钨酸铅,lead tungstate
1)lead tungstate钨酸铅
1.Template-free synthesis and photoluminescence of double-tower-like lead tungstate类双塔状钨酸铅微晶的无模板合成及光致发光性质
2.And the morphologies of lead tungstate crystal were different when different surfactants of polygycol 200 and cetyltrimethyl ammonium bromide(CTAB) were added in the experiments.以钨酸钠和醋酸铅为原料,分别加以表面活性剂聚乙二醇200和十六烷基三甲苯溴化铵,用沉淀法合成出钨酸铅纳米晶和菱形微晶。
3.The X-ray diffraction analysis indi- cates that the crystallite lead tungstate microcrystals were excellent,and observation results by transmission electron microscopy in- dicate that the rhombic lead tungstate microcrystals with a size of 1-1.以钨酸钠和醋酸铅为原料,加以表面活性剂十六烷基三甲苯溴化铵,用沉淀法制备钨酸铅产物;将钨酸铅产物在100℃烘干后制备了菱形钨酸铅微晶粉体。
英文短句/例句

1.Luminescence Properties of Lead Tungstate Crystals Codoped with Erbium and Ytterbium镱铒双掺钨酸铅晶体发光性能的研究
2.Liquid-phase Synthesis, Characterization and Properties Studies of Zinc Oxide, Zinc Tungstate and Lead Tungstate Nanomaterials氧化锌、钨酸锌、钨酸铅纳米材料的液相合成、表征和性质研究
3.The Growth of Doped PWO Crystals and the Theoretical Calculation of Density Function;掺杂钨酸铅晶体生长及密度泛函理论计算
4.Reserch of Growth and Structure Characteristic of Double Doped Lead Tungstate Single Crystals;双掺杂钨酸铅晶体生长及结构特性的研究
5.Growth Technique and Scintillating Properties of Lead Tungstate Crystal;新型闪烁晶体钨酸铅的生长技术和闪烁性能
6.Study on Growth and Luminescence Properties of PbWO_4 Crystal Doped with Negative Ions阴离子掺杂钨酸铅晶体的生长与发光性能研究
7.STUDY ON THE SCINTILLATING PROPERTIES OF IONS DOPED LEAD TUNGSTATE SCINTILLATION CRYSTALS掺杂钨酸铅闪烁晶体的闪烁光学性质研究
8.Degradation of Molasses Fermentation Wastewater by PbWO_4 Photocatalyst钨酸铅光催化降解糖蜜酒精废水的研究
9.Research of Properties of Doped Lead Tungstate Crystal and Theoretical Calculation of Density Function;掺杂钨酸铅晶体性能的研究及密度泛函理论计算
10.Template-free synthesis and photoluminescence of double-tower-like lead tungstate类双塔状钨酸铅微晶的无模板合成及光致发光性质
11.Methods for chemical analysis of tungsten concentrates--The hydrochloric acid-sodium chloride supporting electrolyte polarographic method for the determination of lead contentGB/T6150.12-1985钨精矿化学分析方法盐酸-氯化钠底液极谱法测定铅量
12.Natural Resources: Coal, gold, tungsten, lead, copper. uranium.自然资源:煤、金、钨、铅、铜、铀。
13.lanthanumdoped lead zirconate-lead titanate掺镧的锆酸铅-钛酸铅
14.STUDIES ON WHITE POWDERY TUNGSTIC ACID (Ⅱ)--THE PREPARATION OF VARIOUS METATUNGSTATES粉状白钨酸的研究(Ⅱ)——从粉状白钨酸制备偏钨酸盐
15.calcium nicotinate [not put up as medicaments]烟酸钨[未配制成药物]
16.Methods for chemical analysis of tungsten concentrates--The ammonium tungstate igniting gravimetric method for the determination of tungsten trioxide contentGB/T6150.1-1985钨精矿化学分析方法钨酸铵灼烧法测定三氧化钨量
17.a mineral consisting of calcium tungstate; an ore of tungsten.一种由钨酸钙组成的矿物,是一种钨矿石。
18.Research on the Preparation of Tungstate Micro-Crystallites with Scheelite Structure by Precicitation Method白钨矿型钨酸盐微晶的沉淀法制备技术研究
相关短句/例句

PbWO_4钨酸铅
1.Preparation and Photoluminescence of PbWO_4 Nanocrystals;钨酸铅纳米晶的制备及其发光性能研究
2.Review of Progress in Lead Tungstate (PbWO_4) Scintillation Crystals;钨酸铅(PbWO_4)晶体的研究概况
3.Thermoluminescence and Optically Stimulated Luminescence of PbWO_4 Doped with Y~(3+);掺钇钨酸铅晶体的热释光和光释光
3)PbWO4钨酸铅
1.PbWO4 crystal is a new kind of inorganic scintillation crystal mater ial,and it has many excellent properties such as high density,short radiant le ngth and fast scintillation velocity,etc.用中频感应加热提拉法成功地生长了无宏观缺陷的大尺寸钨酸铅晶体(PWO),其晶体尺寸为35mm×250mm;确定了晶体生长工艺,其参数为籽晶取向犤001犦、提拉速度1。
2.Lath-like PbWO4 has been synthesized via precipitation method by using a template of cetyltrimethylammonium bromide(CTAB).以十六烷基三甲基溴化铵(CTAB)为模板,采用沉淀法合成了板条状钨酸铅晶体。
3.A design of the forward elements, which consists of a silicon tracker followed by a PbWO4 crystal calorimeter ,of the τ-Charm detector are preaented.它的硅微条粒子径迹探测器和钨酸铅晶体电磁量能器集中了当代粒子物理实验的最新技术。
4)lead nickel tungstate钨镍酸铅
5)lead magnesium tungstate钨镁酸铅
1.Preparation method, crystal structure, sinterability and dielectric properties of Ca_doped lead magnesium tungstate (PMW) ceramics were investigated.研究了Ca掺杂钨镁酸铅 (PMW )陶瓷材料的合成、结构、烧结以及介电性能。
6)lead iron tungstate钨铁酸铅
延伸阅读

钨酸铅分子式:PbWO3CAS号:性质:白色或微黄色粉末,单斜晶白钨矿结构。密度8.235g/cm3。熔点1130℃。不溶于水和冷硝酸,可溶于碱金属氢氧化物溶液中。由钨酸钠和氯化铅作用或由三氧化钨和氧化铅反应制取。用作颜料添加剂。