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Fabrication of three dimensional patterns of wide dimensional range using microbes and their applications

机译:利用微生物制备大尺寸范围的三维图案及其应用

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摘要

Inspired by the wound healing property of certain trees, we report a novel microbes based additive process for producing three dimensional patterns, which has a potential of engineering applications in a variety of fields. Imposing a two dimensional pattern of microbes on a gel media and allowing them to grow in the third dimension is known from its use in biological studies. Instead, we have introduced an intermediate porous substrate between the gel media and the microbial growth, which enables three dimensional patterns in specific forms that can be lifted off and used in engineering applications. In order to demonstrate the applicability of this idea in a diverse set of areas, two applications are selected. In one, using this method of microbial growth, we have fabricated microlenses for enhanced light extraction in organic light emitting diodes, where densely packed microlenses of the diameters of hundreds of microns lead to luminance increase by a factor of 1.24X. In another entirely different type of application, braille text patterns are prepared on a normal office paper where the grown microbial colonies serve as braille tactile dots. Braille dot patterns thus prepared meet the standard specifications (size and spacing) for braille books.
机译:受某些树木伤口愈合特性的启发,我们报告了一种基于微生物的新型添加剂工艺,该工艺可产生三维图案,在多种领域中具有工程应用潜力。从其在生物学研究中的用途已知在凝胶介质上施加微生物的二维图案并使其在第三维中生长。取而代之的是,我们在凝胶介质和微生物生长之间引入了一种中间多孔基质,该基质可以实现特定形式的三维图案,可以将其提起并用于工程应用。为了证明该想法在不同领域中的适用性,选择了两个应用程序。在其中一种方法中,使用这种微生物生长方法,我们制造了用于增强有机发光二极管中光提取的微透镜,其中直径为数百微米的密集堆积微透镜导致亮度提高了1.24倍。在另一种完全不同类型的应用中,在普通办公纸上准备盲文文本图案,其中生长的微生物菌落充当盲文触觉点。这样制备的盲文点图案满足盲文书籍的标准规格(尺寸和间距)。

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