固相反应
- 网络solid state reaction;solid-state reaction;solid phase reaction;Solid-phase reaction
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SiC表面固相反应涂层
Coating on SiC Surface by Solid State Reaction With Cr Powder
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纳米Co2O3前躯体的室温固相反应工艺研究
Research on Processing Technology of Precursor of Nano-sized Co_3O_4 by Solid State Reaction
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PET/PC合金低温固相反应挤出中的多重网络结构
Multi-network Structure of PET / PC Alloy Prepared by Low Temperature Solid State Extrusion
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气固法合成氯磺化聚乙烯I.气-固相反应机理
Synthesis of Chlorosulfonated Polyethylene by Gas-solid Method I. Gas-solid Reaction Mechanism
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回收PET塑料的低温固相反应挤出
Solid-state and Reactive Extrusion of Recycled PET
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固相反应法制备透明多晶YAG陶瓷
Fabrication of transparent YAG ceramics by solid - state method
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氧化物法低温烧结Li系铁氧体的固相反应、致密化过程及微波性能
Solid Reaction , Densification and Microwave Properties of Low Temperature Sintered Li Ferrites Prepared by Oxide Method
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为克服气固相反应的缺点,选用液相合成法合成3&甲基吡啶。n级不可逆气液反应的宏观动力学方程
In the present study , a liquid phase reaction was selected . THE OVER-ALL KINETIC EQUATION OFN-ORDER IRREVERSIBLE GAS-LIQUID REACTION
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固相反应制备纳米CeO2粉体
Preparation of nanometer powder CeO_2 by solid state chemical reaction
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三维网络SiCn/20Cr钢复合材料的界面固相反应及显微组织
Solid-Phase Reaction and Microstructure of Interface of 3D Meshy SiC_n / 20Cr Steel Composite
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超薄Ni在Si(110)衬底上的固相反应特性。
The characteristics of solid phase reaction between ultra-thin Ni film and Si ( 110 ) substrate .
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YAG材料的制备一直备受人们的关注,它一般是通过固相反应方法得到的。
The general preparation method of YAG is solid phase reaction at high temperatures .
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用固相反应法制备了BaTi1-xSnxO3(0.15≤x≤0.30)系铁电陶瓷。
BaTi_ 1-x Sn_xO_3 ( 0.15 ≤ x ≤ 0.30 ) ceramics were synthesized by a conventional solid reaction route .
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研究了固相反应混合法制备YAG超微粉。
Synthesis of Ca , Ca : YAG powder by the mixed method was investigated .
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微波固相反应制备CdS纳米粒子
Microwave Assisted Solid State Reaction Synthesis of CdS Nanoparticles
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低温湿固相反应凝胶法制备纳米γ-Fe2O3的研究
Study on the preparation of γ - Fe_2O_3 by wet-solid state reaction-get process at low heating temperature
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结果表明,Al2O3的加入通过固相反应来影响钙基固硫效率,Al2O3对固硫效率的影响并非呈单一性;
The experimen - tal results show that Al_2O_3 has dual effects on Ca-based desulfurization efficiency through solid state reaction ;
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CuO/Al2O3催化剂高温固相反应的原位XRD和Raman研究
In-situ XRD and Raman Spectroscopic Study on the Solid State Reaction of CuO / Al_2O_3 Catalysts at High Temperature
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固相反应制备网状Fe(CO(0.5)Ni(0.5))O5复合氧化物及其电磁学性质研究
Study on Preparation of Nanometer Reticulation Fe ( Co_ ( 0.5 ) Ni_ ( 0.5 )) O_5 by Solid-state Reaction and Electromagnetic Characteristics
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在固相反应过程中可以通过加入分散剂和控制热处理温度得到分散性良好的纳米NiO。
The impacts of dispersant and thermal treatment temperature were also discussed .
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固相反应法合成的巯基乙酸钠修饰ZnS的光催化性能
Photocatalytic Performance of Sodium Thioglycolate Modified ZnS Synthesized by Room Temperature Solid Phase Method
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机械力活化固相反应法制备ZrO2超细粉体的研究
Research of ZrO_2 Nanoparticles Prepared by Mechanical Activation Solid State Reaction
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研究了在用不同方法(SHS方法和传统固相反应法)制备NiZn软磁铁氧体粉体的过程中,Zn挥发量的变化。
Zinc volatilization in the process of preparing Ni Zn ferrite powders by SHS and conventional solid phase method was investigated .
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利用这种方法制得的胶态Pt/C催化剂对甲醇氧化的电催化活性与用固相反应法制得的Pt/C催化剂相近,但这种方法的制备工艺简单、稳定,有利于大规模生产。
However , the preparation technique of the colloidal Pt / C catalyst is simple , stable and suitable for the production on a large scale .
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球磨促进高温固相反应合成尖晶石相LiMn2O4
Synthesis of spinel LiMn_2O_4 by ball-milling promoted solid state reaction
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本文优化了利用固相反应法制备YBCO分子筛的方法。
The process of preparing YBCO molecular sieve by means of solid-state reaction is optimized .
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采用固相反应法合成了Cu掺杂的高温氧渗透膜材料,并用于甲烷部分氧化制合成气反应过程。
Cu doped oxygen permeating membrane materials were synthesized by solid state method and it was used in the process of the partial oxidation of methane to syngas .
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低热固相反应制备一维棒状CoFe2O4及其电磁特性
Preparation of One-Dimensional Stick-Like CoFe_2O_4 by Low-Heating Solid State Reaction and Its Electromagnetic Property
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以高纯MgO和Al(PriOH)3为原料,采用凝胶-固相反应法制备高纯镁铝尖晶石超微粉体。
Using high-purity MgO and Al ( OPr ~ ( I )) _ ( 3 ) as starting materials , spinel powders were prepared by gel-solid method .
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用固相反应法制备合成稀土荧光材料,并分别在不同烧结条件下烧结制备PLD溅射用的靶材,找到其最佳烧结工艺条件。
The rare earth fluorescence material and the target for PLD were synthesized by high temperature solid state reaction .