文章摘要
刘学,何明辉,袁鹏飞,左帅,陈广学.DEPs/木质素复合黏结剂的制备及性能研究[J].包装工程,2024,45(15):30-40.
LIU Xue,HE Minghui,YUAN Pengfei,ZUO Shuai,CHEN Guangxue.Preparation and Performance of DEPs/Lignin Composite Binder[J].Packaging Engineering,2024,45(15):30-40.
DEPs/木质素复合黏结剂的制备及性能研究
Preparation and Performance of DEPs/Lignin Composite Binder
投稿时间:2024-05-27  
DOI:10.19554/j.cnki.1001-3563.2024.15.004
中文关键词: 黏结剂  低共熔聚合物(DEPs)  木质素  可聚合低共熔溶剂(PDES)单体  硅电极
英文关键词: binder  deep eutectic polymers (DEPs)  lignin  polymerizable deep eutectic solvent (PDES) monomer  silicon electrode
基金项目:国家自然科学基金(51973065);广东省自然科学基金(2020A1515011381)
作者单位
刘学 华南理工大学 轻工科学与工程学院广州 510641 
何明辉 华南理工大学 轻工科学与工程学院广州 510641 
袁鹏飞 华南理工大学 轻工科学与工程学院广州 510641 
左帅 华南理工大学 轻工科学与工程学院广州 510641 
陈广学 华南理工大学 轻工科学与工程学院广州 510641 
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中文摘要:
      目的 低共熔聚合物(DEPs)具有绿色环保、可设计性及生物相容性等特性,通过共混木质素(Lignin)合成制备具有良好的力学性能、热学性能和电化学性能的聚合物复合黏结剂,并探索其在新能源电池电极涂层领域的应用。方法 以合成得到的可聚合低共熔溶剂(PDES)单体为基底,共混不同质量分数的木质素得到不同比例的PDES单体/木质素复合材料,通过热引发聚合制备得到DEPs/木质素复合黏结剂,并对复合黏结剂进行结构、力学性能、热学性能、表面形貌的分析,并在锂离子电池应用中探究电化学性能。结果 通过实验得出,当选用一水合甜菜碱(betaine)-丙烯酸(AA)型PDES单体,木质素质量分数为6%时,制备的DEPs/木质素复合黏结剂综合各项性能最优,应用在硅(Si)电极中能够较好地控制体积变化问题,获得良好的电化学性能。结论 制备获得了DEPs/木质素复合黏结剂,该黏结剂绿色环保、成本低、合成工艺简单、各项性能优异,可应用于新能源锂电池领域以及扩大木质素高价值化利用途径。
英文摘要:
      Deep eutectic polymers (DEPs) have the properties of green, designability and biocompatibility. The work aims to prepare polymer composite binders with good mechanical, thermal and electrochemical properties by blending lignin to explore their applications in electrode coatings for new energy batteries. The synthesized polymerizable deep eutectic solvent (PDES) monomer was used as the substrate, and lignin of different mass fractions was blended to obtain PDES monomer/lignin composites of different ratios, and DEPs/lignin composite binders were prepared by heat-initiated polymerization, and the composite binders were analyzed in terms of their structure, mechanical properties, thermal properties, surface morphology. The electrochemical properties were investigated for lithium-ion battery applications. The experiment showed that the DEPs/lignin composite binder prepared with betaine monohydrate (Btm)-acrylic acid (AA) type PDES monomer and lignin mass fraction of 6% had the best overall performance, and it could be used in silicon (Si) electrodes to control the volume change problem and obtain good electrochemical properties. The DEPs/lignin composite binder is prepared, which is green, and featured with low cost, simple synthesis process, and excellent performance. It can be applied in the field of new energy lithium batteries and expanding the high value of lignin utilization.
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