闪锌矿
- 名sphalerite; blende
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闪锌矿中杂质Fe存在形式的重新认识
New cognition of the existing form of impurity Fe in sphalerite
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Cd主要取代Fe而进入闪锌矿晶格中。
Cd substituted Fe into the main sphalerite lattice .
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P型闪锌矿半导体带内光吸收的计算
Calculation of intraband optical absorption in p-type zincblende structure semiconductors
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Ca(OH)2体系中铁闪锌矿和磁黄铁矿的电化学行为差异
Difference in Electrochemical Behavior Between Marmatite and Pyrrhotite in Ca ( OH ) _2 System
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高铁闪锌矿加压浸出过程中Fe的动力学研究
Kinetic study of iron on pressure leaching marmatite
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XRD研究表明,产物为立方闪锌矿结构;
XRD results indicated that the products are of cubic zinc blende structure .
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In和Ga主要存在于闪锌矿中。
In and Ga are present largely in sphalerite .
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ICP-AES测定闪锌矿中9种元素的方法
The Method of Determination Nine Kinds Elements in Sphalerite by ICP-AES
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闪锌矿GaN(001)表面的电子结构
Electronic Structures of Zinc-Blende GaN ( 001 ) Surface
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闪锌矿GaN(110)表面原子和电子结构的理论计算
Theoretic Calculation of Atom and Electronic Structure for Zinc-blende GaN ( 110 ) Surface
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高铁闪锌矿高压酸浸过程中ZnS-FeS-H2O系的电位-pH图
The ε - pH Figure of ZnS-FeS-H_2O System during Acid Leaching under Pressure of High Iron Sphalerite
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立方闪锌矿结构ZnS纳米线的合成与表征
The synthesis and characterization of ZnS nanowires with zinc blende structure
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GaAs具有闪锌矿结构,是一种直接带隙半导体。
GaAs has the structure of zinc blende and is a kind of direct band gap semiconductor .
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闪锌矿结构Zn(1-x)MnxSe混晶光学声子行为
Optical Phonon Behavior of Mix-Crystal Zn_ ( 1-x ) Mn_xSe with Zinc Blende Structure
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闪锌矿型CdTe电子结构和光学性质的第一性原理
First-principle calculations of electronic structure and optical properties of Zinc blende CdTe
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此方法应用于水样、生物样和闪锌矿中痕量Se的测定,得到的结果令人满意。
The method was applied to the determination of trace selenium in water , biological materials and sphalerite with satisfactory results .
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黄铁矿中Co、Ni含量及Co/Ni比值较低,Se、Te和As含量较高。闪锌矿富Fe、Cd、In、贫Ga、Ge和Se。
Co and Ni contents and Co / Ni ratio are low and Se , Te , As contents are high in pyrite .
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XRD显示:采用非极性有机溶剂得到的产物均为立方闪锌矿结构,水和乙二胺为溶剂得到的产物为立方六角两相共存。
XRD displayed the samples made in organic solvents were cubic , both cubic and hexagonal structures were obtained in water and ethylenediamine .
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单分散闪锌矿型CdSe量子点的合成及表征
Synthesis and Characterization of Monodisperse CdSe Quantum Dots with Zinc Blende Structure
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本文对不同含Fe量的天然闪锌矿测定并分析了Fe的K边EXAFS谱,同时对低温光吸收谱及穆斯堡尔谱进行了研究。
The K-edge EXAFS spectra , optical absorption spectra and Mossbauer spectra of Fe in sphalerite differing in Fe contents are examined .
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闪锌矿结构GaN、AlN和合金Ga(1-x)AlxN光学性质计算
Calculation of Optical Properties of Zinc blende GaN , AlN and Their Alloys Ga 1 x Al x N
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含铁闪锌矿热容与其FeS含量的关系
Relationship Between the Heat Capacity and the Content of FeS in Fe rich Sphalerite
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采用简单的乙二胺辅助方法合成出闪锌矿型结构的CdSeQDs。
CdSe QDs of zinc blende structure have been synthesized by a simple ethylenediamine-assisted method .
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本文采用电子吸收光谱和分子轨道(MO)-能带理论模型,系统地研究了不同颜色的闪锌矿呈色的机理和本质。
The mechanism of coloration of sphalerite has been studied with the help of optical absorption spectroscopy and the single electron MO-energy band model .
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使用开放溶剂热方法,在液体石蜡中制备出单分散的闪锌矿结构CdS量子点。
The main research results are shown as followed : Using the organic solvent method , nearly mono-dispersed CdS nanocrystals were obtained in liquid paraffin .
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Cd在深色闪锌矿中而Ge和Ga在浅色闪锌矿中相对富集,Se在不同颜色闪锌矿中含量几乎不变。
Cd occurs mostly in dark colour sphalerite , Ge and Ga in light colour one , the content of Se does not change in different colour sphalerite .
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结果表明,在Ca(OH)2体系中,铁闪锌矿和磁黄铁矿表面都有一个不断被强烈氧化的电极过程,并生成SO42-离子。
The results show that there is a strong oxidized electrode process and SO 2 - _4 ions formation on the surfaces of marmatite and pyrrhotite in Ca ( OH ) _2 system .
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计算结果为基于闪锌矿结构晶体参量振荡产生THz波提供了深入和全面的理论基础。
The calculated results provide a theoretical basis for using optical parametric method in zinc-blende structure crystals to generate THz-wave . 4 .
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对闪锌矿的研究,得到了杂质Fe绝大部分以六配位的形式存在的结果,这与传统的观点不同;
The result that most of the iron in sphalerite are 6 - fold coordinated is demonstrated and it is different from the traditional idea about the existing form of iron in sphalerite .
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本文论述了羧甲基纤维素钠(CMC)在浮选分离闪锌矿和方铅矿中的作用及对润湿性的影响。试验证明,CMC同时抑制未经金属阳离子活化的闪锌矿和方铅矿;
In this paper , the effect of sodium carboxymethyl cellulose ( CMC ) on flotation separation and wettability of galena and sphalerite is described .