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首页> 外文期刊>Colloid and polymer science >Influence of pre-gelation temperature on mechanical properties of cellulose aerogels based on a green NaOH/PEG solution-a comparative study
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Influence of pre-gelation temperature on mechanical properties of cellulose aerogels based on a green NaOH/PEG solution-a comparative study

机译:基于绿色NaOH / PEG溶液的预胶凝温度对纤维素气凝胶力学性能的影响-对比研究

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摘要

Cellulose aerogels with porous three-dimensional network structure often suffer from weak mechanical strength, which imposes huge restrictions on their applications. In this work, an easily-operated pre-gelation treatment was introduced to the conventional fabrication technique of regenerated cellulose aerogels (i.e., dissolution, regeneration, and drying treatment) to improve their structure uniformity, crystallinity, and mechanical strength. These properties were found to be closely related to the pre-gelation temperature, and a relatively lower temperature (50 A degrees C) makes the greatest contribution. Especially for the mechanical strength, the elasticity modulus and energy absorption of the aerogels treated at 50 A degrees C reach the maximums of 1.03 MPa and 476.2 kJ m(-3), which are 5.4 times and 94.3 % higher than those of the untreated aerogels. As an example of potential application, the surface of the aerogels was decorated with multiwalled carbon nanotubes. The obtained composite displays a good electromagnetic interference shielding ability.
机译:具有多孔三维网络结构的纤维素气凝胶通常具有弱的机械强度,这对其应用施加了巨大的限制。在这项工作中,将易于操作的预胶凝处理引入到再生纤维素气凝胶的常规制造技术中(即,溶解,再生和干燥处理),以改善其结构均匀性,结晶度和机械强度。发现这些性质与预胶凝温度密切相关,并且相对较低的温度(50 A摄氏度)贡献最大。特别是对于机械强度,在50 A摄氏度下处理的气凝胶的弹性模量和能量吸收达到最大值1.03 MPa和476.2 kJ m(-3),比未处理的气凝胶分别高5.4倍和94.3% 。作为潜在应用的一个例子,气凝胶的表面装饰有多壁碳纳米管。所得复合材料显示出良好的电磁干扰屏蔽能力。

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