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941.
以反渗透、纳滤为代表的膜技术已广泛应用于海水和苦咸水脱盐等水处理过程。通过将纳米颗粒添加到传统复合膜基质中,可以制备具有高分离性能和耐污染性的新型膜材料。混合基质膜结合了无机材料及有机聚合物各自的优点,是新型水处理膜材料的发展方向。本文综述了添加无机纳米颗粒的混合基质反渗透、纳滤及正渗透膜的研究进展,详细讨论了不同类型纳米材料的性质和功能,分析了表面有机改性对改善纳米材料分散性以及与聚合物基质相容性的作用,探讨了纳米材料添加方式和膜制备方法对膜结构和性能的影响。在此基础上,进一步探究了混合基质膜的成膜及分离机理,归纳了目前研究中存在的主要问题,并对未来水处理膜材料的研发方向提出了建议。 相似文献
942.
pH-sensitive wettability of polystyrene-b-poly(4-vinylpyridine) (PS-b-P4VP) self assembled films, exhibiting superoleophobicity under water and hydrophilicity at low pH value, and oleophobicity under water and hydrophobicity at neutral condition, has been realized. The wettability properties resulted from the surface topological and chemical transition, which were confirmed by in situ AFM measurements under water at different pH. At low pH, P4VP chains, which were confined in the hexagonal-packed nanodomains, got protonated into a swollen state, while at high pH, P4VP chains were deprotonated into a collapsed state. The reversible protonation/deprotonation procedure on the molecular scale leads to surface topological and chemical transition, thereby pH-sensitive wettability. 相似文献
943.
Network polymers in a rubber or a gel often contain non-uniform chain lengths. By means of dynamic Monte Carlo simulations of polymer mixtures with various compositions of two chain lengths, we investigated how the factor of polydispersity influences their strain-induced crystal nucleation. Under a high temperature and a high strain rate, the stretching of both polymers revealed that crystal nucleation is mainly accelerated by the presence of short-chain polymers; nevertheless, both polymers join together in the nucleation process. Further analysis proved that crystal nucleation is initiated from those highly stretched short segments, which are rich on the short-chain polymers. 相似文献
944.
Lisheng Xu Guizhen Gao Cao Wengen Jigui Xu Liang Zhao Hongwei Shi Xingtao Zhang 《Applied biochemistry and biotechnology》2014,173(4):851-856
A new method for the synthesis of γ-glutamylmethylamide is presented. Glutamic acid γ-methyl ester was used as substrate for γ-glutamylmethylamide synthesis catalyzed by Escherichia coli with γ-glutamyltranspeptidase activity. Reaction conditions were optimized by using 300 mM glutamic acid γ-methyl ester and 3,000 mM methylamine at pH 10 and 40 °C. Bioconversion rate of γ-glutamylmethylamide reached 87 % after 10 h. γ-Glutamyltranspeptidase was reversibly inhibited only when glutamic acid γ-methyl ester was above 300 mM. 相似文献
945.
超级电容器具有功率密度高、充放电速度快、循环寿命长和维护成本低的特点,在电动车动力电池领域具有潜在的应用前景。超级电容器性能主要由其电极材料所决定。聚苯胺易合成、理论比容量高,而且导电性能优异,作为超级电容器电极材料有很高的应用价值。但是,在长期使用过程中,它的体积容易发生膨胀或收缩,循环寿命差。为了解决这个问题,将聚苯胺与石墨烯复合可以扬长避短,充分利用两者之间的协同效应,赋予复合材料优异电化学电容性能。本文综述了超级电容器用石墨烯-聚苯胺复合材料的制备方法,包括原位聚合法、油水界面合成法、电化学合成法、层层自组装法等;提出了三维网状石墨烯和对石墨烯-聚苯胺复合材料进行改性来提高复合材料的电化学电容性能的思路。 相似文献
946.
在室温下,以2-溴苯甲酸和2,2'-联吡啶为配体,通过溶液法在甲醇/水的混合溶剂中反应合成了双核铜(II)配合物Cu2(2,2'-bpy)2(2-bba)4。通过元素分析、红外光谱、热重测试技术和X射线粉末衍射对其进行了结构表征,同时用X射线单晶衍射分析确定了其晶体结构。结果表明,其晶体属正交晶系,空间群为Pbca,晶胞参数:a=20.619(4),b=10.098(2),c=21.865(4),V=4552.5(15)3,Dc=1.808g·cm-3,μ=4.505mm-1,F(000)=2440.0,Z=4,最终残差因子R1=0.0583,wR2=0.1200。配合物为双核结构,每个结构单元中2个Cu(II)离子通过2个2-溴苯甲酸根配体单齿桥联。配合物中的每个Cu(II)离子为五配位的结构,分别和来自2个单齿桥联的2-溴苯甲酸根的2个氧原子、1个单齿配位的2-溴苯甲酸根的1个氧原子及来自1个2,2'-联吡啶的2个氮原子配位形成了畸变的四方锥型结构,分子间则通过弱的C—H…O氢键作用形成了一维链状的结构。CCDC:972827。 相似文献
947.
