二维Pd/GO@ZIF-L纳米复合催化剂的制备及其催化性能研究任务书
2020-06-26 19:52:33
1. 毕业设计(论文)的内容和要求
金属纳米颗粒具有较高的表面活性和大的比表面积,被广泛用作催化剂。但其属于亚稳状态,对周围环境敏感,易出现聚集状态,使催化活性降低。开发合适的载体,保证纳米颗粒的稳定性和金属分散度成为研究的热点。近年来,二维有机或金属有机材料如ZIFs材料作为一种新兴的多孔材料,由于其结构的优势而对复合催化剂的性能起到了很大的提升作用。研究发现,二维材料的GO与ZIFs材料复合可有效改善催化剂在催化过程中由于纳米颗粒聚集造成的催化性能降低的问题。本课题尝试采用原位合成法将GO和ZIF-L两种二维材料复合,并在合成过程中加入Pd活性组分,制备Pd/GO@ZIF-L催化剂,考察加入不同GO含量的二维Pd/ZG复合材料的结构对其催化性能的影响,采用XRD、FESEM、FT-IR、ICP等现代表征技术对其微结构进行表征,并以对硝基苯酚还原制备对氨基苯酚为模型反应测试其催化性能。
2. 参考文献
[1] Li S, Yang K, Tan C, et al. Preparation and applications of novel composites composed of metal-organic frameworks and two-dimensional materials[J]. Chemical Communications, 2016, 52:1555-1562.
[2] Jiang H, Xue S, Liu Y, et al. Controllable synthesis of Pd@ZIF-L catalysts by an assembly method[J]. RSC Advances, 2016, 6:21337-21344.
[3] Chen B, Zhu Y, Xia Y. Controlled in situ synthesis of graphene oxide/zeolitic imidazolate framework composites with enhanced CO2 uptake capacity[J]. RSC Advances, 2015, 5:30464-30471.
[4] Chen R, Yao J, Gu Q, et al. A two-dimensional zeolitic imidazolate framework with a cushion-shaped cavity for CO2 adsorption[J]. Chemical Communications, 2013, 49:9500-9502.
[5] Liu X, Zhao X, Zhou M, et al. Highly stable and active palladium nanoparticles supported on a mesoporous UiO66@reduced graphene oxide complex for practical catalytic applications[J]. European Journal of Inorganic Chemistry, 2016, 2016:3338-3343.
[6] Yin D, Huang G, Sun Q, et al. RGO/Co3O4, Composites prepared using GO-MOFs as precursor for advanced lithium-ion batteries and supercapacitors Electrodes[J]. Electrochimica Acta, 2016, 215:410-419.
[7] Kumar R, Jayaramulu K, Maji T K, et al. Hybrid nanocomposites of ZIF-8 with graphene oxide exhibiting tunable morphology, significant CO2 uptake and other novel properties[J]. Chemical Communications, 2013, 49:4947-4949.
[8] Tan Y, Jia Z, Lou P, et al. Self-assembly sandwiches of reduced graphene oxide layers with zeolitic-imidazolate-frameworks-derived mesoporous carbons as polysulfides reservoirs for lithium-sulfur batteries[J]. Journal of Power Sources, 2017, 341:68-74.
[9] Zhou H, Zhang J, Zhang J, et al. Spillover enhanced hydrogen storage in Pt-doped MOF/graphene oxide composite produced via an impregnation method[J]. Inorganic Chemistry Communications, 2015, 54:54-56.
3. 毕业设计(论文)进程安排
2018.1.4~2018.3.10 查阅文献,翻译英文文章,撰写开题报告
2018.3.11~2018.3.20 熟悉实验流程
2018.3.21~2018.5.20 实验研究,总结规律,处理实验数据
2018.5.21~2018.6.7 撰写毕业论文
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