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使用橡木衍生木质素纳米颗粒和壳聚糖复合材料对纸板进行疏水涂层处理。

Hydrophobic Coating of Paperboard Using Oak Wood-Derived Lignin Nanoparticles and Chitosan Composites.

作者信息

Hai Le Van, Heo Eun Sol, Yoon Cheol, Kim Tae Hyun

机构信息

Department of Materials Science and Chemical Engineering, Hanyang University, Ansan 15588, Gyeonggi-do, Republic of Korea.

Major in Advanced Materials and Semiconductor Engineering, School of Semiconductor Convergence Engineering, Hanyang University, Ansan 15588, Gyeonggi-do, Republic of Korea.

出版信息

Molecules. 2025 Aug 14;30(16):3387. doi: 10.3390/molecules30163387.

Abstract

This study explores the potential application of lignin nanoparticles and chitosan-lignin nanoparticles (CLNs) as hydrophobic barrier coatings for paperboard. The lignin nanoparticles were initially prepared using a mixed solvent of ethanol and acetone. Their characteristics were examined via scanning electron microscopy (SEM) and dynamic light scattering, which revealed particle sizes in the range of 180-400 nm. The results indicated that the coatings with pure lignin nanoparticles failed to impart hydrophobicity to the paperboard, whereas the CLN coatings significantly enhanced hydrophobicity and reduced water absorption. The water contact angle increased from 109° to over 128° after the first CLN coating, remained at 127° with the second and third coating layers, and was maintained at 119° with four layers. Multilayer coatings were applied to improve barrier performance; however, no further enhancement in hydrophobicity was observed. The CLN-coated paper exhibited a significantly improved surface smoothness, as confirmed by SEM. The results indicate that a single-layer CLN coating is effective for imparting water-barrier properties to paperboard. In contrast, the coating with pure lignin nanoparticles resulted in cracked surfaces and inconsistent coating thicknesses.

摘要

本研究探讨了木质素纳米颗粒和壳聚糖-木质素纳米颗粒(CLNs)作为纸板疏水阻隔涂层的潜在应用。木质素纳米颗粒最初是使用乙醇和丙酮的混合溶剂制备的。通过扫描电子显微镜(SEM)和动态光散射对其特性进行了检测,结果显示颗粒尺寸在180-400nm范围内。结果表明,纯木质素纳米颗粒涂层未能赋予纸板疏水性,而CLN涂层显著提高了疏水性并降低了吸水性。第一次CLN涂层后,水接触角从109°增加到超过128°,第二层和第三层涂层时保持在127°,四层涂层时保持在119°。应用多层涂层以改善阻隔性能;然而,未观察到疏水性有进一步增强。经SEM证实,CLN涂层的纸张表面光滑度显著提高。结果表明,单层CLN涂层对于赋予纸板防水性能是有效的。相比之下,纯木质素纳米颗粒涂层导致表面出现裂纹且涂层厚度不一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf27/12388137/0196829e28e7/molecules-30-03387-g001.jpg

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