原子层沉积金属氧化物改性织物及其抗菌性能研究任务书

 2022-01-26 10:01

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1. 毕业设计(论文)的内容和要求

(1)查阅15篇以上的相关外文文献资料,了解课题开展的基本方法好课题中的重难点,初步掌握查阅文献的能力。

(2)开展实验后按照实验方案和安排进行原子层沉积实验;按照操作规程完成设定的室验(设计)任务; (3)熟悉并掌握催验所需各类装置的搭接,实验开展的顺序,以及抗菌性能的测试;(4)对所得产物进行基本表征和性能的测试,实验做完后自行处理数据,认真总结自己的实验,并撰写论文报告,写出自己的心得体会。

2. 实验内容和要求

(1)查阅文献后设计实验方案,基于原子层沉积技术制备抗菌织物。

(2)掌握基本表征的方法,对得到的产物进行表征。

(3)掌握相关实验的流程和装置,自行搭建实验装置并学习和掌握织物使用性能的测试方法。

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3. 参考文献

1. B.A. McCool, W.J. DeSisto, Amino-functionalized silica membranes for enhanced carbon dioxide permeation, Adv. Funct. Mater. 15 (10) (2005) 1635-1640.2. L. Velleman, G. Triani, P.J. Evans, J.G. Shapter, D. Losic, Structural and chemical modification of porous alumina membranes, Micropor. Mesopor. Mat. 126 (1) (2009) 87-94.3. X. Liang, X. Lu, M. Yu, A.S. Cavanagh, D.L. Gin, A.W. Weimer, Modification of nanoporous supported lyotropic liquid crystal polymer membranes by atomic layer deposition, J. Membr. Sci. 349 (1) (2010) 1-5.4. H. Van Bui, F. Grillo, J.R. van Ommen, Atomic and molecular layer deposition: off the beaten track, Chem. Commun. 53 (1) (2017) 45-71.5. D. Li, Y. Yan, H. Wang, Recent advances in polymer and polymer composite membranes for reverse and forward osmosis processes, Prog. Polym. Sci. 61 (2016) 104-155.6. H.B. Park, J. Kamcev, L.M. Robeson, M. Elimelech, B.D. Freeman, Maximizing the right stuff: The trade-off between membrane permeability and selectivity, Science 356 (6343) (2017) eaab0530.7. Q. Xu, Y. Yang, X. Wang, Z. Wang, W. Jin, J. Huang, Y. Wang, Atomic layer deposition of alumina on porous polytetrafluoroethylene membranes for enhanced hydrophilicity and separation performances, J. Membr. Sci. 415-416 (2012) 435-443.8. Q. Wang, X. Wang, Z. Wang, J. Huang, Y. Wang, PVDF membranes with simultaneously enhanced permeability and selectivity by breaking the tradeoff effect via atomic layer deposition of TiO2,442 (2013) 57-64.9. X. Jia, Z. Low, H. Chen, S. Xiong, Y. Wang, Atomic layer deposition of Al2O3 on porous polypropylene hollow fibers for enhanced membrane performances, Chinese J. Chem. Eng. 26 (4) (2018) 695-700.10. S.-M. Lee, V. Ischenko, E. Pippel, A. Masic, O. Moutanabbir, P. Fratzl, M. Knez, An alternative route towards metalpolymer hybrid materials prepared by vapor-phase processing, Adv. Funct. Mater. 21 (16) (2011) 30473055.11. S.M. Lee, E. Pippel, U. Gsele, C. Dresbach, Y. Qin, C.V. Chandran, T. Bruniger, G. Hause, M. Knez, Greatly increased toughness of infiltrated spider silk, Science 324488492.12. X. Zhou, Y.-Y. Zhao, S.-R. Kim, M. Elimelech, S. Hu, J.-H. Kim, Controlled TiO2 growth on reverse osmosis and nanofiltration membranes by atomic layer deposition: mechanisms and potential applications, Environ. Sci. Technol. 52 (24) (2018) 14311-14320.13. P. Juholin, M.-L. Kriinen, M. Riihimki, R. Sliz, J.L. Aguirre, M. Piril, T. Fabritius, D. Cameron, R.L. Keiski, Comparison of ALD coated nanofiltration membranes to unmodified commercial membranes in mine wastewater treatment, Sep. Purif. Technol. 192 (2018) 69-77.14. N. Li, Y. Tian, J. Zhao, J. Zhang, L. Kong, J. Zhang, W. Zuo, Static adsorption of protein-polysaccharide hybrids on hydrophilic modified membranes based on atomic layer deposition: Anti-fouling performance and mechanism insight, J. Membr. Sci. 548 (2018) 470-480.15. N. Li, J. Zhang, Y. Tian, J. Zhao, J. Zhang, W. Zuo, Anti-fouling potential evaluation of PVDF membranes modified with ZnO against polysaccharide, Chem. Eng. J. 304 (2016) 165-174.

4. 毕业设计(论文)计划

第一周 查阅资料学习相关理论知识;第二周 继续学习理论知识,了解所用实验仪器的相关操作,进行安全性实验教育学习;第三周至第五周 正式开始实验部分并完成开题报告及其相关部分;第六周至第九周 进行实验并完成中期小结及其相关部分;第九周至第十三周 完成实验部分内容并完成实验数据处理的总结,准备撰写论文的材料;第十三周至第十五周 完成毕业生论文写作,完成相关毕业材料.

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