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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A synergistic combination of diatomaceous earth with Au nanoparticles as a periodically ordered, button-like substrate for SERS analysis of the chemical composition of eccrine sweat in latent fingerprints
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A synergistic combination of diatomaceous earth with Au nanoparticles as a periodically ordered, button-like substrate for SERS analysis of the chemical composition of eccrine sweat in latent fingerprints

机译:硅藻土和金纳米颗粒的协同组合,作为周期性有序的纽扣状底物,用于SERS分析潜在指纹中内分泌汗的化学成分

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The artistry and the amazingly beautiful hierarchical three-dimensional (3D) patterning of diatoms make them ideal biological scaffolds. Here, fraction-free and ultra-high-purity diatomaceous earth has been successfully prepared by low speed centrifugation in saturated sucrose solution and calcination at 600 degrees C for 2 h. The prepared citrate-stabilized 18 +/- 2.4 and 32 +/- 5.4 nm Au nanoparticles were singly, uniformly and densely self-assembled onto amino-functionalized diatomaceous earth templates following their surface morphologies via electrostatic interactions, during which the control experiment and appropriate parameter exploration were performed. The formed 18 +/- 2.4 and 32 +/- 5.4 nm Au nanoparticle coated diatomaceous earth fine-grained composite materials were pressed into hard, button-like tablets with a fixed diameter of 13 mm and a thickness of 2 mm, and then the two fabricated types of button-like portable tablets were used for surface-enhanced Raman spectroscopy (SERS) detection, and their enhancement factors (EFs), SERS reproducibility and long-term stability were testified using rhodamine 6G (R6G) as the probe molecule. The button-like portable tablet composed of diatomaceous earth-templated 32 +/- 5.4 nm Au nanoparticle arrays had a higher EF and was successfully applied to SERS analysis of the trace chemical composition of eccrine sweat in latent fingerprints. It may reveal the medical condition of an individual by analyzing the obtained SERS spectra, suggesting that the SERS-based methodology, due to its high sensitivity, has a potentially wide range of applications in fields that need trace detection, such as medical diagnostics and forensic investigations. Moreover, the button-like, 3D periodically ordered tablet as a portable SERS substrate composed of a synergistic combination of diatomaceous earth with Au nanoparticles in this work is robust, easy to carry around, and applicable to on-site SERS detection.
机译:硅藻的艺术性和惊人的美丽的三维(3D)分层图案使它们成为理想的生物支架。在这里,通过在饱和蔗糖溶液中低速离心并在600摄氏度下煅烧2小时,已成功制备了无级分和超高纯硅藻土。将制备的柠檬酸盐稳定的18 +/- 2.4和32 +/- 5.4 nm Au纳米粒子按照其表面形态通过静电相互作用分别,均匀且致密地自组装到氨基官能化的硅藻土模板上,在此期间进行对照实验和适当的研究。进行参数探索。将形成的18 +/- 2.4和32 +/- 5.4 nm的Au纳米颗粒涂覆的硅藻土细粒复合材料压制成固定直径13 mm,厚度2 mm的坚硬,纽扣状片剂,然后两种制造类型的纽扣状便携式片剂用于表面增强拉曼光谱(SERS)检测,并使用罗丹明6G(R6G)作为探针分子验证了它们的增强因子(EFs),SERS重现性和长期稳定性。由硅藻土样的32 +/- 5.4 nm Au纳米粒子阵列组成的纽扣状便携式平板电脑具有较高的EF,已成功地用于SERS分析潜在指纹中的内分泌汗水的微量化学成分。它可能会通过分析获得的SERS光谱来揭示个人的医疗状况,这表明基于SERS的方法由于其高灵敏度,在需要痕量检测的领域(如医疗诊断和法医)具有潜在的广泛应用。调查。而且,纽扣状,3D周期性排列的片剂作为便携式SERS基质,由硅藻土和Au纳米颗粒的协同组合构成,在这项工作中非常坚固,易于携带,适用于现场SERS检测。

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