.

出版信息

Int J Mol Sci. 2023 Feb 15;24(4):3892. doi: 10.3390/ijms24043892.

Abstract

The study in this paper presents a new material that was produced as a thin film by the Pulsed Laser Deposition technique (PLD) using a 532 nm wavelength and 150 mJ/pulse laser beam on the hemp stalk as target. The analyses performed by spectroscopic techniques (Fourier Transform Infrared Spectroscopy-FTIR, Laser-Induced Fluorescence Spectroscopy-LIF, Scanning Electron Microscopy coupled with Energy Dispersive X-ray-SEM-EDX, Atomic Force Microscopy-AFM and optical microscope) evidenced that a biocomposite consisting of lignin, cellulose, hemicellulose, waxes, sugars and phenolyc acids -coumaric and ferulic, similar to the hemp stalk target was obtained. Nanostructures and aggregated nanostructures of 100 nm to 1.5 μm size were evidenced. Good mechanical strength and its adherence to the substrate were also noticed. It was noticed that the content in calcium and magnesium increased compared to that of the target from 1.5% to 2.2% and from 0.2% to 1.2%, respectively. The COMSOL numerical simulation provided information on the thermal conditions that explain phenomena and processes during laser ablation such as C-C pyrolisis and enhanced deposition of calcium in the lignin polymer matrix. The good gas and water sorption properties due to the free OH groups and to the microporous structure of the new biocomposite components recommends it for studies for functional applications in medicine for drug delivery devices, filters in dialysis and for gas and liquid sensors. Functional applications in solar cells windows are also possible due to the conjugated structures of the contained polymers.

摘要

本文的研究提出了一种新材料,该材料是通过脉冲激光沉积技术(PLD)在大麻秆作为靶材的情况下,用 532nm 波长和 150mJ/脉冲激光束产生的薄膜。通过光谱技术(傅里叶变换红外光谱-FTIR、激光诱导荧光光谱-LIF、扫描电子显微镜与能量色散 X 射线-SEM-EDX、原子力显微镜-AFM 和光学显微镜)进行的分析表明,获得了一种由木质素、纤维素、半纤维素、蜡、糖和酚酸(香豆酸和阿魏酸)组成的生物复合材料,类似于大麻秆靶材。还证明了 100nm 到 1.5μm 尺寸的纳米结构和聚集纳米结构。还注意到机械强度良好,并且与基底的粘附性也很好。与靶材相比,注意到钙和镁的含量分别从 1.5%增加到 2.2%,从 0.2%增加到 1.2%。COMSOL 数值模拟提供了有关热条件的信息,这些信息解释了激光烧蚀过程中的现象和过程,如 C-C 热解和钙在木质素聚合物基质中的增强沉积。由于新生物复合材料成分中的游离 OH 基团和微孔结构,其具有良好的气体和水分吸附性能,因此推荐用于药物输送装置、透析过滤器以及气体和液体传感器的医学功能应用研究。由于聚合物中包含的共轭结构,也可能在太阳能电池窗中进行功能应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19b7/9961592/13828dd5ae72/ijms-24-03892-g001.jpg

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