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991.
自主设计、合成了系列新型邻胺基苯甲酰胺类化合物,并对其进行了杀虫活性、安全性、毒性、工艺、制剂、温室和/或田间防治效果等研究,获得了Ia、Ib和Ic等系列自主知识产权的高杀虫活性化合物.结果 表明化合物Ic等对咀嚼口器害虫如粘虫和小菜蛾等的活性较邻胺基苯甲酰胺类杀虫剂氯虫苯甲酰胺水平相当或更胜一筹,对刺吸口器害虫如蚜虫等的活性远优于氯虫苯甲酰胺及溴氰虫酰胺.田间药效试验进一步证实,Ic等对咀嚼口器害虫如水稻二化螟、稻纵卷叶螟、甜菜夜蛾等的防治效果相当于或优于氯虫苯甲酰胺,对刺吸口器害虫如蚜虫等的防治效果优于溴氰虫酰胺.新型邻胺基苯甲酰胺类化合物Ic等可作为候选杀虫剂进一步研究开发. 相似文献
992.
大功率等离子弧电源电路中电抗器的分布电容直接影响输出电压波形品质,在一些特种应用场合中直接会导致输出停机,如何提前准确检测电抗器的分布电容是系统设计的关键.本文提出了一种电感参数谐振法的大功率电抗器分布电容测试方法和电路,可以精确地测试电抗器的分布电容参数,从而解决了高品质斩波电源系统的设计难题. 相似文献
993.
Youxian Hu Zhenlin Jiang Min Zhu Shiqiang Song Liang Jin Hong Ji Chaosheng Wang Jianhua Wang 《乙烯基与添加剂工艺杂志》2021,27(2):432-444
Polyester is widely used in household products because of its good mechanical properties and wears resistance, but polyester is easy to ignite and inclined to produce droplet, so its application range is limited. The cross-linkable magnesium hydroxide nanoparticles were incorporated into flame-retardant polyester, which enables the phosphorus-containing copolyester with thermal cross-linking and anti-meltdrop properties. The nanoparticles were achieved by in situ polymerization and acted as a nucleating agent for improving the crystalline properties of the copolyester. Furthermore, the nanoparticles also enhanced anti-meltdrop properties and reduced the heat and gas release during the combustion process of the copolyester. The maximum heat release rate and total smoke release reduced by 39.8% and 74.4% compared with pure polyester. Specifically, the combustion products of the nanoparticles and phosphorus flame retardant could act a barrier role by covering the carbon layer to isolate air and heat, thereby resulting in excellent anti-meltdrop properties. The simple modification method reported here realizes the collaborative modification of flame retardant and anti-meltdrop properties of phosphorous flame-retardant copolyesters by thermal cross-linking. 相似文献
994.
Yuning Lou Yajuan Dong Xiaoyong Wang Feirong Gong Min Zhao Zongming Rong 《Journal of surfactants and detergents》2021,24(1):3-13
Two generations of novel linear-dendritic carboxylate surfactants C18-G1-(COONa)2 and C18-G2-(COONa)4 have been synthesized by the divergent method and their structures are characterized by 1H Nuclear Magnetic Resonance and Infrared analysis. The electrical conductivity measurement is used to measure the Krafft temperatures of C18-G1-(COONa)2 and C18-G2-(COONa)4, which are much smaller than those of the corresponding conventional surfactant sodium stearate. The markedly enhanced solubility of two linear-dendritic surfactants is ascribed to the high hydrophilicity of surfactant headgroups induced by the carboxylate and ester groups. The critical micelle concentration (CMC) values obtained from both the electrical conductivity and surface tension measurements indicate that the micellizations of linear-dendritic surfactants become favorable with the increase in the number of the surfactant headgroup. However, the surface activity parameters including the surface tension at the CMC, maximum surface excess, and minimum surface area reveal that C18-G1-(COONa)2 exhibits greater efficiency in absorbing at the air/water interface compared to C18-G2-(COONa)4, owing to their different steric repulsions of the surfactant headgroups. In addition, C18-G1-(COONa)2 and C18-G2-(COONa)4 have higher emulsifying ability than the conventional surfactants sodium stearate and sodium octadecyl sulfate. 相似文献
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Hantae Jo Sofia Brito Byeong Mun Kwak Sangkyu Park Mi-Gi Lee Bum-Ho Bin 《International journal of molecular sciences》2021,22(5)
Mesenchymal stem cells (MSCs) are multipotent stem cells derived from adult stem cells. Primary MSCs can be obtained from diverse sources, including bone marrow, adipose tissue, and umbilical cord blood. Recently, MSCs have been recognized as therapeutic agents for skin regeneration and rejuvenation. The skin can be damaged by wounds, caused by cutting or breaking of the tissue, and burns. Moreover, skin aging is a process that occurs naturally but can be worsened by environmental pollution, exposure to ultraviolet radiation, alcohol consumption, tobacco use, and undernourishment. MSCs have healing capacities that can be applied in damaged and aged skin. In skin regeneration, MSCs increase cell proliferation and neovascularization, and decrease inflammation in skin injury lesions. In skin rejuvenation, MSCs lead to production of collagen and elastic fibers, inhibition of metalloproteinase activation, and promote protection from ultraviolet radiation-induced senescence. In this review, we focus on how MSCs and MSC-derived molecules improve diseased and aged skin. Additionally, we emphasize that induced pluripotent stem cell (iPSC)-derived MSCs are potentially advanced MSCs, which are suitable for cell therapy. 相似文献