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。
2.
With increasing pressure,the wurtzite structre was transformed to zinc blende structure at 11.2 GPa.
压力达到11.2 GPa时,纳米硫化锌空心球中的纤锌矿结构全部转变为闪锌矿结构。
3.
PRESERVATION OF APRICOT BY CHITOSAN NANO-ZINC OXIDE FILM

壳聚糖纳米氧化锌涂膜保鲜杏的效果
4.
Synthesis and Characterization of Zinc Sulfide in the Mesoporous of MCM-41 Silicates;

介孔MCM-41中纳米硫化锌的组装与表征
5.
Emulision Syntheses of ZnS Nanoparticles and Characterization;

乳状液法制备纳米硫化锌及性能表征
6.
Preparation of Nanometer Zinc Oxide Desulfurization Agents and Their Desulfurization Performance;
纳米氧化锌脱硫剂的制备及脱硫性能研究
7.
Study on Flame Retardation of Tin Compounds and Preparation of Nanometer Zinc Sulfide;

锡化合物阻燃性能研究及纳米硫化锌的合成
8.
Study on the Supported Nano Ruthenium Catalyst and ZnS Luminescence Nanomaterials;

负载纳米钌催化剂及纳米硫化锌发光材料的研究
9.
Preparation and Properties of ZnS Composite Semiconductor Nanoparticles;

纳米硫化锌复合半导体的制备及其性能研究
10.
Luminescence Property and Synthesis of Sulfur-doped ZnO Nanowires;

硫掺杂氧化锌纳米线的制备及性质研究
11.
Preparation of ZnS Nanobundles by SBA-15 Template and Their Photoelectric Properties

SBA-15模板法合成硫化锌纳米束及其光电性能
12.
Effect of nano-zinc oxide on liver metallothionein of AA chicken

纳米氧化锌对AA肉鸡肝脏金属硫蛋白的影响
13.
Synthesis of the ZnS Nanocrystals with Different Shape and Structure and High Pressure Study for ZnS Nanorods;
不同形状和结构硫化锌纳米晶的合成及纳米棒的高压研究
14.
Study on desulfurization efficiency of optimum nanometer zinc-based desulfurizer by orthogonal test design
正交试验优化制备纳米锌基脱硫剂及脱硫性能研究
15.
Phase- and Shape-controlled Synthesis of ZnS Nano- and Microstructures via Solvothermal Method;
形貌和晶相可控的硫化锌纳米微米结构的溶剂热合成
16.
Fabrication and Characterization of In/ZnO-SiO_x Core-Shell Nanocable Heterostructures

铟掺杂氧化锌-氧化硅纳米电缆芯-壳异质结构的制备及表征(英文)
17.
AAO Templates and Their Application in the Synthesis of ZnS Nanomaterials;

多孔氧化铝模板及其在硫化锌纳米结构制备中的应用
18.
Fabrication of Titania Coatings on ZnS-Type Phosphors Using the Titanium Diethanolamine as the Precursor in the Aqueous Solution;
硫化锌荧光粉表面包覆二氧化钛纳米薄膜的绿色过程研究