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Rapid controllable growth of silver nanostructured surface-enhanced Raman scattering substrates for red blood cell detection

机译:银纳米结构表面增强拉曼散射底物的快速可控生长用于红细胞检测

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摘要

Silver nanostructured films suitable for use as surface-enhanced Raman scattering (SERS) substrates are prepared in just 2 hours by the solid-state ionics method. By changing the intensity of the external direct current, we can readily control the surface morphology and growth rate of the silver nanostructured films. A detailed investigation of the surface enhancement of the silver nanostructured films using Rhodamine 6G (R6G) as a molecular probe revealed that the enhancement factor of the films was up to 1011. We used the silver nanostructured films as substrates in SERS detection of human red blood cells (RBCs). The SERS spectra of RBCs on the silver nanostructured film could be clearly detected at a laser power of just 0.05 mW. Comparison of the SERS spectra of RBCs obtained from younger and older donors showed that the SERS spectra depended on donor age. A greater proportion of the haemoglobin in the RBCs of older donors was in the deoxygenated state than that of the younger donors. This implies that haemoglobin of older people has lower oxygen-carrying capacity than that of younger people. Overall, the fabricated silver substrates show promise in biomedical SERS spectral detection.
机译:通过固态离子方法,仅需2小时即可制备出适合用作表面增强拉曼散射(SERS)基底的银纳米结构薄膜。通过改变外部直流电的强度,我们可以容易地控制银纳米结构膜的表面形态和生长速率。用罗丹明6G(R6G)作为分子探针对银纳米结构薄膜的表面增强进行了详细研究,发现该膜的增强因子高达10 11 。我们将银纳米结构膜用作人类红细胞(RBC)的SERS检测的底物。仅需0.05 mW的激光功率,就可以清楚地检测出银纳米结构薄膜上的红细胞的SERS光谱。从年轻和较年长的供体获得的RBC的SERS光谱的比较表明,SERS光谱取决于供体的年龄。与年轻的供体相比,老年的供体的红细胞中的血红蛋白比例更高。这意味着,老年人的血红蛋白的携氧能力低于年轻人。总体而言,所制造的银基板在生物医学SERS光谱检测中显示出希望。

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