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- both-side-open TiO2 nanotube array 双通TiO2纳米管阵列
- N -doped TiO2 nanotube -like arrays 氮掺杂TiO2纳米管阵列
- DRS showed that there were obvious absorption edges around 400 nm for the two specimens and TiO2 nanotubes had an absorption edge blue shifted compared with the TiO2 film. 紫外可见漫反射吸收光谱表明两个样品在400nm左右都有明显的吸收带边,但TiO_2纳米管的吸收带边与TiO_2膜相比具有明显的蓝移;
- TiO2 nanotube array electrode TiO2纳米阵列电极
- TiO2 nanotube arrays electrodes TiO2纳米管阵列电极
- TiO2 nanotube electrode TiO2纳米管电极
- TiO2 nanotube arrays TiO2纳米管阵列
- TiO2 nanotube TiO2纳米管
- mesoporous TiO2 nanotube 介孔TiO2纳米管
- aligned TiO2 nanotube thin film TiO2纳米管阵列薄膜
- TiO2 nanotube array TiO2纳米管阵列
- The nanotube will form the insulating core of the nanoelectrode. 纳米管将成为纳米电极的绝缘核心。
- TiO2, CaCO3, Paints, Printing ink, Pigments, Dyes, etc. 钛白粉,碳酸钙,油漆,油墨,颜料,染料等。
- Colloidal TiO2 was prepared by hydrolyzing tetra-n-butyl titanate. 水解钛酸四丁酯制备了二氧化钛胶体;
- Then a method to make the carbon nanotube disperse is found. 并找到了使其均匀分散的一种方法。
- This can be achieved by simply squashing the nanotube. 这种转变可以通过对碳纳米管施加单轴应力使之变形而实现。
- A systematic study of TiO2 ceramic boundary layer capacitor (BLC) ismade. 本文对TiO_2陶瓷晶界层电容器进行了较为系统的研究。
- Loss-weight rate of TiO2 powder reaches 38% in heat-treatment course. 在热处理过程中,TiO2纳米粉体的失重率达到38%25。
- In 1991, carbon nanotube (CNT) was first reported in Nature by Iijima. 1991 年,日本电镜专家 Iijima 在制取 C60的残余物中,发现一种结构独特的管状单质炭,即碳纳米管(carbon nanotube,CNT)。
- The titania nanotube was characterized by XRD,TEM,BET,TG-DSC and Uv-vis. 用XRD、TEM、BET、TG-DSC、Uv-vis等方法对TiO2纳米管的形貌、成分和性能进行了表征。