柔性超疏水气凝胶的制备及性能任务书
2020-04-17 20:30:10
1. 毕业设计(论文)的内容和要求
本论文的主要内容是对柔性超疏水sio2气凝胶材料国内外的研究现状、应用与发展进行了简要的阐述。
简述sio2气凝胶复合材料的结构特点、溶胶-凝胶制备工艺和应用前景。
对柔性超疏水sio2气凝胶材料的制备参数及其性能表征进行了研究。
2. 参考文献
[1] G. Zu,T. Shimizu,K. Kanamori,Y. Zhu,A. Maeno,H. Kaji,J. Shen,K. Nakanishi, Transparent, Superflexible Doubly Cross-Linked Polyvinylpolymethylsiloxane Aerogel Superinsulators via Ambient Pressure Drying[J], Acs Nano. 12 (2018) 521-532. [2] K.K.A.M. Guoqing Zu,A.K.N. Kaji, Superflexible Multifunctional Polyvinyl polydimethy lsiloxane-Based Aerogels as Efficient Absorbents[J], Thermal Superinsulators, and Strain Sensors, Angew chem int ed. 130 (2018) 9870-9875. [3] Y. Kim,H.S. Kim,S.M. Jo,S.Y. Kim,B.J. Yang,J. Cho,S. Lee,J.E. Cha, Thermally insulating, fire-retardant, smokeless and flexible polyvinylidene fluoride nanofibers filled with silica aerogels[J], Chem Eng J. 351 (2018) 473-481. [4] G. Zu,K. Kanamori,T. Shimizu,Y. Zhu,A. Maeno,H. Kaji,K. Nakanishi,J. Shen, Versatile Double-Cross-Linking Approach to Transparent, Machinable, Supercompressible, Highly Bendable Aerogel Thermal Superinsulators[J], Chem Mater. 30 (2018) 2759-2770. [5] K. Nocentini,P. Achard,P. Biwole, Hygro-thermal properties of silica aerogel blankets dried using microwave heating for building thermal insulation[J], Energ Buildings. 158 (2018) 14-22. [6] J. Wang,H. Wang, Facile synthesis of flexible mesoporous aerogel with superhydrophobicity for efficient removal of layered and emulsified oil from water[J], Colloid Interf Sci. 530 (2018) 372-382. [7] S. He,X. Chen, Flexible silica aerogel based on methyltrimethoxysilane with improved mechanical property[J], Non-Cryst Solids. 463 (2017) 6-11. [8] R. Tannert,M. Schwan,A. Rege,M. Eggeler,J.C. Da Silva,M. Bartsch,B. Milow,M. Itskov,L. Ratke, The three-dimensional structure of flexible resorcinol-formaldehyde aerogels investigated by means of holotomography[J], Sol-Gel Sci Techn. 84 (2017) 391-399. [9] T. Matias,C. Varino,H.C. de Sousa,M.E.M. Braga,A. Portugal,J.F.J. Coelho,L. Duraes, Novel flexible, hybrid aerogels with vinyl- and methyltrimethoxysilane in the underlying silica structure[J], Mater Sci. 51 (2016) 6781-6792. [10] S. Zhou,P. Liu,M. Wang,H. Zhao,J. Yang,F. Xu, Sustainable, Reusable, and Superhydrophobic Aerogels from Microfibrillated Cellulose for Highly Effective Oil/Water Separation[J], Acs Sustain Chem Eng. 4 (2016) 6409-6416. [11] 曲康,浦群,单国荣, 有机-无机杂化柔性硅气凝胶的制备与表征[J], 化工学报. 65 (2014) 346-351. [12] 沈登雄,房光强,刘金刚,杨士勇, 耐高温柔性PI气凝胶的合成与性能[J], 宇航材料工艺. 44 (2014) 57-61. [13] 钱晶晶,冯军宗,姜勇刚,王华,冯坚, 帐篷夹芯隔热材料的研究进展[J], 材料导报. 28 (2014) 84-87. [14] 冯坚,冯军宗,姜勇刚, 柔性氧化硅气凝胶隔热复合材料的制备和性能[J], 宇航材料工艺. 42 (2012) 42-46. [15] X. Wu,T. Wen,H. Guo,S. Yang,X. Wang,A. Xu, Biomass-Derived Sponge-like Carbonaceous Hydrogels and Aerogels for Supercapacitors[J], Acs Nano. 7 (2013) 3589-3597. [16] H. Sai,L. Xing,J. Xiang,L. Cui,J. Jiao,C. Zhao,Z. Li,F. Li, Flexible aerogels based on an interpenetrating network of bacterial cellulose and silica by a non-supercritical drying process[J], Mater Chem a. 1 (2013) 7963-7970. [17] H. Budunoglu,A. Yildirim,M.O. Guler,M. Bayindir, Highly Transparent, Flexible, and Thermally Stable Superhydrophobic ORMOSIL Aerogel Thin Films[J], Acs Appl Mater Inter. 3 (2011) 539-545. [18] A. Yildirim,H. Budunoglu,M. Yaman,M.O. Guler,M. Bayindir, Template free preparation of nanoporous organically modified silica thin films on flexible substrates[J], JOURNAL OF MATERIALS CHEMISTRY. 21 (2011) 14830-14837. [19] L. Li,B. Yalcin,B.N. Nguyen,M.A.B. Meador,M. Cakmak, Flexible Nanofiber-Reinforced Aerogel (Xerogel) Synthesis, Manufacture, and Characterization[J], Acs Appl Mater Inter. 1 (2009) 2491-2501. [20] K. Kanamori,M. Aizawa,K. Nakanishi,T. Hanada, Elastic organic-inorganic hybrid aerogels and xerogels[J], Sol-Gel Sci Techn. 48 (2008) 172-181.
3. 毕业设计(论文)进程安排
起讫日期 设计(论文)各阶段工作内容 备 注 2019.2.25~2019.2.28 查阅文献资料 2019.3.1~2019.3.6 拟定实验方案,撰写开题报告 2019.3.7~2019.3.31 完成初步实验工作,并开展初步测试 2019.4.1~2019.5.31 进行中期检查,完成实验和测试 4.5~4.7清明假期 5.1~5.4五一假期 2019.6.1~2019.6.20 撰写毕业论文,答辩 6.7~6.9 端午假期
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