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Systematic Surface Phase Transition of Ag Thin Films by Iodine Functionalization at Room Temperature: Evolution of Optoelectronic and Texture Properties

机译:室温下通过碘功能化的Ag薄膜的系统表面相变:光电和质构性质的演变。

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摘要

We show a simple room temperature surface functionalization approach using iodine vapour to control a surface phase transition from cubic silver (Ag) of thin films into wurtzite silver-iodid (β-AgI) films. A combination of surface characterization techniques (optical, electronical and structural characterization) reveal distinct physical properties of the new surface phase. We discuss the AgI thin film formation dynamics and related transformation of physical properties by determining the work-function, dielectric constant and pyroelectric behavior together with morphological and structural thin film properties such as layer thickness, grain structure and texture formation. Notable results are: (i) a remarkable increase of the work-function (by 0.9 eV) of the Ag thin layer after short a iodine exposure time (≤60 s), with simultaneous increase of the thin film transparency (by two orders of magnitude), (ii) pinning of the Fermi level at the valance band maximum upon iodine functionalization, (iii) 84% of all crystallites grain were aligned as a result of the evolution of an internal electric field. Realizing a nano-scale layer stack composed of a dielectric AgI layer on top of a metallic thin Ag layer with such a simple method has some technological implications e.g. to realize optical elements such as planar optical waveguides.
机译:我们展示了一种简单的室温表面官能化方法,该方法使用碘蒸气来控制从薄膜的立方银(Ag)到纤锌矿碘化银(β-AgI)膜的表面相变。表面表征技术(光学,电子和结构表征)的组合揭示了新表面相的独特物理特性。我们通过确定功函,介电常数和热电行为以及形态和结构的薄膜特性(例如层厚,晶粒结构和织构的形成)来讨论AgI薄膜的形成动力学和物理特性的相关转换。显着的结果是:(i)在短时间的碘暴露时间(≤60µs)后,Ag薄层的功函数显着提高(提高了0.9 eV),同时薄膜透明度也同时提高了(提高2个数量级)。 ),(ii)碘官能化时费米能级固定在价带的最大值,(iii)由于内部电场的发展,所有微晶晶粒中的84%排列了。用这种简单的方法实现在金属薄银层的顶部上由电介质AgI层组成的纳米级叠层具有一些技术意义,例如:以实现诸如平面光波导的光学元件。

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