1)photoreactivity光反应活性
1.In order to enhance the photoreactivity of the TiO2 thin films,different concentrations of Fe3+ and La3+ ions were doped into the TiO2 thin films,respectively.为了增强TiO2薄膜的光反应活性,对TiO2薄膜分别进行了不同浓度的Fe3+和La3+离子掺杂。
英文短句/例句
1.Photoreactivity Studies of TiO_2 Thin Films Doped with Fe~(3+) and La~(3+) Ions掺杂Fe~(3+)与La~(3+)离子的TiO_2薄膜光反应活性的研究(英文)
2.Study on Emission Spectra of Reaction between Active Nitrogen with Bromine活性氮与溴分子反应的发射光谱研究
3.Study of Enzyme Transesterification in Solvents with Fluorospectrophotometry荧光分光光度法研究酶在非水相体系中的转酯化反应活性
4.Mechanism Study on Photo-assistant Reducing Decolorization of Active Red in Aqueous Solution活性艳红水溶液的光助还原脱色反应机理研究
5.EFFECT OF CALCINATION TEMPERATURE ON THE PHOTOCATALYTIC ACTIVITY OF NITROGEN-DOPED TiO_2反应温度对氮掺杂TiO_2光催化剂活性影响研究
6.Photocatalytic Degradation of Environmental Pollutants:The Active Species and Reaction Mechanism环境污染物的光催化降解:活性物种与反应机理
7.The adsorption effect of active carbon provided a high-concentration environment to increase the reaction rate.活性炭的吸附作用为光催化反应提供高浓度环境,加速了反应速率。
8.Capable of responding to light photoelectrically.光敏的,光激活的能以光电形式对光反应的
9.Stability and reactivity稳定性和反应灵活性
10.chemically reactive dyes活性染料,反应性染料
11.Highly reactive and delocalized electrons would react with photons.高度活性和非定域的电子应该能够与光子起反应。
12.Study on the sensitization effect of surfactants on the fluorescence reaction of Zr-quercetin and its application表面活性剂对锆—栎精荧光反应增敏作用的研究及其分析应用
13.Photometric Determination of Microamounts of Cationic Surfactants by the Color-Fading Reaction of Congo Red with Chitosan应用刚果红-壳聚糖褪色反应光度法测定微量阳离子表面活性剂
14.Studies of Metal Complex Reacting with DNA by Electrochemical and Spectra Method;电活性金属络合物与DNA反应的电化学与光谱研究
15.The Intramolecular Hydrogen Transfer of HMB and Its Analogue as Well as Their Photosensitization;菌生素及其类似物的分子内氢传递反应与光敏活性
16.The Study on the Asymmetric Addition Reaction of Zinc Diethyl with Aromatic Aldehyde Catalyzed by Optically Active γ-amino Alcohol;光学活性γ-氨基醇催化二乙基锌与芳香醛不对称加成反应的研究
17.Vibration Frequency of Infra-red Spectroscopy and Activity of Reaction in Carbonyl Compounds;红外光谱振动频率与羰基化合物反应活性关系的研究
18.Effects of the Neem Extracts on Bioactivity, Physiological and Biochemical Responses in Anoplophora Glabripennis印楝提取物对光肩星天牛生物活性及生理生化反应的影响
相关短句/例句
reactivity[,ri(:)?k'tiviti]反应活性
1.The reactivity of phosphate rock and its evaluation study;磷矿的反应活性及其评价方法研究
2.Relationship between the reactivity of a phenolic compound in condensation reaction for phenolic resin and ~(13)C chemical shift on the benzene ring;酚单体反应活性与苯环碳原子化学位移的关系
3.Investigation on the influence of the reactivity of lime on the production of bleaching powder concentrate;石灰反应活性对漂粉精生产的影响
3)reactive activity反应活性
1.Study on the technology of improving reactive activity of ludwigite from Wengquangou;提高翁泉沟硼铁矿反应活性的工艺研究
2.Study on reactive activity and resistance to retardancy of phosphate rock;磷矿反应活性和抗阻缓性研究
3.The reactive activity, dynamic mechanical behavior, impact property and morphology of the curing system were systematically investigated by DSC, DMA, impact tester and SEM respectively.利用DSC、动态热机械分析仪 DMA、冲击试验机及扫描电镜 (SEM)等手段对 TI改性的环氧树脂 E- 5 1/甲基四氢化邻苯二甲酸酐 (MTHPA)固化体系的反应活性、动态力学行为、冲击性能、断裂面形态结构进行了系统研究。
4)reaction activity反应活性
1.DFT study on the conformers and C-C bond reaction activity of oxalyl bromide cation;草酰溴一价正离子(BrCO)_2~+几何构型及反应活性的DFT研究
2.The relationship between pentose structure and reaction activity was analyzed and compared.采用HS-SPME与GC-MS结合的方法,通过对戊糖的4种立体异构物(核糖、木糖、阿拉伯糖、来苏糖)与半胱氨酸Maillard反应挥发性产物的分析,确定了部分挥发物的相对质量分数,并对其随反应时间的变化情况进行了比较分析,进而推测戊糖的结构与反应活性的关系。
3.Differential scanning calorimetry (DSC) was employed to detect the reaction activity and curing schedule of ternary blend system. 采用差示扫描量热法(DSC)研究了氰酸酯树脂/环氧树脂/线性酚醛树脂三元共聚体系的反应活性,制定了体系的固化工艺,并研究了以三元树脂体系为基体的玻璃布层压板的力学性能、介电性能以及耐湿热性。
5)active reaction活性反应
6)UV-curing activity紫外光固化反应活性
延伸阅读
光反应和暗反应植物的光合作用有两个反应过程,光反应和暗反应,光反应需要光才能进行,而暗反应不需要光,在黑暗处也可以进行。光合作用的光反应是放出氧气的反应。先通过光能,将水分解成氢气和氧气,氧气释放出来,同时将光能转化为化学能,帮助二磷酸腺苷(adp)合成三磷酸腺苷(atp),光能转化成的化学能储存在atp中。氢气和atp供暗反应使用。光合作用的暗反应是合成有机物供植物利用的反应。植物从空气中吸收的二氧化碳,化学性质不活泼,不能直接被氢气还原,需要先进行二氧化碳的固定,一个二氧化碳分子和一个五碳化合物分子形成两个三碳化合物分子,三碳化合物分子通过atp和多种酶的作用,被氢还原,经过一系列复杂的变化,形成葡萄糖,这样,atp中的能量就释放出来,储存在葡萄糖中。这就是光合作用的全过程,简言之,就是通过光能使得无机物合成有机物,并把能量储存在有机物中。
