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一个强大的战略可热塑性纤维素复合生物塑料通过键替代
Xuyue Liu1, Jingzhou He1, Tong Zhou1
1Center for Smart Materials and Devices, State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Luoshi Road 122, Wuhan 430070, P. R. China. prcwangzehong@whut.edu.cn.
这项研究开发了一种新的纤维素复合生物塑料,使用乙烯纤维素和石墨烯. 该材料表现出增强的性和导热性,为石油塑料提供了可持续的替代品.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物科学 聚合物科学
- 可持续材料 可持续材料
背景情况:
- 纤维素是生物塑料的可再生资源,但由于其强大的结网,它在溶解性和可加工性方面面临挑战.
- 从纤维素制成可回收,高性能生物塑料的开发对于替代石油制成塑料至关重要.
研究的目的:
- 制定一个强大的战略,创造高性能纤维素复合生物塑料.
- 使用石墨烯提高乙烯纤维素 (EC) 的热塑性可加工性和机械性能.
- 为了使可回收和可重编程生物塑料的创造.
主要方法:
- 在乙烯纤维素 (EC) 中加入可调节的石墨烯 (Rt-G),以控制键动态.
- 在150°C下20MPa进行轻度热处理1小时,形成复合生物塑料.
- 对热塑性塑料的可加工性,性,导热性和可重编程性的评估.
主要成果:
- 纤维素复合生物塑料在多个加工和回收周期中表现出良好的热塑性可加工性.
- 与原始EC相比,观察到性和导热率的五倍增强.
- 在温和的条件下,材料可以反复重新编程成各种形状.
结论:
- 使用Rt-G控制EC纳米复合材料中的键破坏和重构是高性能生物塑料的可行策略.
- 开发的纤维素复合生物塑料为传统的石油衍生塑料提供了一个有希望的,可持续的替代品.
- 这种方法有助于创建可回收和可重编程的材料.
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