聚丙烯
柠檬酸
涂层
材料科学
水蒸气
聚合物
纤维素
食品包装
水分
接触角
化学工程
纳米纤维素
复合材料
化学
有机化学
食品科学
工程类
作者
Md. Nuruddin,Deepa M. Korani,Hyungyung Jo,Reaz A. Chowdhury,Francisco J. Montes,John A. Howarter,Jeffrey P. Youngblood
标识
DOI:10.1021/acsapm.0c00483
摘要
Cellulose nanocrystals (CNCs) are promising materials for the packaging industry due to their nontoxicity, abundance in nature, biodegradability, and high gas barrier properties. Unfortunately, CNC barrier films and coatings suffer from brittleness, water sensitivity, and, similar to polar polymers, loss of barrier performance at elevated humidity. Citric acid is an inexpensive, nontoxic additive, and a potential cross-linking agent, which can be utilized for decreasing the moisture sensitivity of cellulose-based coating materials for packaging applications. In contrast, polypropylene (PP) films are flexible and water resistant but have high permeability of oxygen and carbon dioxide. In this study, CNC and CNC–citric acid films were coated on polypropylene films by shear coating to investigate the barrier performance of the coated films. The study shows that addition of citric acid (CA) to the resultant CNC film can increase hydrophobicity and maintain transparency of the CNC-coated PP films. Importantly, CA addition can increase the barrier performance of a CNC coating (i.e., lower transmission rate) for O2, CO2, and water, which makes the CNC–CA coatings a possible choice for packaging applications.
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