纳米纤维
肺表面活性物质
纤维素
烷基
化学工程
癸烷
化学
相(物质)
高分子化学
材料科学
有机化学
纳米技术
工程类
作者
Jiwoo Bae,Hye Min Seo,Kyoung-Hee Shin,Jung Hun Choi,Dong Ryeol Lee,Zhiting Jiang,Di Shen,Jin Woong Kim
标识
DOI:10.1002/marc.202100917
摘要
This study introduces a cellulose nanofiber surfactant system, in which the surface is hydrophobically modified with different alkyl chain structures for the effective envelopment of solid lipid microparticles (SLMs). To endow bacterial cellulose nanofibers (BCNFs) with excellent ability to assemble at the lipid-water interface, alkyl chains with designated molecular structures, such as decane, didecane, and eicosane, are covalently grafted onto the BCNF surface. Interfacial tension and interfacial rheology measurements indicate that dialkyl chain-grafted BCNFs (diC10 BCNF) exhibit strong interfibrillar association at the interface. The formation of a dense and tough fibrillary membrane contributes significantly to the enveloping of the SLMs, regardless of the lipid type. Because the diC10 BCNF-enveloped SLMs exhibit a core molecular crystalline phase at the microscale, they can immobilize an oil-soluble antioxidant while maintaining its long-term storage stability. These findings show that the cellulose-surfactant-based SLM technology is applicable to the stabilization and formulation of readily denatured active ingredients.
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