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1)  tritiated reduction
氚化还原
2)  chemical reduction
化学还原
1.
The effect of reaction factors on the morphology of silver particles prepared by chemical reduction method;
化学还原法中制备条件对超细银粉形貌的影响
2.
Preparation of Co-B amorphous powder by chemical reduction and investigation of crystallization kinetics of this powder;
Co-B非晶粉末的化学还原法制备及晶化研究
3.
Nano Ni particles were prepared by chemical reduction method in aqueous solution and 1-butyl-3-methylimidazolium hexafluorophosphate([bmim]PF6),respectively.
以化学还原手段分别在水溶液和离子液体1-丁基-3-甲基咪唑六氟磷酸盐([bmim]PF6)中制备了纳米金属Ni粉末,采用X射线衍射(XRD)、透射电镜(TEM)、傅立叶红外光谱(FT-IR)、紫外可见光谱(UV-vis)及热重(TG-DTA)对所制备样品的形貌和结构进行了表征。
3)  reductive cyclization
还原环化
4)  catalytic reduction
催化还原
1.
Catalytic Reduction of p-Nitrobenzoic Acid by Silver Nanoparticles;
银纳米粒子上对硝基苯甲酸的催化还原
2.
Development of selective catalytic reduction of NO_x in the presence of excess oxygen;
富氧条件下NO_x的选择性催化还原技术进展
3.
Spectrophotometric determination of mico iron in copper sulfate with o-phenanthroline by catalytic reduction of CuⅠ;
铜Ⅰ催化还原邻菲罗啉分光光度法测定硫酸铜中微量铁
5)  redox [英][ri'dɔks]  [美][rɪ'dɑks]
氧化还原
1.
Ceric ion homogeneous redox systems for polymerization of vinyl monomers;
硝酸铈铵均相氧化还原体系引发烯类单体聚合
2.
A Mass Spectroscopic Investigation to Redox Mechanism of p-Nitrotoluene in Sodium Polysulfide Solution;
对硝基甲苯在多硫化钠溶液中氧化还原机理的质谱研究
3.
Studies on Redox Behaviours of Cu(Ⅱ) (DEADTF)~2 by in Situ UV-Visible Spectroelectrochemistry;
现场紫外可见光谱电化学方法研究Cu(Ⅱ)(DEADTF)_2配合物的氧化还原行为
6)  reduction-nitridation
还原氮化
1.
as starting materials,β-Sialon ultrafine powders were prepared by using sol-gel and reduction-nitridation processing.
以异丙醇铝、氧化硅细粉、活性碳粉等作为起始原料,通过溶胶-凝胶、还原氮化工艺制备了β-sialon微细粉。
2.
With alumi-iso-propoxide,SiO2 powder and carbon powder as starting materials,ultrafine Sialon powders were prepared by sol-gel reduction-nitridation processing.
以异丙醇铝、氧化硅细粉、活性碳粉等为起始原料,通过溶胶-凝胶、还原氮化工艺制备了β-sialon微细粉。
3.
The feasibility of using Al as a reducing agent for reduction-nitridation of TiO2 in preparing TiN-Al2O3 composite was discussed based on thermodynamics.
从热力学角度讨论了Al作为还原剂还原氮化TiO2制备复相TiN-Al2O3的可行性。
补充资料:氚化
分子式:
CAS号:

性质:用放射性核素氚取代化合物中的某一个或多个原子而得到氚标记化合物,称为氚化。氚化的方法有:(1)化学合成法(催化还原标记和卤氚交换法);(2)同位素交换法(氚气曝射法);(3)生物合成法(主要用酶促合成法),以及(4)热原子反冲氚化法等。

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