Plasmonic Fluorescent Nanocomposites of Cyanines Self-assembled upon Gold Nanoparticle Scaffolds

被引:0
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作者
Komandoor E. Achyuthan
Ann M. Achyuthan
Susan M. Brozik
Shawn M. Dirk
Tracy R. Lujan
Janet M. Romero
Jason C. Harper
机构
[1] Sandia National Laboratories,Biosensors and Nanomaterials Department
[2] Northern New Mexico College,Biology Department
[3] Sandia National Laboratories,Organic Materials Department
[4] Sandia National Laboratories,Bioenergy and Defense Technology Department
来源
Analytical Sciences | 2012年 / 28卷
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摘要
Plasmonic fluorescent nanocomposites are difficult to prepare due to strong quenching effects on fluorophores in the vicinity of noble metal nanoparticles such as gold (AuNPs). We successfully prepared plasmonic fluorescent nanocomposites of two cyanines (1 and 2) aggregating upon 2 – 40 nm AuNPs or streptavidin-conjugated 10 nm AuNPs. We used high throughput screening (HTS) for the first time to characterize the spectral properties, aggregation kinetics, aggregation density and photostability of the nanocomposites. Fluorescence from nanocomposites declined inversely with AuNPs size: 40 nm ≥ 20 nm > 10 nm > 5 nm > 2 nm. Sensitivity (limit of detection, LOD, 105 – 1011 AuNPs/mL), brightness of the nanocomposites and surface coverage of AuNPs by cyanine aggregates were all influenced by five factors: 1) AuNPs size; 2) cyanine type (1 or 2); 3) aggregate density; 4) distance between aggregates and AuNPs surface; and 5) streptavidin protein conjugation to AuNPs. We propose a model for plasmonic fluorescent nanocomposites based on these observations. Our plasmonic fluorescent nanocomposites have applications in chemical and biological assays.
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页码:433 / 438
页数:5
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