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New crosslinkers for electrospun chitosan fibre mats. Part II: mechanical properties

机译:用于静电纺丝壳聚糖纤维垫的新型交联剂。第二部分:机械性能

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摘要

Few studies exist on the mechanical performance of crosslinked electrospun chitosan (CS) fibre mats. In this study, we show that the mat structure and mechanical performance depend on the different crosslinking agents genipin, epichlorohydrin (ECH), and hexamethylene-1,6-diaminocarboxysulphonate (HDACS), as well as the post-electrospinning heat and base activation treatments. The mat structure was imaged by field emission scanning electron microscopy and the mechanical performance was tested in tension. The elastic modulus, tensile strength, strain at failure and work to failure were found to range from 52 to 592 MPa, 2 to 30 MPa, 2 to 31 per cent and 0.041 to 3.26 MJ m−3, respectively. In general, neat CS mats were found to be the stiffest and the strongest, though least ductile, while CS–ECH mats were the least stiff, weakest, but the most ductile, and CS–HDACS fibre mats exhibited intermediary mechanical properties. The mechanical performance of the mats is shown to reflect differences in the fibre diameter, number of fibre–fibre contacts formed within the mat, as well as varying intermolecular bonding and moisture content. The findings reported here complement the chemical properties of the mats, described in part I of this study.
机译:关于交联静电纺丝壳聚糖(CS)纤维毡的机械性能的研究很少。在这项研究中,我们表明垫的结构和机械性能取决于不同的交联剂genipin,环氧氯丙烷(ECH)和六亚甲基-1,6-二氨基羧基磺酸盐(HDACS)以及静电纺丝后的热活化和碱活化处理。通过场发射扫描电子显微镜对垫结构进行成像,并在张力下测试机械性能。测得的弹性模量,拉伸强度,破坏应变和破坏功范围为52至592 MPa,2至30 MPa,2%至31%和0.041至3.26 MJ m −3 ,分别。通常,发现纯净的CS毡垫是最硬和最坚固的,尽管延展性最小,而CS–ECH毡垫的刚度最小,最薄弱但最易延展,而CS–HDACS纤维毡则表现出中等的机械性能。垫子的机械性能表明它反映了纤维直径,垫子内部形成的光纤接触数以及分子间键合和水分含量的变化。此处报道的发现与本研究第一部分中描述的垫子的化学性质互补。

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