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用于甲草胺缓释的阳离子纤维素改性膨润土-海藻酸盐纳米复合凝胶的研制

Development of Cationic Cellulose-Modified Bentonite-Alginate Nanocomposite Gels for Sustained Release of Alachlor.

作者信息

Wang Xiaocheng, Hou Xiaojun, Zou Peiyu, Zhang Min, Ma Lin

机构信息

School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, P. R. China.

出版信息

ACS Omega. 2022 May 31;7(23):20032-20043. doi: 10.1021/acsomega.2c01805. eCollection 2022 Jun 14.

Abstract

The nanocomposite gel prepared from nanoclay and natural polysaccharides showed a good sustained-release property. Herein, a cationic cellulose-modified bentonite-alginate nanocomposite gel was prepared and used to enhance the sustained release of alachlor. The underlying effect and mechanism of the structure of modified bentonite-alginate nanocomposite gels on the release behavior of alachlor were explored by Fourier transform infrared (FTIR) spectroscopy, X-ray diffraction (XRD), scanning electron microscopy (SEM), and thermogravimetric (TG) analysis. The results showed that the release of alachlor from the nanocomposite gels was dominated by Fickian diffusion and closely related to the adsorption capacity and permeability of the matrix. The cationic cellulose intercalated into the interlayer space of bentonite through an ion exchange reaction, which significantly enhanced the hydrophobicity of bentonite and its interaction with alachlor. The stacking aggregation of bentonite nanoplatelets and permeability of the gel network were decreased through the electrostatic interaction between cationic cellulose and alginate molecular chains, thus remarkably enhancing the sustained-release property of the nanocomposite gel. The release kinetics revealed that the release rate of alachlor from the nanocomposite gel first decreased and then increased as the content of bentonite and modified bentonite gradually increased. Also, the best sustained-release property of the nanocomposite gel was obtained at bentonite and modified bentonite additions of about 10%, under which the release time of 50% alachlor ( ) from bentonite-alginate and modified bentonite-alginate nanocomposite gels was 4.4 and 5.6 times longer than the release time from pure alginate gels, respectively.

摘要

由纳米黏土和天然多糖制备的纳米复合凝胶具有良好的缓释性能。在此,制备了一种阳离子纤维素改性膨润土-海藻酸钠纳米复合凝胶,并用于提高甲草胺的缓释性能。通过傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)、扫描电子显微镜(SEM)和热重分析(TG)等方法,探讨了改性膨润土-海藻酸钠纳米复合凝胶的结构对甲草胺释放行为的潜在影响及作用机制。结果表明,甲草胺从纳米复合凝胶中的释放以菲克扩散为主,且与基质的吸附容量和渗透性密切相关。阳离子纤维素通过离子交换反应插入膨润土的层间空间,显著增强了膨润土的疏水性及其与甲草胺的相互作用。阳离子纤维素与海藻酸钠分子链之间的静电相互作用降低了膨润土纳米片层的堆积聚集和凝胶网络的渗透性,从而显著提高了纳米复合凝胶的缓释性能。释放动力学表明,随着膨润土和改性膨润土含量的逐渐增加,甲草胺从纳米复合凝胶中的释放速率先降低后升高。此外,当膨润土和改性膨润土的添加量约为10%时,纳米复合凝胶获得了最佳的缓释性能,在此条件下,膨润土-海藻酸钠和改性膨润土-海藻酸钠纳米复合凝胶中50%甲草胺( )的释放时间分别比纯海藻酸钠凝胶的释放时间长4.4倍和5.6倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0ed/9202269/68636a888f26/ao2c01805_0002.jpg

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