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Polarization dependence of molecular adsorption on ferroelectrics

机译:分子吸附对铁电体的极化依赖性

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The structural details of ferroelectric surfaces influence the effect of ferroelectric polarization on surface chemistry, and it is important to understand and control defect functionality as well as identify adsorption sites in ferroelectric materials. Ferroelectric domain polarization has been found to have a significant effect on surface properties and interactions. Here, both the structure and the presence of local electric fields are examined simultaneously. The surface structure and ferroelectric domain orientation are controlled while molecular adsorption effects are quantified. We use scanning tunneling microscopy (STM) to determine the surface and electronic effects of polarization-gas interactions on a model ferroelectric surface, BaTiO 3 (001).
机译:铁电表面的结构细节会影响铁电极化对表面化学的影响,因此了解和控制缺陷功能以及确定铁电材料中的吸附位置非常重要。已经发现铁电畴极化对表面性质和相互作用具有显着影响。在此,同时检查结构和局部电场的存在。控制表面结构和铁电畴取向,同时量化分子吸附效果。我们使用扫描隧道显微镜(STM)确定在模型铁电表面BaTiO 3(001)上极化气体相互作用的表面和电子效应。

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