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Enhancement of the Controlled-Release Properties of Chitosan Membranes by Crosslinking with Suberoyl Chloride

机译:通过与亚磺酰氯交联增强壳聚糖膜的控制释放性能

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A novel crosslinking agent, suberoyl chloride, was used to crosslink N-phthaloyl acylated chitosan and improves the properties of chitosan membranes. Membranes with different crosslinking degrees were synthesized. The derivatives were characterized by Fourier transform infrared spectroscopy and 13C solid state nuclear magnetic resonance spectroscopy, which indicated that the crosslinking degrees ranged from 0 to 7.4%. The permeabilities of various plant nutrients, including macroelements (N, P, K), microelements (Zn2+ and Cu2+), and a plant growth regulator (naphthylacetic acid), were varied by moderate changes in crosslinking degree, indicating that the controlled-release properties can be regulated in this way. The film-forming ability of native chitosan was maintained, whilst mechanical properties, hydrophobicity and controlled permeability were improved. These dramatic improvements occurred with a small amount of added suberoyl chloride; excessive crosslinking led to membranes with unwanted poor permeability. Thus, both the mechanical properties and permeability of the crosslinked membrane can be optimized.
机译:一种新型的交联剂,辛二酰氯,用于交联N-邻苯二甲酰基酰化的壳聚糖,并改善了壳聚糖膜的性能。合成了具有不同交联度的膜。通过傅里叶变换红外光谱和 13 固态核磁共振光谱对衍生物进行了表征,表明其交联度为0〜7.4%。各种植物养分的渗透性,包括大元素(N,P,K),微量元素(Zn 2 + 和Cu 2 + )以及植物生长调节剂(萘乙酸) ),由于交联度的适度变化而变化,表明控释特性可以通过这种方式调节。保持了天然壳聚糖的成膜能力,同时改善了机械性能,疏水性和可控制的渗透性。这些显着的改善是通过添加少量的亚磺酰氯而实现的。过量的交联导致膜具有不希望的差的渗透性。因此,可以优化交联膜的机械性能和渗透性。

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