纳米氧化锌纤维素复合材料在淀粉膜中的应用任务书

 2022-03-15 08:03

1. 毕业设计(论文)的内容、要求、设计方案、规划等

1. 掌握正确的文献搜索方法,在指导老师给的原始参考文献的基础上进一步补充,要求了解课题的背景、目的和意义,并对文献进行归纳总结,全面了解该课题的国内外研究现状,及其应用。

2. 扎实的化学基础、正确的研究方法和娴熟的实验技能。

要求能运用数理统计的方法来正确的分析数据。

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2. 参考文献(不低于12篇)

1. Wang, H. Q., Li, G. H., Jia, L. C., et al. Controllable preferential-etching synthesis and photocatalytic activity of porous ZnO nanotubes. Journal of Physical Chemistry C, 2008, 112: 11738-11743.2. Mann, Adhar C. Synthesis, Characterization, and Antimicrobial Activity of Zinc Oxide Nanoparticles. Springer-Verlag, Berlin Heidelberg, 2012, pp151-1803.3. Perez Espitia, P. J., Ferreira Soares, N. F., Teofilo, R. F., et al. Physicalmechanical and antimicrobial properties of nanocomposite films with pediocin and ZnO nanoparticles. Carbohydrate Polymers, 2013, 94: 199-208.4. Zhang, H., Chen, B., Jiang, H., et al. A strategy for ZnO nanorod mediated multi-mode cancer treatment. Biomaterials, 2011, 32: 1906-1914.5. Huang, M. H., Mao, S., Feick, H., et al. Room-temperature ultraviolet nano-wire nanolasers. Science, 2001, 292: 1897-1899.6. Wang, F. F., Cao, L., Pan, A. L., et al. Synthesis of tower-like ZnO structures and visible photoluminescence origins of varied-shaped ZnO nanostructures. Journal of Physical Chemistry B, 2007, 111: 7655-7660.7. Raghvendra, S. Y., Avinash, C. P. Needle-like ZnO nanostructure synthesized by organic-free hydrothermal process. Physica E, 2008, 40: 660-663.8. Feng, J. J., Liao, Q. C., Wang, A. J., et al. Mannite supported hydrothermal synthesis of hollow flower-like ZnO structures for photocatalytic applications. CrystEngComm, 2011, 13: 4202-4210.9. Xu J Q, Chen Y P, Chen D Y. Hydrothermal synthesis and gas sensing characters of ZnO nanorods. Sensors and Ac-tuators B, 2006, 113: 526-531.10. Li, X., He, G., Xiao, G., Liu, H., Wang, M. Synthesis and morphology control of ZnO nanostructures in microemulsions. Journal of Colloid and Interface Science, 2009, 333: 465-473.11. Yildirim, O.A., Durucan, C. Synthesis of zinc oxide nanoparticles elaborated by microemulsion method. Journal of Alloys and Compounds, 2010, 506: 944-949.12. Khan, M. F., Hameedullah, M., Ansari, A. H., et al. Flower-shaped ZnO nanoparticles synthesized by a novel approach at near-room temperatures with antibacterial and antifungal properties. International Journal of Nanomedicine, 2014, 9: 853-864.13. Dejene, F. B. , Ali, A. G. , Swart, H. C., et al. Optical properties of ZnO nanoparticles synthesized by varying the sodium hydroxide to zinc acetate molar ratios using the sol-gel process. Central European Journal of Physics, 2011, 9:1321-1326.14. Peng, Y., Xu, A. W., Deng, B., et al. Polymer-controlled crystallization of zinc oxide hexagonal nanorings and disks. Journal of Physical Chemistry B, 2006, 110: 2988-2993.15. Hu, X.L., Zhu, Y.J., Wang, S.W. Sonochemical and microwave-assisted synthesis of linked single-crystalline ZnO rods. Materials Chemistry and Physics, 2004, 88: 421-426.16. Lanje, A.S., Sharma, S.J., Ningthoujam, R.S., Ahn, J.S., Pode, R.B. Low temperature dielectric studies of zinc oxide (ZnO) nanoparticles prepared by precipitation method. 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