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超声处理对纤维素纳米晶体的作用及其在卡拉胶生物复合材料中的增强作用。

DES-ultrasonication treatment of cellulose nanocrystals and the reinforcement in carrageenan biocomposite.

机构信息

Faculty of Chemical and Process Engineering Technology, Universiti Malaysia Pahang Al-Sultan Abdullah, 26300 Kuantan, Pahang, Malaysia.

Faculty of Chemical and Process Engineering Technology, Universiti Malaysia Pahang Al-Sultan Abdullah, 26300 Kuantan, Pahang, Malaysia; Centre for Research in Advanced Fluid and Processes, Universiti Malaysia Pahang Al-Sultan Abdullah, 26300 Kuantan, Pahang, Malaysia.

出版信息

Int J Biol Macromol. 2024 Jun;270(Pt 2):132385. doi: 10.1016/j.ijbiomac.2024.132385. Epub 2024 May 15.

Abstract

CNCs are intensively studied to reinforce biocomposites. However, it remains a challenge to homogeneously disperse the CNC in biocomposites for a smooth film surface. Mechanochemical treatment via ultrasonication in deep eutectic solvent (DES) generated a stable dispersion of CNC before incorporation into carrageenan biocomposite. Shifted peaks of choline chloride (ChCl) methylene groups to 3.95-3.98 ppm in H NMR indicated a formation of eutectic mixture between the hydrogen bond acceptor (HBA) and hydrogen bond donor (HBD) at the functional group of CH···OH. The swelling of CNC in the DES was proven by the formation of intermolecular H-bond at a length of 2.46 Å. The use of DES contributed to a good dispersion of CNC in the solution which increased zeta potential by 43.2 % compared to CNC in deionized water. The ultrasonication amplitude and feed concentration were varied for the best parameters of a stable dispersion of CNC. The crystallinity of 1 wt% of CNC at 20 % sonication amplitude improved from 76 to 81 %. The high crystallinity of CNCDES resulted in an increase in film tensile and capsule loop strength of Carra-CNCDES by 20.7 and 19.4 %, respectively. Improved dispersion of CNCDES reduced the surface roughness of the biocomposite by 21.8 %. H-bond network in CNCDES improved the biocomposite properties for an ingenious reinforcement material.

摘要

CNC 被深入研究以增强生物复合材料。然而,在生物复合材料中均匀分散 CNC 以获得光滑的薄膜表面仍然是一个挑战。通过在深共晶溶剂 (DES) 中进行机械化学处理超声处理,在将 CNC 掺入卡拉胶生物复合材料之前,生成了 CNC 的稳定分散体。在 H NMR 中,氯化胆碱 (ChCl) 亚甲基峰向 3.95-3.98 ppm 的位移表明氢键供体 (HBD) 和氢键受体 (HBA) 在 CH···OH 官能团之间形成了共晶混合物。DES 中 CNC 的溶胀通过在 2.46 Å 的长度上形成分子间 H 键得到证明。DES 的使用有助于 CNC 在溶液中的良好分散,与在去离子水中的 CNC 相比,zeta 电位增加了 43.2%。超声幅度和进料浓度有所变化,以获得 CNC 稳定分散的最佳参数。在 20%超声幅度下,1wt% CNC 的结晶度从 76%提高到 81%。CNCDES 的高结晶度使 Carra-CNCDES 的薄膜拉伸和胶囊环强度分别提高了 20.7%和 19.4%。CNCDES 的分散性得到改善,使生物复合材料的表面粗糙度降低了 21.8%。CNCDES 中的 H 键网络改善了生物复合材料的性能,是一种巧妙的增强材料。

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