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The UV filtering potential of drop-casted layers of frustules of three diatom species

机译:三种硅藻壳的滴铸层的紫外线过滤潜能

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摘要

Diatoms are in focus as biological materials for a range of photonic applications. Many of these applications would require embedding a multitude of diatoms in a matrix (e.g. paint, crème or lacquer); however, most studies on the photonic and spectral properties of diatoms frustules (silica walls) have been carried out on single cells. In this study, for the first time, we test the spectral properties of layers of frustules of three diatom species (Coscinodiscus granii, Thalassiosira punctifera and Thalassiosira pseudonana), with special focus on transmission and reflectance in the UV range. The transmittance efficiency in the UV A and B range was: T. pseudonana (56–59%) >C. granii (53–54%) >T. punctifera (18–21%) for the rinsed frustules. To investigate the underlying cause of these differences, we performed X-ray scattering analysis, measurement of layer thickness and microscopic determination of frustule nanostructures. We further tested dried intact cells in the same experimental setup. Based on these data we discuss the relative importance of crystal structure properties, nanostructure and quantity of material on the spectral properties of diatom layers. Characterization of the UV protection performance of layers of diatom frustules is of central relevance for their potential use as innovative bio-based UV filters.
机译:硅藻作为一系列光子应用的生物材料受到关注。这些应用中的许多都需要在基质(例如油漆,乳脂或清漆)中嵌入多个硅藻;但是,大多数关于硅藻壳(硅壁)的光子和光谱特性的研究都是在单个细胞上进行的。在本研究中,我们首次测试了三种硅藻物种(Coscinodiscus granii,Thalasiosira punctifera和Thalassiosira pseudonana)的壳层的光谱特性,特别着重于紫外线范围内的透射率和反射率。在UV A和B范围内的透射效率为:假单胞菌(56-59%)> C。格兰尼(53–54%)> T。泪点(18–21%)。为了调查这些差异的根本原因,我们进行了X射线散射分析,层厚度的测量以及壳层纳米结构的显微测定。我们在相同的实验设置中进一步测试了干燥的完整细胞。基于这些数据,我们讨论了晶体结构特性,纳米结构和材料数量对硅藻层光谱特性的相对重要性。硅藻壳层的紫外线防护性能的表征与其作为创新的基于生物的紫外线滤光片的潜在用途至关重要。

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