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Optical Properties of Nanostructured Silica Structures From Marine Organisms

机译:海洋生物的纳米二氧化硅结构的光学性质

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Light is important for the growth, behavior and development of both phototrophic and autotrophic organisms. A large diversity of organisms used silica-based materials as internal and external structures. Nano-scaled well-organized silica biomaterials are characterized by a low refractive index and an extremely low absorption coefficient in the visible range, which make them interesting for optical studies. Recent studies on silica materials from glass sponges and diatoms, have pointed out very interesting optical properties, such as light waveguiding, diffraction, focusing and photoluminescence. Light guiding and focusing have been shown to be coupled properties found in spicule of glass sponge or shells of diatoms. Moreover, most of these interesting studies have used purified biomaterials and the properties have addressed in non-aquatic environments, first in order to enhance the index contrast in the structure and second to enhance the spectral distribution. Although there is many evidences that silica biomaterials can present interesting optical properties that might be used for industrial purposes, it is important to emphases that the results were obtained from a few numbers of species. Due to the key roles of light for a large number of marine organisms, the development of experiments with living organisms along with field studies are require to better improve our understanding of the physiological and structural roles played by silica structures.
机译:光对于光养和自养生物的生长,行为和发育都很重要。各种各样的生物使用基于二氧化硅的材料作为内部和外部结构。纳米级组织良好的二氧化硅生物材料的特征在于在可见光范围内的低折射率和极低的吸收系数,这使其在光学研究中变得有趣。最近对来自玻璃海绵和硅藻的二氧化硅材料的研究指出了非常有趣的光学特性,例如光波导,衍射,聚焦和光致发光。导光和聚焦已被证明是在玻璃海绵或硅藻壳中发现的耦合特性。此外,大多数这些有趣的研究都使用了纯化的生物材料,并且其性质已在非水生环境中得到解决,首先是为了增强结构的折射率对比,其次是为了增强光谱分布。尽管有许多证据表明二氧化硅生物材料可以呈现出有趣的光学性质,可用于工业目的,但重要的是要强调从几个物种中获得的结果。由于光在大量海洋生物中起着关键作用,因此需要发展与活生物体的实验以及田间研究,以更好地增进我们对二氧化硅结构所起的生理和结构作用的理解。

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