• 对比研究增白剂水溶液中的紫外吸收荧光发射光致异构化现象及其应用性能

    The ultraviolet absorption in aqueous solutions, fluorescence emission properties, photoinduced isomerization phenomena and application properties of the two kinds of FBs were observed.

    youdao

  • 测试产物紫外吸收性能UV-9进行比较分析了金属-卟啉引发体系引发环氧类单体的“不死聚合”的反应过程

    The product's ultraviolet absorbency is measured, and compared with UV-9. The reaction process of immortal polymerization is analyzed.

    youdao

  • 本试验借助于721分光光度计对纳米二氧化紫外吸收降解性能进行了初步研究

    It is preliminary studied the ultraviolet absorption character of CeO2 nanoparticles were used for degrading helianthine with the help of the 721-type spectrophotometer.

    youdao

  • 就提纯天然染料大黄染色性能以及大黄染色织物紫外吸收性能进行研究

    The dyeing behavior of extracted natural pigments of Rheum was discussed and dyed fabric's ultraviolet absorbing was characterized in this paper.

    youdao

  • 主要用于聚氯乙烯不透明制品稳定剂,其绝缘性耐候性紫外线吸收性能良好

    It is mainly used as stabilizer for non-transparent PVC products, having excellent performance of electrical insulation, weather resistance and ultraviolet absorption.

    youdao

  • 添加紫外线吸收剂,可以提高聚氨酯紫外线照射性能

    Properties of preventing ultraviolet ray of polyurethane are raised after adding ultraviolet ray absorbent.

    youdao

  • 染料水溶液磁化处理后,染液的电导率增大趋势,染液的紫外吸收光谱有所变化上染性能也发生改变。

    An aqueous dye solution, after being magnetized, tends to increase its electric conductance and change its U. V. spectrum and dyeing properties.

    youdao

  • 采用紫外-可见吸收光谱荧光光谱循环伏安研究了该配合物的光电性能

    Its UV-Vis absorption spectrum, fluorescence spectrum and cyclic voltammetry were studied for photoelectric properties.

    youdao

  • 本文利用色度色差分析紫外可见吸收光谱等研究了非偶氮皮革专用新型染料一皮革LR-N的染色性能

    The dyeing properties of new non-azo dye (Leather Black LR-N) for leather were studied by Color Difference analysis and UV-Vis spectroscopy.

    youdao

  • 通过其进行紫外—可见光谱饱和吸收特性测试发现其具较好的反饱和吸收性能和较大的线性透过率。

    The compounds were characterized in the UV-VIS spectra and the reverse saturable absorption measurements of the composite materials were performed.

    youdao

  • 紫外吸收聚烯烃制品户外使用时,综合性能长期保持极大的提高

    Long-term retaining rate of the comprehensive property of the polyolefin articles containing the ultraviolet absorber during outdoor use is greatly enhanced.

    youdao

  • 透射电子显微镜、扫描探针显微镜紫外-可见分光光度计重分析仪表征复合材料物理性能分析了其吸收稳定性提高机理

    The physical properties are characterized by TEM, SPM, UV-Vis and TGA. The mechanism of absorption blue-shift effect and the improving of thermal stability of nanocomposite materials are analyzed.

    youdao

  • 描述了有关专业术语紫外线吸收屏蔽剂性能应用范围、安全性问题法规上的禁忌配方使用,展望防晒剂未来的发展趋势

    Some professional terms, the function, usage, safety concerns, legal prohibition, formulation tips are described. Meanwhile, the future trends of UV absorbers and blocks are also included.

    youdao

  • 通过红外光谱紫外-可见光吸收光谱荧光光谱对其性能进行表征

    The properties of above materials were characterized by infrared absorption spectra, UV-Vis absorption spectra and fluorescence spectra.

    youdao

  • 二氧化钛氧化锌硫化化镉半导体材料紫外具有很好吸收性能

    Semiconductor materials, such as titania, zinc oxide, cadmium sulfide and cadmium telluride have excellent UV absorption property to generate photoelectrons, which form photocurre…

    youdao

  • 利用X射线衍射紫外-可见光吸收光谱、光致荧光光谱研究不同组分结构变化对聚合物形态和光物理性能影响

    Xray diffraction, UV-Vis absorption and photoluminescence spectroscopy were used to study the effect of the structures on the modalities and optical properties of the copolymers.

    youdao

  • 本文研究组分酸锂晶体可见光折变紫外吸收紫外光折变性能影响,发现了光折变中心种类和数量随晶体组分的渐变行为。

    The influence of Li composition on VIS-light photorefraction, UV-light-induced Absorption and UV-light photorefraction in pure LiNbO3 crystals at low light intensity was investigated.

    youdao

  • 本文研究组分酸锂晶体可见光折变紫外吸收紫外光折变性能影响,发现了光折变中心种类和数量随晶体组分的渐变行为。

    The influence of Li composition on VIS-light photorefraction, UV-light-induced Absorption and UV-light photorefraction in pure LiNbO3 crystals at low light intensity was investigated.

    youdao

$firstVoiceSent
- 来自原声例句
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定