photoelectrochemistry

  • n.光电化学
photoelectrochemistryphotoelectrochemistry
  1. Photoelectrochemistry study of inhibiting action of BTA derivatives on copper

    BTA衍生物对铜缓蚀作用的光电化学研究

  2. Furthermore , we have studied the effect of thickness and grain size of CdS layer on the photosensitizing efficiency of ZnO nanowire by means of photoelectrochemistry .

    利用光电化学等手段研究CdS薄层的厚度以及晶粒尺寸等对其光敏化ZnO纳米线效率的影响。

  3. Studies on Photoelectrochemistry and Auger Electron Spectra for Inhibitor of Copper in 3 % NaCl

    3%NaCl溶液中铜缓蚀剂TTA的光电化学和表面电子能谱研究

  4. The photoelectrochemistry of semiconductors has been widely used for the investigation of compound semiconductor materials and for the improvement of device technologies .

    半导体光电化学已广泛用于化合物半导体的材料测试和器件工艺。

  5. The Photoelectrochemistry of TiO_2-Polyaniline Composite Film

    TiO2聚苯胺复合膜的光电化学

  6. Since the discovery of photoelectrochemical splitting of water on n-type semiconductor TiO2 electrodes , TiO2 has become the focus in the field of semiconductor photoelectrochemistry .

    自从发现n型半导体TiO2作为电极发生光电化学反应分解水以来,TiO2成为半导体光电化学领域的研究热点。

  7. The Photoelectrochemistry of Au / PATP / PANI Film Electrode and Au / PATP / PANI / TiO_ 2 Film Electrode

    Au/PATP/PANI膜电极和Au/PATP/PANI/TiO2膜电极的光电化学

  8. Photoelectrochemistry of La ~ ( 3 + ) Doped Semiconductor Porous Films Sensitized by Ru ( bpy ) _2 ( NCS ) _2 Dye

    染料敏化La~(3+)掺杂的TiO2纳米多孔膜光电化学

  9. The influencing factors of electrodeposition time and electrolyte composition on the morphology , structure and photoelectrochemistry properties of nanotube arrays were investigated with SEM , X-ray diffraction ( XRD ) and various electrochemical measurements .

    采用SEM、X射线粉末衍射(XRD)和多种电化学测试技术考察了电沉积时间和电解液组成对纳米管阵列形貌、结构和光电响应性能的影响。

  10. The photoelectrochemistry of the film electrode was also investigated by photoelectrochemical method . The nano-tube titanic sodium represents the character of P-type photo-response , compared with TiO_ ( 2 )( P25 ) film electrode .

    用光电化学方法研究了纳米管钛酸钠的光电化学行为,通过与TiO2(P25)薄膜电极进行比较,得出了纳米管钛酸钠显示出p型光响应的结论。