Department of Mathematics and Science, Institute of Chemistry and Center for Interdisciplinary Nanostructure Science and Technology, Kassel University, Heinrich-Plett-Strasse 40, 34109 Kassel, Germany.
J R Soc Interface. 2012 Apr 7;9(69):727-33. doi: 10.1098/rsif.2011.0424. Epub 2011 Aug 24.
The incorporation of rhodamine dyes in the cell wall of diatoms Coscinodiscus granii and Coscinodiscus wailesii for the production of luminescent hybrid nanostructures is investigated. By systematic variation of the substitution pattern of the rhodamine core, we found that carbonic acids are considerably better suited than esters because of their physiological compatibility. The amino substitution pattern that controls the optical properties of the chromophore has no critical influence on dye uptake and incorporation, thus a variety of biocomposites with different emission maxima can be prepared. Applications in biomineralization studies as well as in materials science are envisioned.
研究了将罗丹明染料掺入硅藻角毛藻(Coscinodiscus granii)和威氏角毛藻(Coscinodiscus wailesii)的细胞壁中,以生产发光的杂交纳米结构。通过对罗丹明核心取代模式的系统变化,我们发现碳酸酯比酯更适合,因为它们具有生理相容性。控制发色团光学性质的氨基取代模式对染料的摄取和掺入没有关键影响,因此可以制备具有不同发射最大值的各种生物复合材料。预计将在生物矿化研究以及材料科学中得到应用。