[1] 牛春亮, 马莉莎. 海上溢油污染处理技术研究现状及前景探析[J]. 农业与技术, 2016, 36(7): 173-174.
[2] 章成圆, 李翠翠, 李亚杰, 等. 亲水疏油油水分离膜的制备及其性能表征[J]. 浙江海洋学院学报(自然科学版), 2016, 35(4): 358-360.
[3] 张俊, 韩磊, 曾渊, 等. 选择性油水分离材料[J]. 化学进展, 2019, 31(1): 134-143.
[4] 李璐璐, 梁欣宇, 森巴特·特尼斯别克, 等. 油水分离中静电纺纳米纤维膜应用的现状与展望[J]. 现代化工, 2019, 39(6): 59-64.
[5] 杨用峰, 朱海霖, 王峰, 等. 亲水疏油改性对PTFE平板膜油水分离性能的影响[J]. 浙江理工大学学报, 2019, 41(5): 579-585.
[6] 谭海涛, 刘铭辉, 刘涛, 等. 静电纺丝油水分离膜的制备及应用进展[J]. 黑龙江科学, 2019, 10(4): 1-7.
[7] 杨晓彬. 新型Janus膜的制备及其多功能应用研究[D]. 哈尔滨: 哈尔滨工业大学, 2016: 1-2.
[8] Yang H C, Xie Y, Hou J, et al. Janus membranes: creating asymmetry for energy efficiency[J]. Advanced materials, 2018, 30(43): 1801495.
[9] Wang Z X, Yang X B, Cheng Z J, et al. Simply realizing “water diode” Janus membranes for Multifunctional smart applications[J]. Materials Horizons, 2017, 4: 701-708.
[10] Gore P M, Dhanshetty M, B K. Bionic creation of nanoengineered Janus fabric for selective oil/organic solvent absorption[J]. RSC Advances, 2016, 6: 111250-111260.
[1]杨用峰,朱海霖,王峰,等.亲水疏油改性对PTFE平板膜油水分离性能的影响[J].浙江理工大学学报,2019,41-42(自科五):579.
YANG Yongfeng,ZHU Hailin,WANG Feng,et al.Effect of hydrophilic and oleophobic modification on oilwater separation property of PTFE flat membrane[J].Journal of Zhejiang Sci-Tech University,2019,41-42(自科三):579.
[2]陈艳霞,徐素芹,鲁慧娟,等.PET-SiO2-NOEO超疏水膜优化制备及其油水分离性能评价[J].浙江理工大学学报,2020,43-44(自科三):293.
CHEN Yanxia,XU Suqin,LU Huijuan,et al.Optimized preparation of PET-SiO2-NOEO superhydrophobic membrane and evaluation of its oilwater separation performance[J].Journal of Zhejiang Sci-Tech University,2020,43-44(自科三):293.
[3]邢亚杰,蒋吾伟,张洪晶,等.等离子体接枝聚合制备非对称润湿性Janus棉织物的研究[J].浙江理工大学学报,2022,47-48(自科四):467.
XING Yajie,JIANG Wuwei,ZHANG Hongjing,et al.Study on fabrication of asymmetric wettability Janus cotton fabric by plasma graft polymerization[J].Journal of Zhejiang Sci-Tech University,2022,47-48(自科三):467.
[4]李嘉,杨继福,张潇天,等.基于中空草莓状微球的超疏水隔热涂层织物制备及性能分析[J].浙江理工大学学报,2022,47-48(自科五):649.
LI Jia,YANG Jifu,ZHANG Xiaotian,et al.Preparation and properties of fabrics with superhydrophobic and thermal insulating coating based on hollow raspberry like microspheres[J].Journal of Zhejiang Sci-Tech University,2022,47-48(自科三):649.
[5]潘毕成,张佳文,杨孝全,等.被动式日间辐射制冷超疏水涤纶织物的制备及其性能[J].浙江理工大学学报,2024,51-52(自科一):55.
PAN Bicheng,ZHANG Jiawen,YANG Xiaoquan,et al.Preparation and performance of superhydrophobic polyester fabrics for passive daytime radiative cooling[J].Journal of Zhejiang Sci-Tech University,2024,51-52(自科三):55.
[6]尚轲,任文君,徐天祺,等.基于有机硅改性聚氨酯/SiO 2二氧化硅的超疏水棉织物制备及其性能分析[J].浙江理工大学学报,2024,51-52(自科一):82.
SHANG Ke,REN Wenjun,XU Tianqi,et al.Preparation and performance analysis of superhydrophobic cotton fabrics based on silicone-modified polyurethane/silica[J].Journal of Zhejiang Sci-Tech University,2024,51-52(自科三):82.