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Optically transparent, ultrathin Pt films as versatile metal substrates for molecular optoelectronics

机译:光学透明的超薄Pt膜,作为分子光电的通用金属基材

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摘要

This contribution reports a simple, straightforward method (cool sputtering) of fabricating robust, homogeneous, conductive, and optically transparent ultrathin Pt films. Their morphological, structural, mechanical,electrical, and optical properties are reported. The morphology and structure of these Pt films are investigated by scanning electron microscopy, transmission electron microscopy, atomic force microscopy, and X-ray diffraction. The ultrathin Pt films, approximately 20 nm thick, are characterized by a homogenous, polycrystalline structure, with a tendency to adopt a (111) texture upon the thermal treatment. Moreover, thermal treatment (annealing or flaming) of the as-prepared films also substantially improves their chemical and mechanical robustness. F films behave as bulk Pt in terms of electrical resistivity and suitability as working electrodes in cyclic voltammetry experiments. Overall, the unique combination of these excellent features; homogeneity, robustness, and conductivity, in addition to the high optical transparency in the 300-800 nm range of the electromagnetic spectrum, make ultrathin Pt films appropriate for a variety of applications in the field of molecular optoelctronics. The formation of functional molecular self-assembled monolayers (SAMs) on these transparent, conductive films allows their optical monitoring using transmission optical spectroscopy, as well as the probing of their electrical properties. The potential of such Pt films as suitable metal substrates in opto- and nanoelectronics is proven by representative applications, including switching of prototypical photochromic and electrochromic species in SAMs and molecule-metal junctions.
机译:该论文报道了一种简单,直接的方法(冷溅射),用于制造坚固,均匀,导电且光学透明的超薄Pt膜。报告了它们的形态,结构,机械,电气和光学性质。通过扫描电子显微镜,透射电子显微镜,原子力显微镜和X射线衍射研究了这些Pt膜的形态和结构。约20 nm厚的超薄Pt膜的特征是均匀的多晶结构,在热处理时趋于采用(111)织构。此外,所制备的膜的热处理(退火或燃烧)也大大改善了其化学和机械强度。在循环伏安法实验中,就电阻率和适用性而言,F膜的行为像块Pt一样。总体而言,这些出色功能的独特结合;均匀性,坚固性和导电性,以及在300-800 nm电磁光谱范围内的高光学透明性,使得超薄Pt膜适用于分子光电领域的各种应用。在这些透明的导电膜上形成功能分子自组装单分子膜(SAM),可以使用透射光谱法对其进行光学监控,并对其电性能进行探测。这种Pt膜作为光电子和纳米电子学中合适的金属衬底的潜力已通过代表性的应用得到了证明,包括在SAM和分子-金属结中切换原型光致变色和电致变色物质。

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