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首页> 外文期刊>Materials Science and Engineering >Bringing immuno-assemblies to optoelectronics: sandwich assay integration of a nanostructured porous-silicon/gold-nanoparticle phototransistor
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Bringing immuno-assemblies to optoelectronics: sandwich assay integration of a nanostructured porous-silicon/gold-nanoparticle phototransistor

机译:将免疫组件带到光电子:夹层测定纳米结构多孔硅/金纳米颗粒光电晶体的整合

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摘要

The exquisite specificity of biomolecular interactions can be used to integrate photonic and electronic components into nanomaterial-based architectures. In this line, a field-effect phototransistor based on Si/porous silicon (PSi) structures was fabricated by quantitatively attaching Gold nanoparticles (AuNPs) to the PSi surface by an immunoassay. Two antibodies, linked onto PSi and AuNPs, were used against different epitopes of prostate specific antigen, the common conjugating marker for these antibodies. Under white light illumination the photocurrent increases with increasing AuNP surface density. The gate voltage is effective in decoupling electron-hole pairs created at the nanostructured PSi interface. In turn, the main effect of the immune-assembled AuNPs is the optimization of charge transport through the surface. The analysis of the photocurrent shows an outstanding spectral selectivity in the 980 ± 50 nm NIR bandwidth. This report underlines the potential of the insertion of immune-assay protocols for the development of optoelectronic devices.
机译:体分子相互作用的精致特异性可用于将光子和电子元件集成到基于纳米材料的架构中。在这条线中,通过定量用免疫测定将金纳米颗粒(AUNP)定量地将金纳米颗粒(AUNP)连接到PSI表面来制造基于Si /多孔硅(PSI)结构的场效应光电晶体管。将两种抗体连接到psi和aunps上,用于前列腺特异性抗原的不同表位,这些抗体的常见缀合标记物。在白光照射下,光电流随着AUNP表面密度的增加而增加。栅极电压在纳米结构PSI接口处产生的去耦电子空穴对有效。反过来,免疫组装的AUNP的主要效果是通过表面的电荷输送的优化。对光电流的分析显示了980±50nm Nir带宽中的出色光谱选择性。本报告强调了用于开发光电器件的免疫测定方案的潜力。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第9期|115271.1-115271.6|共6页
  • 作者单位

    Departamento de Fisica Aplicada and Instituto de Ciencia de Materiales Nicolas Cabrera Universidad Autonoma de Madrid 28049 Madrid Spain Department of Physics Faculty of Science Minia University 61519 Minia Egypt;

    Departamento de Fisica Aplicada and Instituto de Ciencia de Materiales Nicolas Cabrera Universidad Autonoma de Madrid 28049 Madrid Spain Mecwins S.A. Ronda de Poniente 15 2°D 28760 Tres Cantos Madrid Spain;

    Departamento de Fisica Aplicada and Instituto de Ciencia de Materiales Nicolas Cabrera Universidad Autonoma de Madrid 28049 Madrid Spain;

    Mecwins S.A. Ronda de Poniente 15 2°D 28760 Tres Cantos Madrid Spain;

    Departamento de Fisica Aplicada and Instituto de Ciencia de Materiales Nicolas Cabrera Universidad Autonoma de Madrid 28049 Madrid Spain;

    Mecwins S.A. Ronda de Poniente 15 2°D 28760 Tres Cantos Madrid Spain;

    Departamento de Fisica Aplicada and Instituto de Ciencia de Materiales Nicolas Cabrera Universidad Autonoma de Madrid 28049 Madrid Spain Mecwins S.A. Ronda de Poniente 15 2°D 28760 Tres Cantos Madrid Spain;

    Mecwins S.A. Ronda de Poniente 15 2°D 28760 Tres Cantos Madrid Spain;

    Departamento de Fisica Aplicada and Instituto de Ciencia de Materiales Nicolas Cabrera Universidad Autonoma de Madrid 28049 Madrid Spain Centro de Micro-Analisis de Materiales Universidad Autonoma de Madrid 28049 Madrid Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Immuno-assembly; Sandwich assay; Porous silicon; Gold nanoparticles; Phototransistor; Optoelectronics;

    机译:免疫组装;三明治测定;多孔硅;金纳米颗粒;光反射器;光电子学;

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