Li Dongbo, Zhao Mosha H, Garra J, Kolpak A M, Rappe A M, Bonnell D A, Vohs J M
Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Nat Mater. 2008 Jun;7(6):473-7. doi: 10.1038/nmat2198. Epub 2008 May 11.
The ability to manipulate dipole orientation in ferroelectric oxides holds promise as a method to tailor surface reactivity for specific applications. As ferroelectric domains can be patterned at the nanoscale, domain-specific surface chemistries may provide a method for fabrication of nanoscale devices. Although studies over the past 50 yr have suggested that ferroelectric domain orientation may affect the energetics of adsorption, definitive evidence is still lacking. Domain-dependent sticking coefficients are observed using temperature-programmed desorption and scanning surface potential microscopy, supported by first-principles calculations of the reaction coordinate. The first unambiguous observations of differences in the energetics of physisorption on ferroelectric domains are presented here for CH(3)OH and CO(2) on BaTiO(3) and Pb(Ti(0.52)Zr(0.48))O(3) surfaces.
在铁电氧化物中操纵偶极子取向的能力,有望成为一种针对特定应用定制表面反应性的方法。由于铁电畴可以在纳米尺度上进行图案化,特定畴的表面化学性质可能为纳米级器件的制造提供一种方法。尽管过去50年的研究表明铁电畴取向可能会影响吸附能,但仍缺乏确凿的证据。利用程序升温脱附和扫描表面电位显微镜观察到了与畴相关的 sticking 系数,并得到了反应坐标的第一性原理计算的支持。本文首次明确观察到了甲醇和二氧化碳在钛酸钡和锆钛酸铅表面的铁电畴上物理吸附能的差异。