Recovered Carbon Black Filler Improves the Properties of Chitosan 3-Dimensional Composites

IF 1 4区 化学 Q4 POLYMER SCIENCE
Muhammad Nur Faez Mohd Sahaid, Lim Jia Xin, Noor Najmi Bonnia, Sharifah Nabihah Syed Jaafar
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Abstract

The rapid growth in the use of carbon-based composites has resulted in the need to replace commercially available carbon materials with those from renewable and sustainable sources. In this work, recovered carbon black (rCB) from the waste tire was used for the preparation of 3-dimensional (3D) chitosan/carbon composites. The rCB was treated with acid (T-rCB) to modify its functionality. By varying the percentage of T-rCB, the 3D-treated chitosan/carbon composites (C/T-rCB) were prepared via a free-drying method. The rCB sample is shown to be agglomerated and undispersed while the T-rCB could disperse homogeneously and is stable in water. The Raman bands at T-rCB had weaker intensities and thus the ID/IG area was less than rCB. The incorporation of T-rCB in chitosan composite shows a good interaction through the ‒CONH– bond. The increment of T-rCB in the composite was able to increase the water uptake and water retention abilities. The addition of T-rCB has resulted in improved tensile strength, especially to the 0.03 C/T-rCB. It was found the 3D composite samples were fibrous and porous.

Abstract Image

Abstract Image

回收的炭黑填料改善了壳聚糖三维复合材料的性能
摘要 碳基复合材料的使用迅速增长,因此需要用可再生和可持续来源的碳材料替代市售碳材料。在这项研究中,从废旧轮胎中回收的炭黑(rCB)被用于制备三维壳聚糖/碳复合材料。回收炭黑经过酸处理(T-rCB)以改变其功能性。通过改变 T-rCB 的比例,采用自由干燥法制备了经三维处理的壳聚糖/碳复合材料(C/T-rCB)。结果表明,rCB 样品呈团块状且不分散,而 T-rCB 则能均匀分散且在水中稳定。T-rCB 的拉曼带强度较弱,因此 ID/IG 面积小于 rCB。在壳聚糖复合材料中加入 T-rCB 后,可通过-CONH-键产生良好的相互作用。在复合材料中添加 T-rCB 能够提高吸水和保水能力。T-rCB 的添加提高了拉伸强度,尤其是 0.03 C/T-rCB 的拉伸强度。研究发现,三维复合材料样品具有纤维性和多孔性。
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来源期刊
Polymer Science, Series A
Polymer Science, Series A 化学-高分子科学
CiteScore
1.70
自引率
0.00%
发文量
55
审稿时长
3 months
期刊介绍: Polymer Science, Series A is a journal published in collaboration with the Russian Academy of Sciences. Series A includes experimental and theoretical papers and reviews devoted to physicochemical studies of the structure and properties of polymers (6 issues a year). All journal series present original papers and reviews covering all fundamental aspects of macromolecular science. Contributions should be of marked novelty and interest for a broad readership. Articles may be written in English or Russian regardless of country and nationality of authors. All manuscripts are peer reviewed. Online submission via Internet to the Series A, B, and C is available at http://polymsci.ru.
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