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- Sb2O3掺杂量Sb2O3 -doped amount
- 钴掺杂量Co doping amounts
- 以溶胶?凝胶法制备的SnO2纳米材料为基,采用Sb2O3掺杂改性,制备出CO气敏材料。 用XRD分析了材料的结构、物相和颗粒度。SnO2-based CO gas sensor material in nanometer was prepared by sol-gel process and modified by doping with Sb2O3. The structure and average grain sizes were analyzed by XRD, and the stability by TGA/DSC.
- 量to measure
- 对于掺杂稀土忆Ys+,最佳掺杂量为二拼1.5%,当掺杂量大于二t=1.5%,光催化活性反而会降低;As for doping Y3+, the optimum doping concentration was wt( Y3+) = 1.5%25.
- Nd:YAG陶瓷能够实现高浓度掺杂,但是透过率随着Nd掺杂量的增加有所降低,光吸收随着掺杂量的增加而增加;The absorption of Nd:YAG ceramics strengthened with increase of doped concentration.
- 排量delivery capacity
- Sb2O3antimony oxide
- 量产volume production
- Sb2O3超细粉末Sb2O3 superfine powder
- 量的quantitative
- Sb2O3/Co-ZSM-5Sb2O3/Co-ZSM-5
- 库存量stocks
- SnO2-Sb2O3-CuO陶瓷SnO2 -Sb2 O3-CUO ceramics
- 词汇量word-base
- 称量metage
- 量表inventory
- 通量flux
- 弹性模量elasticity modulus
- 分别采用浸渍法、溶胶-凝胶法,SnCl4.5H2O,Sb2O3和Gd(NO3)3为原料,制备了稀土Gd掺杂SnO2/Sb涂层电催化电极.With SnCl_45H_2O, (Sb_2O_3) and (Gd(NO_3)_3) as the raw material, the SnO_2/Sb DSA electrodes doped Gd were prepared by Dip coating method and sol-gel method.