4.7 Article

O-acylation of chitosan nanofibers by short-chain and long-chain fatty acids

期刊

CARBOHYDRATE POLYMERS
卷 177, 期 -, 页码 203-209

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2017.08.132

关键词

Chitosan; Nanofibers; Acylation; Fatty acid esters

资金

  1. Marine Economy Innovation and Development Project [GD2012-D01-002]
  2. Marine Fishery Science and Technology Promotion Project of Guangdong [A1201301C06]
  3. Marine Strategic Emerging Industry Special Project [GD2013-B02-003]
  4. Guangdong Provincial Engineering Center of Topical Precise Drug Delivery System [NNSFC31570964, 201508020126, 2013 B090200007, 20114401110003, JCYJ20130401174221011]

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Chitosan nanofibers (CSNFs) have potential applications in biomaterials, oil recovery and food packaging, but their instability in moist environment has limited their full utilization. Here we report that CSNFs can be Oacylated in a post-electrospinning treatment by using pyridine as catalyst and short-chain (C2, C3, C4, C5 and C6) and long-chain (C8 and C12) fatty acid anhydrates as acylation agents. The effects of O-acylation to CSNFs were analyzed in detail. FT-IR, H-1 NMR and elemental analysis indicated that the hydroxyl groups of chitosan in CSNFs were acylated in 2 h. XRD spectra indicated that the O-acylation modification altered the crystal structure of the native fibers and the acyl substituents packed in a laterally aligned and layered structure. SEM examinations showed that the acylation modification could effectively control the fibrous structure of CSNFs and improve their stability in moist environment. The O-acylated CSNFs generally have an average diameter about 100 nm except for laurelated CSNFs (similar to 200 nm). Water contact angle measurement indicated that the wetting properties of O-acylated CSNFs were affected by the length of acyl side chains. This fiber acylation strategy can tune the material properties of CSNFs and expand their potential applications.

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