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首页> 外文期刊>Journal of Electronic Materials >Metal-Assisted Chemical Etching Using Tollen's Reagent to Deposit Silver Nanoparticle Catalysts for Fabrication of Quasi-ordered Silicon Micro/Nanostructures
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Metal-Assisted Chemical Etching Using Tollen's Reagent to Deposit Silver Nanoparticle Catalysts for Fabrication of Quasi-ordered Silicon Micro/Nanostructures

机译:使用Tollen试剂的金属辅助化学蚀刻,以沉积用于制备准有序硅微/纳米结构的纳米银催化剂

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Metal-assisted chemical etching (MacEtch) of semiconductor materials in HF/H_(2)O_(2) solution using noble-metal particles as catalysts has gained much attention in the past few years due to its unique properties. In this work, nanoscale Ag particles were deposited on (100) and (111) surfaces of polished p-Si wafers through the silver-mirror reaction. Subsequently these wafers were etched in 1:1:1 (v:v:v) HF(49percent):H_(2)O_(2)(30percent):EtOH solution at ambient temperature and pressure for 12 h, producing a number of different quasiordered silicon microanostructures. The resulting surface-modified wafers exhibited mixed micro- and nanostructures that are an inherent feature of the etch process; for example, steps appear on the sidewalls of crystallographically defined nanopores, because the catalytic Ag nanoparticles are convected as they transit the developing pore during the etching process. The resulting materials exhibited much reduced reflectivity, reaching a maximum of 3.7X reduction near 330 nm, which renders them of interest in potential applications such as back-reflector templates for deposition of thin-film solar cell materials.
机译:在过去的几年中,使用贵金属颗粒作为催化剂的HF / H_(2)O_(2)溶液中半导体材料的金属辅助化学蚀刻(MacEtch)受到了广泛关注。在这项工作中,通过银镜反应将纳米级Ag颗粒沉积在抛光的p-Si晶片的(100)和(111)表面上。随后将这些晶片在环境温度和压力下于1:1:1(v:v:v)HF(49%):H_(2)O_(2)(30%):EtOH溶液中蚀刻12小时,产生大量不同的准有序硅微/纳米结构。所得的表面改性晶片表现出混合的微结构和纳米结构,这是蚀刻工艺的固有特征。例如,在晶体学上定义的纳米孔的侧壁上会出现台阶,因为在蚀刻过程中,催化的Ag纳米颗粒在通过显影孔时会被对流。所得材料显示出大大降低的反射率,在330 nm附近最大降低了3.7倍,这使它们成为潜在应用的关注点,例如用于沉积薄膜太阳能电池材料的后反射器模板。

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