纳米γ-AlOOH,nano-γ-AlOOH
1)nano-γ-AlOOH纳米γ-AlOOH
英文短句/例句

1.Fabrication of Morphology of One-dimensional Nano-γ-AlOOH via Hydrothermal Route水热法制备一维纳米γ-AlOOH的形态结构
2.Preparation and Characterization of Nanocrystals γ-AlOOH via Microwave Hydrothermal Methodγ-AlOOH纳米晶的微波水热法制备及表征
3.Effect of the Saturation on the Nano-AlOOH Hydrothermal Crystal Morphology饱和度对纳米AlOOH水热结晶形貌的影响
4.The "Reversal" Phenomenon of Crystalline Pattern on AlOOH Nano-whiskers Growth纳米AlOOH晶须生长结晶形态的“逆转”现象
5.PREPARATION AND CHARACTERIZATION OF NANO-ALOOH BY SOL-GEL AND HYDROTHERMAL TREATMENT;Sol-gel水热偶合法制备纳米AlOOH及性能的研究
6.Condition Control Morphology TEM analysis of Hydrothermal Preparation of Nanometer AllOOH Whisker水热制备纳米AlOOH晶须条件控制形貌TEM分析
7.Controlled Synthesis and Self-assembly of AlOOH and Low-cost Preparation of Al_2O_3 Nanopowders and NanomembranesAlOOH核壳、空心球的控制合成与组装及Al_2O_3纳米粉体、薄膜的廉价制备
8.Preparation of Gamma Nano-alumina;纳米γ-Al_2O_3的制备研究
9.Preparation and Properties of Hydrophobic γ-AlOOH/FAS Composite Coating Films with High Transparency疏水性透明γ-AlOOH/FAS复合薄膜的制备与性能
10.Globular nanometer γ aluminum oxide powder was synthesized through detonation of aluminum nitrate.用爆轰法合成了纳米γ氧化铝粉体。
11.Investigation of the Magnesium Ion Retention Mechanism of γ-Al_2O_3 Mesoporous Membrane;γ-Al_2O_3纳米孔膜截留镁离子机理的研究
12.Study of Ni/γ-Fe_2O_3 Nanowires Prepared by Templates Assembly;模板组装Ni/γ-Fe_2O_3纳米线的研究
13.Study of Nano-Hydrodesulfurization-Catalyst Ni/γ-Al_2O_3;纳米Ni/γ-Al_2O_3加氢脱硫催化剂的研究
14.Preparation of Nano-block γ-Mn_2O_3 Through the Thermal Decomposition of Block Precursor;有机前驱体制备纳米γ-Mn_2O_3块体的研究
15.Preparation of High Surface Area Nanometer γ-Al_2O_3;高比表面纳米γ-Al_2O_3的制备研究
16.The Preparation and Characterization of Nanometer γ-Fe_2O_3 and Fe;γ-Fe_2O_3和Fe纳米微粒的制备及相组成
17.Study on Preparation and Technology Factors of Nanometer γ-Al_2O_3 Powder by Sol-Gel method;溶胶-凝胶法合成纳米γ-Al_2O_3工艺研究
18.Preparation of γ-Fe_2O_3 nanoparticles by solid-phase reaction固相法制备γ-Fe_2O_3纳米粒子
相关短句/例句

γ-AlOOH solγ-AlOOH溶胶
3)nano-sized ferric oxide纳米γ-Fe_2O_3
4)Nano-γ-Fe_2O_3纳米γ-Fe2O3
5)nanometer γ-MnO2纳米γ-MnO_2
6)γ-Al2 O3 nanoparticles纳米γ-A12O3
延伸阅读

(γ-γ′)反应分子式:CAS号:性质:指γ光子与靶核作用,使其激发,然后以发射光子形式退激发的过程。出射光子的能量与受激靶核性质有关,为靶核激发态与基态这两个能级之差值。该反应截面很小,只有毫靶恩量级。