卤化银,silver halide
1)silver halide卤化银
1.The Effect of Ionic Bond with Partical Covalent Character on the Properties of Silver Halide;共价性对卤化银性质的影响
2.Photoelectron properties in silver halide with uniformly doped formate ions;甲酸根离子均匀掺杂的卤化银中的光电子特性
3.A Comparative Study on the Production Technologies of Traditional Silver Halides Photomaterials and Integrated Circuits;传统卤化银感光材料的生产工艺与集成电路制造工艺比较研究
英文短句/例句

1.processing of silver halide photographic material卤化银感光材料的冲洗
2.silver halide particle-track detector卤化银粒子径迹探测器
3.Research on the Performance of Ag/AgCl and Ag/AgX Reference Electrode Prepared by Thermal-dip Coating Method热浸涂银/氯化银和银/卤化银参比电极性能研究
4.The photographic elements contain a blue-sensitive hydrophilic colloid silver halide emulsion layer.照像材料含有亲水胶体的感蓝卤化银卤剂层。
5.manufacture of silver halide photographic material卤化银感光材料生产工艺
6.Doping Characteristics of Shallow Electron Traps in Silver Halide Microcrystals;卤化银微晶中的浅电子陷阱掺杂特性
7.Effect of Reduction Methods on Ag/AgX Reference Electrodes Prepared by Thermal Dip-coating Method还原方法对热浸涂银/卤化银参比电极的影响
8.Effect of Raw Material Propotions on Performance of Ag/AgX Reference Electrode原料配比对银/卤化银参比电极性能的影响
9.IMPACT OF NANOTECHNOLOGY ON THE ADVANCE OF SILVER HALIDE TECHNOLOGY纳米科技的发展对卤化银技术进步的影响
10.Sensitization of Silver Halide Grains Emulsion Doped with Carboxylic Salt;羧酸盐掺杂卤化银颗粒乳剂的增感效应研究
11.The Kinetic Study of the Ultrafast Electron Transfer from Sensitized Dyes to Silver Halide Microcrystals;卤化银染料增感体系超快电子转移动力学研究
12.The Investigation of Photoelectron Characteristics in Silver Halide Doped with Formate Ions;甲酸根离子掺杂的卤化银中光电子特性研究
13.The silver in the stripe is converted to silver halide by treating it with a ferricyanide-bromide bleach.至于胶片上的银,用铁氰溴化物漂白液处理以转换成卤化银
14.The exposed silver halide is then converted to metallic silver by an agent in the developer.在显影液中某种试剂的作用下,已感光的卤化银可转变成金属银。
15.Photographic silver halide emusions are spectrally sensitized with a tricarbocyanine dye.照像卤化银乳剂是用三碳青染料进行光谱增玉的。
16.Photographic silver halide emulsious are spectrally sensitized with a tricarbocyanine dye.照像卤化银乳剂是用三碳菁染料进行光谱增感的。
17.1,8-DIHYDROXY-3,6-DITHIAOCTANE AS SILVER HALIDE CRYSTAL GROWTH-ACCELERATING AGENT1,8-二羟基-3,6-二硫代辛烷用作卤化银乳剂微晶体生长的促进剂
18.Untrafast Kinetics of Electron Transfer from J-Aggregated to AgBrI Microcrystals Sensitized by Anionic-cationic Cyanine Dyes;阴阳离子菁染料增感卤化银体系电子转移超快动力学研究
相关短句/例句

Ag/AgX银/卤化银
1.Effect of Reduction Methods on Ag/AgX Reference Electrodes Prepared by Thermal Dip-coating Method还原方法对热浸涂银/卤化银参比电极的影响
3)halogen silver,silver halide卤化银<复>
4)silver halide emulsion卤化银乳剂
1.The effects of microwave irradiation on the photographic properties of the silver halide emulsion were studied.微波照射下不会导致卤化银乳剂自发光解。
2.In this paper, silver halide emulsion with mean size of 165nm has been prepared by single-jet method, on which the effects of a kind of hypersensitizer, Zinc (II)-EDTA have been tested.利用单注法制备了平均粒径 16 5nm的卤化银乳剂 ,在此乳剂中试验了一种过增感剂Zn(Ⅱ ) -EDTA的增感作用。
3.According to the results,a rule of the sensitization effect of crown ether on silver halide emulsion may be.系列冠醚化合物对卤化银乳剂的增感作用初探符玉华,金磊,赵艳,马凤云,周本茂(中国科学院感光化学研究所,北京100101)关键词冠醚,卤化银乳剂,增感作用微粒高感是卤化银感光材料的发展方向。
5)silver halide microcrystal卤化银微晶
1.The new preparation technology of silver halide microcrystals in high speed color negative film in recent years is reviewed, and the effect of the structure of silver halide microcrystals on their photographic properties is discussed.本文叙述了近年来高速彩色负片采用的新的卤化银微晶制备技术,并就卤化银微晶的结构对感光性能的影响进行了分析。
6)silver halide microcrystals卤化银微晶
1.The action curves of free photoelectrons and shallow-trapped electrons in silver halide microcrystals were obtained by microwave absorption phase-sensitivity detection technique.本文采用微波吸收相敏检测技术 ,得到了卤化银微晶的自由光电子与浅束缚光电子的产生与衰减曲线 ,对比光电子产生量与激发光强之间的关系 ,验证了Gurney Mott理论的光吸收过程 ,分析了不同类型卤化银材料中光电子的衰减特性 ,讨论了卤化银微晶中光电子行为对其感光性能的影响。
延伸阅读

卤化银分子式:CAS号:性质:银的卤化物总称。化学式AgX(X=F-,Cl-,Br-,I-)。氟化银、氯化银为白色,溴化银为淡黄色,碘化银为黄色。除碘化银为硫化锌(ZnS)型晶格外,其他卤化银都属于氯化钠(NaCl)型晶格。氟化银可溶于水,其余皆微溶于水,溶解度由氯至碘的顺序而降低。氟化银是离子型化合物,其他卤化物都有一定的共价性。氯化银溶于稀氨水,溴化银溶于浓氨水生成配位化合物,而碘化银不溶于氨水。卤化银特别是氯化银、溴化银因具有感光性用于制造照相材料—软片、印刷纸、硬片。氯化银用于制字宙射线的电离检测器。碘化银可作为沉淀过冷云的晶核试剂,用于人工降雨中。