首页> 外国专利> METHOD OF MANUFACTURING SUBSTRATE FOR SURFACE-ENHANCED RAMAN SCATTERING SPECTROSCOPE AND THE SUBSTRATE MANUFACTURED BY THE METHOD, CAPABLE OF IMPROVING THE DETECTION SENSITIVITY OF SUBSTANCES

METHOD OF MANUFACTURING SUBSTRATE FOR SURFACE-ENHANCED RAMAN SCATTERING SPECTROSCOPE AND THE SUBSTRATE MANUFACTURED BY THE METHOD, CAPABLE OF IMPROVING THE DETECTION SENSITIVITY OF SUBSTANCES

机译:用于表面增强拉曼散射光谱的基质的制造方法以及由该方法制造的基质,能够提高物质的检测灵敏度

摘要

PURPOSE: A method for manufacturing a substrate for a surface enhanced raman scattering spectroscope and the substrate manufactured by the same are provided to obtain high repeatability and reduce manufacturing costs as nano patterns formed in a master substrate can be transferred to a polymer substrate repetitively.;CONSTITUTION: A method for manufacturing a substrate for a surface enhanced raman scattering spectroscope is as follows. Polymer substances are spread on a master substrate where nano patterns are formed(S11). The polymer substances spread on the master substrate are solified(S12). The polymer substances are separated from the master substrate so that a polymer substrate with the nano patterns transferred from the master substrate is formed(S13). A metallic thin film is formed on the nano patterns of the polymer substrate(S14). Nano particles are spread on the nano patterns of the polymer substrate(S15).;COPYRIGHT KIPO 2013;[Reference numerals] (AA) Start; (BB) End; (S11) Step of spreading polymer substances; (S12) Step of hardening the polymer substances; (S13) Step of forming a polymer substrate; (S14) Step of forming a metallic thin film; (S15) Step of spreading metallic nano particles
机译:用途:提供一种用于表面增强拉曼散射光谱仪的基板的制造方法和由其制造的基板,以实现高重复性并降低制造成本,因为可以将形成在主基板中的纳米图案重复转印至聚合物基板上。构成:一种用于表面增强拉曼散射光谱仪的基板的制造方法如下。聚合物物质散布在形成纳米图案的主基板上(S11)。使散布在主基板上的聚合物物质溶解(S12)。将聚合物物质与主基板分离,从而形成具有从主基板转印的纳米图案的聚合物基板(S13)。在聚合物基板的纳米图案上形成金属薄膜(S14)。纳米粒子散布在聚合物基材的纳米图案上(S15)。; COPYRIGHT KIPO 2013; [参考数字](AA)开始; (BB)结束; (S11)扩散高分子物质的步骤; (S12)硬化高分子物质的步骤; (S13)形成聚合物基板的步骤; (S14)形成金属薄膜的步骤; (S15)散布金属纳米粒子的步骤

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