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41.
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田隆  刘婷  孙克宁 《化工学报》2020,71(9):4112-4130
氧化石墨烯膜具有超高的水通量、可控的层间距以及卓越的分离性能,这些优异的特性使氧化石墨烯膜有望成为新一代膜材料并用于水环境中物质的精确分离。对氧化石墨烯膜的研究已经取得了许多重要的成果,本文系统地阐述了用于水质净化的氧化石墨烯膜的结构特性和构效关系,总结了氧化石墨烯膜典型的制备方法,重点介绍了氧化石墨烯膜的改性方式,概述了氧化石墨烯膜在多种水环境中的应用,总结并展望了氧化石墨烯膜的发展方向,为设计和合成高性能氧化石墨烯膜用于水质净化提供新的思路。  相似文献   
43.
为有效提高热塑性淀粉塑料(TPS)的力学和耐水性能,本文提出用不同波长的紫外光照的方法来实现TPS表面的光交联改性。将光引发剂2,4,6?三甲基苯甲酰基二苯基氧化膦(TPO)的乙醇溶液涂覆于TPS表面后进行紫外光照射,研究了不同紫外光波长(254、308、365 nm)对TPS交联度、力学性能、动态力学性能、耐水性和吸湿性的影响。结果表明,与254 nm和365 nm紫外光照后的样品相比,308 nm光照后TPS样品的拉伸、弯曲和冲击强度最大,分别为4.1 MPa,2.7 MPa和96.8 kJ/m2;TPS中淀粉富集区的玻璃化转变温度(Tα)、甘油富集区的玻璃化转变温度(Tβ)分别达最高为-37.48 ℃和50.32 ℃,表面接触角最大为75 °,吸水性能也得到显著改善,交联度结果证实此时形成了最佳的交联结构。  相似文献   
44.
《Ceramics International》2020,46(10):15764-15771
The sliver (Ag) modified zinc oxide (ZnO) nanorods were successfully obtained with a simplified and environmentally friendly solvothermal method. Materials characterization indicated that the metallic Ag was located on the outside of ZnO nanorods after annealing. In comparison with ZnO nanorods, Ag modified ZnO (Ag–ZnO) nanorods exhibited a considerably enhanced response to C2H2. The response of the 3 at% Ag–ZnO based sensor operating at 175 °C is 539 (Ra/Rg), which is the highest value among all the sensors in detecting 100 ppm C2H2. The Ag–ZnO based sensors exhibited fast response speed, lower operation temperature and higher selectivity.  相似文献   
45.
付海  郑兴莉  刘心韵  龚维  陈卓  尹晓刚 《塑料》2020,49(1):34-38
采用3种钛酸酯偶联剂改性超细磷石膏(UPG),将改性后的UPG添加到高密度聚乙烯(HDPE)中,研究了钛酸酯偶联剂结构对UPG/HDPE复合材料力学性能的影响。结果表明,钛酸酯偶联剂改性的UPG接触角增大,吸油值降低,201-UPG改性效果最佳,接触角和吸油值分别为106.25°和0.23。与UPG/HDPE复合材料相比,101-UPG/HDPE、201-PG/HDPE、311-UPG/HDPE复合材料的拉伸性能、弯曲性能和冲击性能得到了一定的提高,在101-UPG/HDPE复合材料中的效果最佳,分别提高了42.41%、64.04%、174.65%。SEM测试表明,加入了钛酸酯改性剂的UPG在HDPE中的分散效果较佳;流变测试显示,101-UPG/HDPE复合材料的黏度比HDPE明显提高。  相似文献   
46.
栗小茜  葛正浩 《中国塑料》2020,34(1):92-101
综述了聚四氟乙烯(PTFE)无机材料填充改性中纤维填充改性,颗粒填充改性以及复合填充改性三大类的改性研究进展。介绍了不同无机填料对于PTFE复合材料的力学性能以及摩擦学性能的影响,包括摩擦因数、拉伸强度以及材料硬度等,发现铜(Cu)粉、二硫化钼(MoS2)以及玻璃纤维(GF)等无机填料成本较低且对PTFE的力学性能以及摩擦学性能改善较为明显,更能满足实际工程应用。最后,分析了国内外近年来研究中所存在的问题,并提出了解决方向。  相似文献   
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48.
In the present work, we report a chemically modified polyacrylamide/silica nanoporous composite adsorbent for the removal of reactive black 5 (RB5) azo dye from aqueous solutions. The composite adsorbent was synthesized in a packed bed and modified by ethylenediamine (EDA). The adsorbent was characterized by Fourier transformation infrared (FT-IR), thermogravimetric analysis (TGA), thermoporometry, Brunauer, Emmett and Teller (BET) method and scanning electron microscopy (SEM). Mechanical stability of the adsorbent was examined in a packed bed by following the back-pressure of the column. Pore diameter of the composite adsorbent in dry and wet states was estimated to be about 18.71 nm and 12.61 nm, respectively. Adsorption experiments were performed in batch mode and effect of various operational parameters on the adsorption capability of the adsorbent was studied systematically. The maximum adsorption capacity of the modified composites was found to be 454.5 mg RB5/g of adsorbent. The equilibrium data were analyzed by Langmuir, Freundlich, Sips, BET and Redlich–Peterson isotherm models and found to fit well to the BET isotherm. The data kinetically followed the pseudo-second-order model. High adsorption capacity, fast removal mechanism, and good mechanical stability are three advantages of the presented composite for the removal of RB5.  相似文献   
49.
The objective of this study was to modify highly insulative and lightweight biorenewable foam thermosets to be semi-conductive for primarily building material applications. The foams were formed and then post-treated with in-situ polymerization of polyaniline, both doped and undoped, adsorbing and possibly absorbing (observed by SEM-EDX) to the foam structure at levels of 100–120 wt%.The modified tannin foams were shown to be semi-conductive in comparison to the highly insulative structure prior to polyaniline modification. While the 50% protonated polyaniline modified foams, or doped foams, had a higher conductivity than the undoped polyaniline modified foams, the acid used in fabrication of the foams provided some degree of conductivity to the undoped PANI modified foams. Moreover, the modified foams had an increased volume of 15% after modification, were more sensitive to moisture, and the polyaniline did not affect the degradation temperature of the foams.  相似文献   
50.
The use of proteins as therapeutics has a long history and is becoming ever more common in modern medicine. While the number of protein-based drugs is growing every year, significant problems still remain with their use. Among these problems are rapid degradation and excretion from patients, thus requiring frequent dosing, which in turn increases the chances for an immunological response as well as increasing the cost of therapy. One of the main strategies to alleviate these problems is to link a polyethylene glycol (PEG) group to the protein of interest. This process, called PEGylation, has grown dramatically in recent years resulting in several approved drugs. Installing a single PEG chain at a defined site in a protein is challenging. Recently, there is has been considerable research into various methods for the site-specific PEGylation of proteins. This review seeks to summarize that work and provide background and context for how site-specific PEGylation is performed. After introducing the topic of site-specific PEGylation, recent developments using chemical methods are described. That is followed by a more extensive discussion of bioorthogonal reactions and enzymatic labeling.  相似文献   
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