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含纳米纤维素的聚丙烯腈电纺纳米纤维的实验复合材料。

Experimental composites of polyacrilonitrile-electrospun nanofibers containing nanocrystal cellulose.

机构信息

Department of Oral Biological and Medical Sciences, Division of Biomaterials, The University of British Columbia, Faculty of Dentistry, 368-2199 Wesbrook Mall, Vancouver, BC V6T 1Z3, Canada.

Department of Materials Engineering, The University of British Columbia, Faculty of Applied Sciences, 309-6350 Stores Road, Vancouver, BC V6T 1Z4, Canada.

出版信息

Dent Mater. 2019 Nov;35(11):e286-e297. doi: 10.1016/j.dental.2019.08.107. Epub 2019 Sep 21.

Abstract

OBJECTIVE

To test the effects of addition of polyacrilonitrile (PAN) nanofibers and nanocrystal cellulose (NCC)-containing PAN nanofibers on flexural properties of experimental dental composites.

METHODS

11wt% PAN in dimethylformamide (DMF) solution was electrospun at 17.2kVA and 20cm from the collector drum. NCC was added to the solution at 3wt%. Fiber mats were produced in triplicates and tested as-spun. Strips (5cm×0.5cm) were cut from the mat in an orientation parallel and perpendicular to the rotational direction of the collector drum. Tensile tests were performed and ultimate tensile strength (UTS), elastic modulus (E) and elongation at maximum stress (%) were calculated from stress/strain plots. Fiber mats were then infiltrated by resin monomers (50/50 BisGMA/TEGDMA wt%), stacked in a mold (2×15×25) and light-cured. Beams (2×2×25mm) were cut from the slabs and tested in a universal testing machine. Data were analyzed by multiple t-test and one-way ANOVA (α=0.05).

RESULTS

Addition of 3% NCC resulted in higher tensile properties of the fibers. Fibers presented anisotropic behavior with higher UTS and E when tested in perpendicular orientation. The incorporation of 3% NCC-PAN nanofibers resulted in significant increase in work of fracture and flexural strength of experimental dental composite beams.

SIGNIFICANCE

NCC was found to be a suitable nanoparticle to reinforce experimental dental composites by incorporation via nanofiber. This fundamental study warrants future investigation in the use of electrospun nanofibres as a way to reinforce dental composites.

摘要

目的

测试添加聚丙烯腈(PAN)纳米纤维和含纳米纤维素(NCC)的 PAN 纳米纤维对实验性牙科复合材料弯曲性能的影响。

方法

将 11wt%的 PAN 溶解在二甲基甲酰胺(DMF)溶液中,在 17.2kVA 和距离收集鼓 20cm 的位置进行电纺。将 3wt%的 NCC 添加到溶液中。以 3 个重复制备纤维垫并进行原样测试。从垫材中以与收集鼓旋转方向平行和垂直的方向切割出 5cm×0.5cm 的条带。进行拉伸试验,并根据应力/应变图计算出极限拉伸强度(UTS)、弹性模量(E)和最大应力下的伸长率(%)。然后将纤维垫材用树脂单体(50/50 BisGMA/TEGDMAwt%)渗透,在模具(2×15×25)中堆叠并光固化。从平板上切下 2×2×25mm 的梁,并在万能试验机上进行测试。通过多重 t 检验和单因素方差分析(α=0.05)对数据进行分析。

结果

添加 3%的 NCC 可提高纤维的拉伸性能。纤维表现出各向异性行为,当以垂直取向测试时,UTS 和 E 较高。在实验性牙科复合材料梁中加入 3%的 NCC-PAN 纳米纤维可显著提高断裂功和弯曲强度。

意义

研究发现,NCC 是一种通过纳米纤维掺入增强实验性牙科复合材料的合适纳米颗粒。这项基础研究为未来使用静电纺纳米纤维作为增强牙科复合材料的方法提供了依据。

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