Fenglan Fan Chengguang Gao Lihua Jia Xiangfeng Guo 《Research on Chemical Intermediates》2014,40(1):157-167
A novel ZnO/Ca(OH)2/KF solid base catalyst was prepared by the grinding method and applied to biodiesel synthesis by the transesterification of soybean oil. The effect of various parameters such as KF molar amount, calcination temperature, the amount of catalyst, molar ratio of methanol to oil, reaction temperature, and time on the activity of the catalyst were investigated. The catalysts were characterized by several techniques of thermogravimetry/derivative thermogravimetry, X–ray diffraction, Hammett indicator method, and scanning electron microscopy. The analysis results indicated that the KF interacted with Ca(OH)2 and formed KCaF3 phase before calcination of the catalyst. The formed KCaF3 crystal phase was the main catalytic active component for the catalyst activity. In addition, the basicity of ZnO/Ca(OH)2/KF was greatly influenced by the different calcination temperates, and the catalyst activity was correlated closely with the basicity. A desired biodiesel yield of 97.6 % was obtained at catalyst amount of 3 %, methanol/oil of 12:1, and reaction time of 1.5 h at 65 °C. 相似文献
948.
对紫外荧光硫分析仪用石英燃烧管进行了结构改进,在原结构设计的基础上,增加了裂解氧预热管、挡板和氧气反吹口等。实验表明,相比于原结构设计的石英燃烧管进样量20μL和检出限0.2 mg/L,改进后的燃烧管进样量提高到了100μL,检出限达0.05 mg/L,线性范围为0.1~600 mg/L,相关系数大于0.999。采用改进后的燃烧管测定10.0 mg/L硫含量标准物质,其相对偏差为–1.5%~3.1%,测定结果的相对标准偏差为1.77%(n=10),两者均符合油品硫含量检测要求。改进后的燃烧管可替代市场上的其它国产石英燃烧管,进行油品中硫含量的测定。 相似文献
949.
Pengfei Xu Dr. Liang Gao Prof. Dr. Chunhua Cai Prof. Dr. Jiaping Lin Dr. Liquan Wang Prof. Dr. Xiaohui Tian 《Angewandte Chemie (Weinheim an der Bergstrasse, Germany)》2020,132(34):14387-14391
Toroids and helices are fundamental geometrical structures in nature. Polymers can self-assemble into various nanostructures, including both toroids and helices; however, nanostructures combining toroidal and helical morphologies (that is, helical toroids) are rarely observed. A binary system is reported containing polypeptide homopolymer and its block copolymer, which can hierarchically self-assemble into uniform helical nanotoroids in solution. The formation of the helical toroids is a successive two-step process. First, the homopolymers aggregate into fibrils and convolve into toroids, thereby resembling the toroidal condensation of deoxyribonucleic acid (DNA) chains. Second, the block copolymers self-assemble on the homopolymer toroids and result in helical surface patterns. Additionally, the chirality of the surface helical patterns can be varied by the chirality of the polypeptide block copolymers. 相似文献
950.
Qiangzhe Zhang Dr. Ronnie H. Fang Dr. Weiwei Gao Dr. Liangfang Zhang 《Angewandte Chemie (Weinheim an der Bergstrasse, Germany)》2020,132(26):10547-10551
Inhibition of phospholipase A2 (PLA2) has long been considered for treating various diseases associated with an elevated PLA2 activity. However, safe and effective PLA2 inhibitors remain unavailable. Herein, we report a biomimetic nanoparticle design that enables a “lure and kill” mechanism designed for PLA2 inhibition (denoted “L&K-NP”). The L&K-NPs are made of polymeric cores wrapped with modified red blood cell membrane with two inserted key components: melittin and oleyloxyethyl phosphorylcholine (OOPC). Melittin acts as a PLA2 attractant that works together with the membrane lipids to “lure” in-coming PLA2 for attack. Meanwhile, OOPC acts as inhibitor that “kills” PLA2 upon enzymatic attack. Both compounds are integrated into the L&K-NP structure, which voids toxicity associated with free molecules. In the study, L&K-NPs effectively inhibit PLA2-induced hemolysis. In mice administered with a lethal dose of venomous PLA2, L&K-NPs also inhibit hemolysis and confer a significant survival benefit. Furthermore, L&K-NPs show no obvious toxicity in mice. and the design provides a platform technology for a safe and effective anti-PLA2 approach. 相似文献