Mechanical and thermo-oxidative resistance properties of natural rubber film reinforced by orange peel-based carbon dots

IF 6.2 1区 农林科学 Q1 AGRICULTURAL ENGINEERING Industrial Crops and Products Pub Date : 2025-01-01 Epub Date: 2024-11-30 DOI:10.1016/j.indcrop.2024.120150
Jing Chen , Lusheng Liao , Lingyu Shang , Lijuan Du , Yinyi Lai , Jiahui Liu , Zinuo Yang , Yukun Ma , WenFeng Peng , Fuquan Zhang
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Abstract

Bio-based carbon dots (CDs) have a wide range of precursor sources, abundant chemical functional groups, and good free radical scavenging ability. This makes them an excellent candidate for modifying natural rubber (NR). In this work, CDs were synthesized from orange peels using a hydrothermal process and were utilized to reinforce NR latex. The structure and properties of both the CDs (including morphology, functional groups and fluorescence emission spectra) and NR/CDs films (including crosslinking density, morphology, functional groups, and mechanical properties) were comprehensively investigated. The results indicate that the inclusion of CDs led to improvements in tensile and tear strength while maintaining undamaged elongation at break. The tube model results indicate that the Ge (the elastic modulus brought by entangled chains) is significantly higher than the Gc (the elastic modulus contributed by chemical crosslinking) in this system, suggesting that the physical entangled network play a more significant role than chemical cross-linking; and the trend of Gc+Ge with the amount of CDs aligns completely with the cross-linking density measured by swelling method. Additionally, it was observed that CDs exhibited excellent thermo-oxidative resistance properties for NR. After 24 hours of thermal aging, the aging coefficient increased from 20.7% (NR-0) to 65.8% (NR-7). Furthermore, with an increase in thermal aging time, the tensile strength and crosslinking density of NR-0 decreased at a faster rate compared with NR-5. At an aging time of 40 hours, the tensile strength of NR-0 was reduced to 0.53 MPa and almost completely failed; whereas the tensile strength of NR-5 was still maintained at 8.2 MPa. Overall, the addition of CDs dramatically improved the thermo-oxidative resistance and mechanical properties of the NR film. Simultaneously, a novel way involving the utilization of orange peel with high value is being proposed.

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橘皮基碳点增强天然橡胶薄膜的机械性能和抗热氧化性能
生物基碳点具有前体来源广泛、化学官能团丰富、清除自由基能力强等特点。这使它们成为改性天然橡胶(NR)的极好候选者。本文以橘子皮为原料,采用水热法合成了CDs,并将其用于增强NR乳胶。对CDs的结构和性能(包括形貌、官能团和荧光发射光谱)以及NR/CDs薄膜(包括交联密度、形貌、官能团和力学性能)进行了全面的研究。结果表明,cd的加入提高了材料的拉伸强度和撕裂强度,同时保持了断裂伸长率不变。管模型结果表明,该体系中缠结链带来的弹性模量Ge显著高于化学交联带来的弹性模量Gc,表明物理缠结网络比化学交联发挥更显著的作用;Gc+Ge随CDs量的变化趋势与溶胀法测得的交联密度完全一致。另外,CDs对NR表现出优异的抗热氧化性能,经过24 h的热老化,老化系数从20.7% (NR-0)提高到65.8% (NR-7)。随着热老化时间的延长,NR-0的抗拉强度和交联密度下降的速度比NR-5快。时效40 小时时,NR-0的抗拉强度降至0.53 MPa,几乎完全失效;而NR-5的抗拉强度仍保持在8.2 MPa。总的来说,CDs的加入显著提高了NR膜的耐热氧化性和机械性能。同时,提出了一条高价值橙皮资源化利用的新途径。
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来源期刊
Industrial Crops and Products
Industrial Crops and Products 农林科学-农业工程
CiteScore
9.50
自引率
8.50%
发文量
1518
审稿时长
43 days
期刊介绍: Industrial Crops and Products is an International Journal publishing academic and industrial research on industrial (defined as non-food/non-feed) crops and products. Papers concern both crop-oriented and bio-based materials from crops-oriented research, and should be of interest to an international audience, hypothesis driven, and where comparisons are made statistics performed.
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