第一句子网 - 唯美句子、句子迷、好句子大全
第一句子网 > 高温固相反应方法 high-temperature solid state reaction method英语短句 例句大全

高温固相反应方法 high-temperature solid state reaction method英语短句 例句大全

时间:2024-04-27 15:41:48

相关推荐

高温固相反应方法 high-temperature solid state reaction method英语短句 例句大全

高温固相反应方法,high-temperature solid state reaction method

1)high-temperature solid state reaction method高温固相反应方法

1.In this paper, Sr_2MgSiO_5:Eu~(2+) and Sr_2Ca_2Si_3O_8Cl_4:Eu~(2+) white emitting phosphors with stable property were synthesized by thehigh-temperature solid state reaction method.本文利用高温固相反应方法制备了性能稳定的Sr_2MgSiO_5:Eu~(2+)和Sr_2Ca_2Si_3O_8O_4:Eu~(2+)白光荧光粉,利用XRD和光谱仪对样品的结构及发光性能进行了表征,系统地研究了灼烧温度、保温时间、助熔剂、Eu~(2+)离子浓度和其他稀土离子掺杂等因素对样品发光性能的影响。

2)method of high temperature solid-state reaction高温固相反应法合成

英文短句/例句

1.Sr_3Al_2O_6: Eu Phosphor Synthesized by Solid State Reaction Method;用高温固相反应法合成Sr_3Al_2O_6:Eu荧光材料

2.Synthesis Research on Rare Earth Doped Strontium Aluminate Long Afterglow Luminescent Material低温固相反应法合成铝酸锶铕镝研究

3.Yttrium aluminum garnet synthesized by low temperature solid state pyrolitic reaction低温固相反应法合成钇铝石榴石粉体的研究

4.Preparation and Synthesization of Nanometer Sodium Aluminum Carbonate via Solid-state Reaction at Room Temperature;室温固相反应合成纳米材料碱式碳酸铝钠

5.Study on the Process for Producing SrAl_2O_4: Eu~(2+), Dy~(3+) by Solid Phase ReactionSrAl_2O_4:Eu~(2+),Dy~(3+)的高温固相法合成工艺研究

6.Synthesis of ZrW_2O_8/ZrO_2 composites with low thermal expansion using in-situ solid state reaction method原位反应固相法合成低热膨胀ZrW_2O_8/ZrO_2复合材料

7.The Solid State Reactions under Normal Pressure and High-pressure and High-temperature in SiO_2-ZrO_2 System;SiO_2-ZrO_2系统的常压固相反应和高压高温反应

8.Preparation of Aluminum Oxynitride Powders by Solid-State Reaction高温固相反应工艺制备AlON粉体

9.Solid State Synthesis of CoFe_2O_4 Nanoparticles at Low Heating Temperatures低温固相反应法制备CoFe_2O_4纳米颗粒

10.One Step Synthesis of N-(4-hydroxy-3-methoxyphenylmethylene)-p-methylaniline by Solid Phase Reaction at Room Temperature室温固相反应一步合成N-(4-羟基-3-甲氧基苯基亚甲基)-对甲苯胺

11.Synthesis of Phosphate Powders Intermingled with Alkali Earth Metal Ions by Solid State Reaction高温固相反应法制备碱土金属离子掺杂锆磷酸盐粉体的研究

12.Optimization of high-temperature solid-phase process for LiFePO_4 synthesisLiFePO_4高温固相合成工艺优化研究

13.Synthesis of Nanoscale Ferric Oxide Via Solid-state Reaction;室温固相合成法制备纳米Fe_2O_3粒子

14.Synthesis of Cathode Materials Li_3V_2(PO_4)_3/C by using Microwave High-temperature Method微波高温固相法合成正极材料Li_3V_2(PO_4)_3/C及其电化学性能

15.Synthesis and Application of Leveling Agent for Thermalsetting Coatings高温热固型涂料流平剂的合成与应用

16.Synthesis of Nanometer CeO_2 by Mechano-Chemical Solid State Reaction机械力固相化学反应合成纳米氧化铈

17.Kinetic Study of Solid Phase Organic Synthesis and Cleavage Reactions;固相有机合成与裂解反应动力学研究

18.Solid-state reaction synthesis and sintering of 2MgO·TiO_22MgO·TiO_2的固相反应合成与烧结

相关短句/例句

method of high temperature solid-state reaction高温固相反应法合成

3)high temperature solid-state reaction高温固相反应

1.The new ternary phase, La3ScBi5 was obtained by thehigh temperature solid-state reactions of the pure metal elements in welded Ta tubes under argon atmosphere.在氩气保护下,将金属单质置于钽管中进行高温固相反应得到了一个新的三元极性金属间化合物,La3ScBi5。

4)high temperature solid state reaction高温固相反应

1.To promote the phosphor luminescence performance,green BaAl12O19:Mn and blue BaMgAl10O17:Eu2+ phosphors were doped with Mg,Sr,Eu,La and Ca ions throughhigh temperature solid state reaction.对几种等离子荧光粉的发光和发射性能进行了测试,选择了蓝色和绿色荧光粉用高温固相反应法进行掺杂Mg、Sr、Eu、La、Ca等稀土离子,来提高荧光粉的发光性能。

2.The CaS∶Eu~(2+) phosphors were synthesized by methods of microwave radiation and conventionalhigh temperature solid state reaction respectively.分别用高温固相反应法和微波辐射法合成了CaS∶Eu2+。

5)solid-state reaction高温固相反应

1.The lithium manganese oxides modified by different aluminum composites were prepared by high-temperaturesolid-state reaction.采用铝盐与尖晶石LiMn2O4的高温固相反应,制备出改性的尖晶石锂锰氧化物材料。

6)solid state reaction at high temperature高温固相反应

1.9) system based on Li_(14)Zn(GeO_4)_4 wereprepared bysolid state reaction at high temperature.以Li_(14)Zn(GeO_4)_4为母体,通过高温固相反应,合成了Li_(14-11x)Zn_(1-x)Sc_(2x)Ge_(4-4x)P_(3x)O_(16-4x)(x=0。

延伸阅读

高温较高的温度,在不同的情况下所指的具体数值不同,例如在某些技术上指几千摄氏度以上,在工作场所指32摄氏度以上。

本内容不代表本网观点和政治立场,如有侵犯你的权益请联系我们处理。
网友评论
网友评论仅供其表达个人看法,并不表明网站立场。