英语翻译对有机聚合物发光材料的研究越来越受到人们的重视,并且有机聚合物具有很多优点,如:良好的加工性能、成膜性能.本论文合成的聚吡咯甲烷,通过紫外光谱分析可知,在200~400nm左右

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英语翻译对有机聚合物发光材料的研究越来越受到人们的重视,并且有机聚合物具有很多优点,如:良好的加工性能、成膜性能.本论文合成的聚吡咯甲烷,通过紫外光谱分析可知,在200~400nm左右

英语翻译对有机聚合物发光材料的研究越来越受到人们的重视,并且有机聚合物具有很多优点,如:良好的加工性能、成膜性能.本论文合成的聚吡咯甲烷,通过紫外光谱分析可知,在200~400nm左右
英语翻译
对有机聚合物发光材料的研究越来越受到人们的重视,并且有机聚合物具有很多优点,如:良好的加工性能、成膜性能.本论文合成的聚吡咯甲烷,通过紫外光谱分析可知,在200~400nm左右有明显的光学吸收;通过荧光光谱分析可知,以二氯甲烷作溶剂合成的聚吡咯甲烷激发波长在370nm,发射波长在460nm左右;以1,4-二氧六环作溶剂合成的聚吡咯甲烷激发波长在335nm,发射波长在470nm左右.聚吡咯甲烷是一种典型的发蓝色光的材料.但是在不同溶剂中,样品的发射波长和荧光强度差别比较明显;通过X射线衍射谱分析可知该样品的聚集态是完全非晶态.

英语翻译对有机聚合物发光材料的研究越来越受到人们的重视,并且有机聚合物具有很多优点,如:良好的加工性能、成膜性能.本论文合成的聚吡咯甲烷,通过紫外光谱分析可知,在200~400nm左右
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The research on organic light-emitting polymer materials is paid more and more attention,and organic polymers have many advantages,such as good processing performance,film-forming performance.The polypyrrole methane synthesized in this paper has obvious optical absorption at about 200 400nm,which can be seen from UV spectral analysis.It can also be found by fluorescence spectroscopy that the methylene chloride synthesized using 1,4 - dioxane has an excitation wavelength of 335nm,and an emission wavelength of about 470nm.Polypyrrole methane is a typical blue-emitting materials.But in different solvents,the emission wavelength and fluorescence intensity of the samples has rather obvious difference.In addition X-ray diffraction analysis shows that the aggregation state of the sample is completely amorphous.

Research on organic polymer light-emitting materials have been paid more and more attention, and the organic polymer has many advantages, such as: the film-forming performance, good processing perform...

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Research on organic polymer light-emitting materials have been paid more and more attention, and the organic polymer has many advantages, such as: the film-forming performance, good processing performance. In this paper, the synthesis of polypyrrole methane, by ultraviolet spectroscopy analysis, significant optical absorption at about 200~400nm; the fluorescence spectrum analysis, using dichloromethane as solvent to synthesize polypyrrole methane excitation at the wavelength of 370nm, emission wavelength of around 460nm; to 1,4- two oxygen ring six as solvent to synthesize polypyrrole methane excitation wavelength in 335nm at about 470nm, emission wavelength. Polypyrrole methane is a typical blue light emitting materials. But in different solvents, emission wavelength and fluorescence intensity difference samples is obvious; the X ray diffraction spectrum aggregation analysis indicated that the samples are amorphous.

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The research of organic polymer luminescent material more and more get people's attention, and organic polymer has many advantages, such as: good processing performance, film forming performance. This...

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The research of organic polymer luminescent material more and more get people's attention, and organic polymer has many advantages, such as: good processing performance, film forming performance. This paper synthesized polypyrrole methane by ultraviolet spectrum analysis shows that in 200 ~ 400 nm has obvious optical absorption; By fluorescence spectrum analysis shows that with dichloromethane as solvent to synthesize polypyrrole excitation wavelength at 370 nm, methane emission wavelength at around 460 nm; With 1, 4 - dioxane as solvent to synthesize the polypyrrole excitation wavelength at 335 nm, methane emission peak at about 470 nm. Polypyrrole methane is a kind of typical blue color material. But in different solvents, emission wavelength and fluorescence intensity of samples are the obvious difference; Through X-ray diffraction spectrum analysis on the state of aggregation is completely amorphous sample.对有机聚合物发光材料的研究越来越受到人们的重视,并且有机聚合物具有很多优点,如:良好的加工性能、成膜性能。本论文合成的聚吡咯甲烷,通过紫外光谱分析可知,在200~400nm左右有明显的光学吸收;通过荧光光谱分析可知,以二氯甲烷作溶剂合成的聚吡咯甲烷激发波长在370nm,发射波长在460nm左右;以1,4-二氧六环作溶剂合成的聚吡咯甲烷激发波长在335nm,发射波长在470nm左右。聚吡咯甲烷是一种典型的发蓝色光的材料。但是在不同溶剂中,样品的发射波长和荧光强度差别比较明显;通过X射线衍射谱分析可知该样品的聚集态是完全非晶态。
望采纳,谢谢!

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英语翻译对有机聚合物发光材料的研究越来越受到人们的重视,并且有机聚合物具有很多优点,如:良好的加工性能、成膜性能.本论文合成的聚吡咯甲烷,通过紫外光谱分析可知,在200~400nm左右 什么是有机发光材料 常用的有机高分子聚合物有哪些? 英语翻译随着高薪科学技术的应用,工业生产技术水平不断地提高.高速、高效、高质的运行模式已成为人们日益追求的目标,造成对机械零部件的综合性能要求也越来越高.所以研究和发展材料 能发光的有机分子成为可应用的材料还需具备哪些性质? 英语翻译高分子电解质、共轭体系聚合物、电荷转移络合物和金属有机螯合物复合型聚合物 英语翻译随着低温地板辐射采暖在我国日益广泛的应用,各种辐射采暖材料也蓬勃发展起来.如何选取材料对辐射采暖的效率影响巨大,越来越多的公司集团在纷纷引进国外研究材料的同时也不 有机材料和有机高分子材料的区别 英语翻译这种以太阳光和空气中为条件的光催化氧化降解水中有机污染物技术是当前非常活跃的研究领域. 并对其进行了自组装,获得了一种含硫四氮杂卟啉的纳米球,期望这种纳米材料具有 什么是聚合物的结晶和取向,它们有何不同,研究结晶和取向对高分子材料加工有何实际 有机电致发光材料的英文? 现在的锂离子聚合物电池的寿命是否越来越短?现在的锂离子聚合物电池的寿命是否越来越短,手机做的越来越薄但是对电池需求却越来越大,在相同体积下塞进更大容量的电池寿命是否有影响? 聚合物混凝土中所加的聚合物算是胶凝材料吗 有机聚合物的浊度是怎么定义的?与什么因素有关?如果一种有机聚合物的成分确定了,它的浊度就是一定的么 随着人们越来越重视食物的安全问题,绿色有机食物就成为了人们首选食物 英语翻译 热分析在高分子材料上的应用聚合物尺寸研究 高聚物结晶结构 聚合物各种反应速度的研究 测定聚合物玻璃化转变温度 聚合物热稳定性研究 以上几条全都包括么? 一般添加在土壤里的有机材料有哪些来于课题:不同有机材料的添加对土壤物理化学性质的影响 为什么很少用金属作为聚合物的增强材料