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Graphene/Cu Nanoparticle Hybrids Fabricated by Chemical Vapor Deposition As Surface-Enhanced Raman Scattering Substrate for Label-Free Detection of Adenosine

机译:通过化学气相沉积制备的石墨烯/铜纳米粒子杂化体作为表面增强拉曼散射基质,用于无标记腺苷检测

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摘要

We present a graphene/Cu nanoparticle hybrids (G/CuNPs) system as a surface-enhanced Raman scattering (SERS) substrate for adenosine detection. The Cu nanoparticles wrapped by a monolayer graphene shell were directly synthesized on flat quartz by chemical vapor deposition in a mixture of methane and hydrogen. The G/CuNPS showed an excellent SERS enhancement activity for adenosine. The minimum detected concentration of the adenosine in serum was demonstrated as low as 5 nM, and the calibration curve showed a good linear response from 5 to 500 nM. The capability of SERS detection of adenosine in real normal human urine samples based on G/CuNPs was also investigated and the characteristic peaks of adenosine were still recognizable. The reproducible and the ultrasensitive enhanced Raman signals could be due to the presence of an ultrathin graphene layer. The graphene shell was able to enrich and fix the adenosine molecules, which could also efficiently maintain chemical and optical stability of G/CuNPs. Based on the G/CuNPs system, the ultrasensitive SERS detection of adenosine in varied matrices was expected for the practical applications in medicine and biotechnology.
机译:我们提出了一种石墨烯/铜纳米粒子杂化体(G / CuNPs)系统,作为表面增强拉曼散射(SERS)底物用于腺苷检测。通过在甲烷和氢气的混合物中进行化学气相沉积,在平面石英上直接合成被单层石墨烯壳包裹的Cu纳米颗粒。 G / CuNPS对腺苷显示出极好的SERS增强活性。血清中腺苷的最低检测浓度低至5 nM,校正曲线在5至500 nM之间显示出良好的线性响应。还研究了基于G / CuNPs的SERS检测真实正常人尿液样品中腺苷的能力,并且腺苷的特征峰仍然可以识别。可再现的和超灵敏的增强拉曼信号可能是由于存在超薄石墨烯层所致。石墨烯壳能够富集并固定腺苷分子,这也可以有效地保持G / CuNPs的化学和光学稳定性。基于G / CuNPs系统,有望在药物和生物技术中的实际应用中超灵敏的SERS检测各种基质中的腺苷。

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