水电池用空心方管聚酰亚胺的溶剂热自组装。

IF 10.7 2区 材料科学 Q1 CHEMISTRY, PHYSICAL
Ya Zhao, Chaoqiao Yang, Hexiang Zhong, Lin Li, Jiaxin Fan
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引用次数: 0

摘要

介绍了一种简单、环保的溶剂热合成中空方管聚酰亚胺(hst - pi)的方法。该工艺以1,4,5,8-萘四羧酸酐和尿素为反应物,用水和乙醇代替传统的有毒有机溶剂。本研究探讨了不同的反应条件,如水与乙醇体积比、反应时间和温度,对产物形态的影响,从而产生不同的结构,如片状、柱状和层状。值得注意的是,在特定条件下合成了空心方管聚酰亚胺(hst - pi):水与乙醇体积比为2:1,反应时间为24 h,温度为200℃。这项研究将自组装归因于三个主要的非共价相互作用:氢键、π-π堆叠和疏水相互作用。凝胶渗透色谱(GPC)分析表明,PIs的分子量主要在10000 ~ 15000之间。作为电极材料,空心方管聚酰亚胺(hst - pi)在0.1 C电流下的初始放电容量为297.9 mAh·g-1,库仑效率为79%。经过10次循环后,库仑效率提高到97%,并在后续循环中保持在98%以上。本研究提出了一种创新且环保的空心管有机聚合物分子自组装方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solvothermal Self-Assembly of Hollow Square-Tubular Polyimides for Aqueous Batteries.

In this study, a straightforward and environmentally benign solvothermal method for synthesizing hollow square-tubular polyimides (HST-PIs) is introduced. The process utilizes 1,4,5,8-naphthalenetetracarboxylic anhydride and urea as reactants, replacing traditional toxic organic solvents with water and ethanol. This investigation explores the effects of various reaction conditions, such as the water-to-ethanol volume ratio, reaction time, and temperature, on product morphology, resulting in distinct structures like sheets, columns, and layers. Notably, hollow square-tubular polyimides (HST-PIs) are synthesized under specific conditions: a 2:1 water-to-ethanol volume ratio, 24 h reaction time, and 200 °C temperature. This study attributes self-assembly to three primary non-covalent interactions: hydrogen bonding, π-π stacking, and hydrophobic interactions. The gel permeation chromatography (GPC) analysis indicates that the PIs molecular weight predominantly ranges from 10 000 to 15 000. As an electrode material, hollow square tubular polyimides (HST-PIs) exhibit an initial discharge capacity of 297.9 mAh·g-1 at a current rate of 0.1 C, with a coulombic efficiency of 79%. After ten cycles, the coulombic efficiency improves to 97% and maintains above 98% in the subsequent cycles. This study presents an innovative and environmentally friendly method for the molecular self-assembly of hollow tubular organic polymers.

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来源期刊
Small Methods
Small Methods Materials Science-General Materials Science
CiteScore
17.40
自引率
1.60%
发文量
347
期刊介绍: Small Methods is a multidisciplinary journal that publishes groundbreaking research on methods relevant to nano- and microscale research. It welcomes contributions from the fields of materials science, biomedical science, chemistry, and physics, showcasing the latest advancements in experimental techniques. With a notable 2022 Impact Factor of 12.4 (Journal Citation Reports, Clarivate Analytics, 2023), Small Methods is recognized for its significant impact on the scientific community. The online ISSN for Small Methods is 2366-9608.
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