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A highly active SERS sensing substrate: Core-satellite assembly of gold nanorodsanoplates

机译:高效的SERS传感底物:金纳米棒/纳米板的核-卫星组装

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摘要

Regiospecific core-satellite assembly of gold nanoplates (AuNPs)/gold nanorods (AuNRs) can be fabricated via ss-DNA hybridization. SERS behavior of the DNA driven assembly has been explored from inducing transition between para-ATP and DMAB through plasmon-assisted catalysis, suggesting that the core-satellite assembly can be utilized as highly active optical substrate. Moreover, a Raman label tagged thymine-rich DNA functionalized AuNRs/AuNPs assembly can be employed as in situ SERS sensing of mercury ions at the ultrasensitive ppt level, which indicates that the core-satellite assembly is appropriate as a versatile SERS substrate for the application of optical chemical or biosensing.
机译:可以通过ss-DNA杂交制备金纳米板(AuNPs)/金纳米棒(AuNRs)的区域特异性核心-卫星组装体。已通过等离激元辅助催化诱导对ATP和DMAB之间的过渡,探索了DNA驱动组件的SERS行为,这表明核心卫星组件可以用作高活性光学底物。此外,拉曼标记的富胸腺嘧啶脱氧核糖核酸功能化的AuNRs / AuNPs装配体可以用作超灵敏ppt水平的汞离子的原位SERS传感,这表明核心卫星装配体适合用作通用SERS底物光学化学或生物传感。

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