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通过电喷雾法轻松包封氰基丙烯酸酯基生物粘合剂并研究工艺参数。

Facile encapsulation of cyanoacrylate-based bioadhesive by electrospray method and investigation of the process parameters.

作者信息

Aminoroaya Alireza, Khorasani Saied Nouri, Bagheri Rouholah, Talebi Zahra, Malekkhouyan Roya, Das Oisik, Neisiany Rasoul Esmaeely

机构信息

Department of Chemical Engineering, Isfahan University of Technology, Isfahan, 84156-83111, Iran.

Department of Chemical Engineering and Materials Science, Michigan State University, 428 S. Shaw Lane, East Lansing, MI, 48824, USA.

出版信息

Sci Rep. 2024 Mar 5;14(1):5389. doi: 10.1038/s41598-024-56008-2.

Abstract

Polymer microcapsules containing cyanoacrylates have represented a promising option to develop self-healing biomaterials. This study aims to develop an electrospray method for the preparation of capsules using poly(methyl methacrylate) (PMMA) as the encapsulant and ethyl 2-cyanoacrylate (EC) as the encapsulate. It also aims to study the effect of the electrospray process parameters on the size and morphology of the capsules. The capsules were characterized using Fourier-transform infrared (FTIR) spectroscopy, thermogravimetric analysis (TGA), and field-emission scanning electron microscopy (FE-SEM). Moreover, the effects of electrospray process parameters on the size were investigated by Taguchi experimental design. FTIR and TGA approved the presence of both PMMA and EC without further reaction. FE-SEM micrograph demonstrated that an appropriate choice of solvents, utilizing an appropriate PMMA:EC ratio and sufficient PMMA concentration are critical factors to produce capsules dominantly with an intact and spherical morphology. Utilizing various flow rates (0.3-0.5 ml/h) and applied voltage (18-26 kV), capsules were obtained with a 600-1000 nm size range. At constantly applied voltages, the increase in flow rate increased the capsule size up to 40% (ANOVA, p ≤ 0.05), while at constant flow rates, the increase in applied voltage reduced the average capsule size by 3.4-26% (ANOVA, p ≤ 0.05). The results from the Taguchi design represented the significance of solution flow rate, applied voltage, and solution concentration. It was shown that the most effective parameter on the size of capsules is flow rate. This research demonstrated that electrospray can be utilized as a convenient method for the preparation of sub-micron PMMA capsules containing EC. Furthermore, the morphology of the capsules is dominated by solvents, PMMA concentration, and PMMA:EC ratio, while the average size of the capsules can be altered by adjusting the flow rate and applied voltage of the electrospray process.

摘要

含有氰基丙烯酸酯的聚合物微胶囊是开发自愈生物材料的一个有前景的选择。本研究旨在开发一种电喷雾方法,以聚甲基丙烯酸甲酯(PMMA)为包封剂、2-氰基丙烯酸乙酯(EC)为被包封物来制备微胶囊。该研究还旨在研究电喷雾工艺参数对微胶囊尺寸和形态的影响。使用傅里叶变换红外(FTIR)光谱、热重分析(TGA)和场发射扫描电子显微镜(FE-SEM)对微胶囊进行了表征。此外,通过田口实验设计研究了电喷雾工艺参数对尺寸的影响。FTIR和TGA证实了PMMA和EC的存在且未发生进一步反应。FE-SEM显微照片表明,适当选择溶剂、采用合适的PMMA:EC比例以及足够的PMMA浓度是制备主要具有完整球形形态微胶囊的关键因素。利用各种流速(0.3 - 0.5毫升/小时)和施加电压(18 - 26千伏),获得了尺寸范围为600 - 1000纳米的微胶囊。在恒定施加电压下,流速增加使微胶囊尺寸增大了40%(方差分析,p≤0.05),而在恒定流速下,施加电压增加使微胶囊平均尺寸减小了3.4 - 26%(方差分析,p≤0.05)。田口设计的结果表明了溶液流速、施加电压和溶液浓度的重要性。结果表明,对微胶囊尺寸最有效的参数是流速。本研究证明电喷雾可作为一种制备含EC的亚微米级PMMA微胶囊的简便方法。此外,微胶囊的形态受溶剂、PMMA浓度和PMMA:EC比例的主导,而微胶囊的平均尺寸可通过调节电喷雾工艺的流速和施加电压来改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8023/10914717/f9e72e6af2de/41598_2024_56008_Fig1_HTML.jpg

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