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Porous silicon and diatoms micro-shells: an example of inverse biomimetic

机译:多孔硅和硅藻微壳:逆仿生的例子

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Porous silicon (PSi) is by far a very useful technological platform for optical monitoring of chemical and biological substances and due to its peculiar physical and morphological properties it is worldwide used in sensing experiments. On the other hand, we have discovered a natural material, the micro-shells of marine diatoms, ubiquitous unicellular algae, which are made of hydrated amorphous silica, but, most of all, show geometrical structures made of complex patterns of pores which are surprisingly similar to those of porous silicon. Moreover, under laser irradiation, this material is photoluminescent and the photoluminescence is very sensitive to the surrounding atmosphere, which means that the material can act as a transducer. Starting from our experience on PSi devices, we explore the optical and photonic properties of marine diatoms micro-shells in a sort of inverse biomimicry
机译:到目前为止,多孔硅(PSi)是用于化学和生物物质光学监控的非常有用的技术平台,并且由于其独特的物理和形态特性,它已广泛用于传感实验。另一方面,我们发现了一种天然材料,即海洋硅藻的微壳,无处不在的单细胞藻类,它们是由水合无定形二氧化硅制成的,但最重要的是,它们显示出由复杂的孔结构组成的几何结构,这令人惊讶类似于多孔硅。而且,在激光照射下,该材料是光致发光的,并且光致发光对周围的大气非常敏感,这意味着该材料可以充当换能器。从我们在PSi器件上的经验出发,我们以一种逆向仿生的方式探索了海洋硅藻微壳的光学和光子特性。

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