摘要:石墨烯是一种新型的碳材料,具有二维结构和许多优良的特性。石墨烯三维组装体是当前的研究热点,这种材料的柔韧性好、传质性能优异,应用面十分广泛,因此实现大量石墨烯组装体的制备有重要实践意义。有资料表明,石墨烯在污水处理方面有广阔的应用前景,基于此背景,本文对石墨烯聚合物的制备及性质进行了相关研究。87913

首先,制备了氧化石墨烯作为还原石墨烯/海绵复合物的原材料,验证了本文改进Hummers方法制备的可行性。然后,将氧化石墨烯作为原料,水合肼作为还原剂,通过定向凝固冷冻干燥技术制备出还原石墨烯/海绵复合物。其次,对制备得到的氧化石墨烯以及还原石墨烯/海绵复合物进行表征,对微观结构、化学组成、导电性等进行分析。最后,分析了还原石墨烯/海绵复合物对铜离子的吸附性能,从海绵质量、溶液初始浓度、吸附时间等角度研究了不同因素对还原石墨烯/海绵复合物吸附性能的影响, 从而为优化工艺提供参考。

毕业论文关键词:还原石墨烯/海绵复合物;氧化石墨烯;导电性;吸附性能

Abstract:Graphene is a new kind of carbon material, which has two dimensional structure and many excellent properties。 The three dimensional assembly of graphene is the current research hotspot。 This material has good flexibility, excellent mass transfer performance and wide application。 Therefore, it has important practical significance to achieve large number of graphene assembly。 Data show that graphene has wide application prospects in sewage treatment。 Based on this background, we have studied the preparation and properties of Shi Moxi polymer。

First, the preparation of graphene oxide as a raw material for graphene polymer, verified the feasibility of improving the preparation of the Hummers method。 Then, graphene sponge was prepared by directional solidification and freeze drying by using the graphene oxide as a raw material and hydrazine hydrate as a reducing agent。 Secondly, the prepared graphene oxide and graphene sponge were characterized, and the microstructure, chemical composition and electrical conductivity were analyzed。 Finally, the adsorption properties of graphene sponge on copper ions were analyzed。 The influence of different factors on the adsorption properties of graphene sponge was studied from the aspects of sponge quality, initial concentration of solution and adsorption time, so as to provide references for optimizing the process。

Key words: Graphene sponge; graphene oxide; conductivity; adsorption properties

目录

第一章 绪论 5

1。1 研究背景 5

1。2 石墨烯三维组装体制备方法综述 5

1。2。1 直接自组装法 5

1。2。2 交联剂诱导自组装法 5

1。2。3 模板诱导自组装法 7

1。2。4 其他方法 7

1。3 石墨烯三维组装体应用现状概述 7

1。3。1 石墨烯三维组装体在光催化领域的运用 7

1。3。2 石墨烯三维组装体在催化降解领域的运用 8

1。3。3 石墨烯三维组装体在光电化学领域的运用 8

1。4 本文研究内容 8源-于,优Y尔O论U文.网wwW.youeRw.com 原文+QQ75201,8766

第二章 石墨烯海绵聚合物的制备 9

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