1、

The raw materials contain two structures of ZnS, which are wurtzite and zinc blende respectively.

常压下纳米硫化锌球壳为纤锌矿结构和闪锌矿结构共存的混相结构.

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2、

Analyses were given to the optical and EPR spectrum of ZnS: Cr ~ ( 2 + ).

本文通过对ZnS:Cr~(2+)晶体光学吸收谱及EPR谱的观测资料的分析,发现Cr~ ( 2+ ) 杂质的有效晶场并非常所认为的四硫配位四面体结构.

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3、

Dyskinesia was not increased in ZNS groups.

运动障碍的出现在ZNS组中并未增加.

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4、

The films of ZnS and MgF _ 2 at low substrate temperatures deposited by ICB become hard films.

基底不加温就可以得到ZnS、MgF_2的硬膜.

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5、

Infrared polycrystal optical materials ZnS were manufactured using chemical vapor deposition ( CVD ) method in this paper.

采用 化学气相沉积 方法成功地生长出硫化锌多晶红外光学材料.

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6、

Nanoparticles ZnS were prepared with ZnO and Na 2 S by solid-liquid chemical reaction under ultrasonic condition.

在超声波作用下,利用氧化锌粉和硫化钠溶液反应制备 纳米 硫化锌.

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7、

Design principle, structure, operation and maintenance of ZNS 3 double wire decker were introduced in this paper.

介绍了ZNS3双网脱水机的设计原理 、 结构 、 操作与维护.

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8、

Thermocompressed polycrystalline ZnS is a functional ceramic material with excellent transmissivity for long infrared wave.

热压多晶硫化锌属于功能性陶瓷材料,对长波红外有良好的透过率.

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9、

Preparation and Optical Properties of ZnS/ HgS/ ZnS/ CdS Quantum Dot Quantum Well System

量子点量子阱ZnS/HgS/ZnS/CdS的制备与光学特性

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10、

Studies of Complexing Action Mechanism in Indirect Determination of Cysteine by FAAS with ZnS

原子吸收硫化锌法间接测定半胱氨酸络合反应的机理研究

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11、

Study of Preparing the ZnS Thin Films by Chemical Bath Deposition

化学水浴制备ZnS薄膜的研究

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12、

Forward biased injection electroluminescence of er~ ( 3+) in ZnS diode

ZnS中Er~(3+)的正向注入电致发光

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13、

ZnS nanorod/ PbS nanoparticle heterostructures were obtained in dodecyl mercaptan, ZnO nanowire/ Pb nanoparticle heterostructures in air and argon gas mixture and ZnO nanorod/ PbO dumbbell heterostructures in air.

其中在十二硫醇中得到ZnS纳米棒/PbS纳米颗粒的异质结构,在空气和氩气的混合气体中得到ZnO纳米线/Pb纳米颗粒的异质结构,在空气中得到了ZnO纳米棒/PbO的哑铃状纳米复合结构。

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14、

The two aminos of amine template favor to act with Zn2+ form uniform and relatively smooth ZnS holey nanospheres, while hydroxyethyl took disadvantage. Reasonable mechanism of hole by H2S rushing out was suggested.

胺模板剂的两个氨基有利于与Zn2+作用而形成均匀、相对光滑的有孔ZnS纳米空球,引入羟乙基则不利,提出了由H2S冲出形成孔的合理机理。

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15、
16、

Development of ZnS base shining ceramic glaze and approach of its shining mechanism

ZnS基发光陶瓷釉的研制及发光机理探讨

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