无需稳定化的木质素衍生碳纳米纤维的一步合成:表征和应用

IF 3.1 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Karishma Jain , Mandeep Singh , Kushagra Yadav , Ashish Gupta , Suraj Loomba , Nasir Mahmood , S.R. Dhakate
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引用次数: 0

摘要

热氧化稳定性是碳纳米纤维合成过程中的一个重要参数,它对在严格的碳化过程中保持纤维的几何形状至关重要。然而,它的常规执行需要花费大量的时间和精力。本研究探讨了规避稳定步骤的可行性及其对木质素-聚乙烯醇衍生的静电纺丝CNF垫性能的影响。采用热稳定(St-CNF)和不热稳定(NSt-CNF)两种方法对电纺丝毡进行碳化处理。形态学分析显示,尽管排除了稳定,纤维结构保持完整,没有融合。然而,它对CNF的碳收率、石墨含量和缺陷密度有明显的影响。与NSt-CNF相比,St-CNF具有更高的碳收率和质量损失分数,表明其具有额外的交联性和热稳定性。此外,与NSt-CNF (162.9 m2/g, 0.15 cc/g)相比,St-CNF具有更高的比表面积(381.5 m2/g)和孔隙体积(0.40 cc/g),提高了St-CNF的电化学性能,如比电容(191.5 F/g)、能量和功率密度(520.5 W/kg时26.6 Wh/kg)。这项研究为木质素基CNFs的性质提供了有价值的见解,通过包括或不包括稳定步骤制备,并探索了它们在储能应用中的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

One-step synthesis of lignin-derived carbon nanofibers without the need for stabilization: Characterization and applications

One-step synthesis of lignin-derived carbon nanofibers without the need for stabilization: Characterization and applications
Thermal oxidative stabilization is a crucial parameter in carbon nanofiber (CNF) synthesis which which is important for the retention of fiber geometry during the rigorous carbonization process. However, its conventional implementation is burdened by significant time and energy expenditures. This study explores the feasibility of circumventing the stabilization step and its repercussions on the properties of lignin-PVA-derived electrospun CNF mats. Electrospun mats were subjected to carbonization after thermal stabilization (St-CNF) and without thermal stabilization (NSt-CNF). The morphological analysis revealed that despite the exclusion of stabilization, the fibrous structure remains intact without fusion. However, its noticeable impact on carbon yield, graphitic content, and defect density of CNF has been observed. In comparison to NSt-CNF, the St-CNF has higher carbon yield and mass loss fraction, suggesting additional cross-linking and thermal stability. Additionally, a higher specific surface area (381.5 m2/g) and pore volume (0.40 cc/g) were also observed in St-CNF compared to NSt-CNF (162.9 m2/g, 0.15 cc/g), enhancing the electrochemical properties such as specific capacitance (191.5 F/g), energy and power density (26.6 Wh/kg at 520.5 W/kg) of St-CNF. This study provides valuable insight into the properties of lignin-based CNFs, prepared by including or excluding the stabilization step, and explores their potential effect in energy storage applications.
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来源期刊
Carbon Trends
Carbon Trends Materials Science-Materials Science (miscellaneous)
CiteScore
4.60
自引率
0.00%
发文量
88
审稿时长
77 days
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