4.8 Article

Plasmonic Core-Satellites Nanostructures with High Chirality and Bioproperty

期刊

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
卷 4, 期 14, 页码 2379-2384

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jz401014b

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资金

  1. National Natural Science Foundation of China [21071066, 91027038, 21101079, 21175034]
  2. MOST [2012BAC01B07, 2012AA06A303, 2012BAD29B04, 2012 BAK1 1B01, 201 1BAK10B07, 2011BAK10B01, 2010AA06Z302, 2010DFB3047, 2013ZX08012-001, 2012BAK17B10, 2012BAKO8B01, 2012YQ090194]
  3. Jiangsu Province, MOF and MOE [NCET-12-0879, BE2011626, 201210036, 201310135, 311002]

向作者/读者索取更多资源

In this Letter, gold nanorods (Au NRs) and gold nanopartides (Au NPs) were assembled into core satellites (Au NR NPs) nanostructures using DNA as the linkers. Circular dichroism (CD) measurements of the nanoassemblies displayed two plasmonic CD (PCD) peaks in the vicinity of the surface plasmon resonance (SPR). Interestingly, the number of Au NPs in the assemblies had a significant influence on the shape and intensity of the CD line. The assemblies were enzymatically disassembled by deoxyribonudease I (DNase I), and the CD responses were simultaneously reversed. With the proof-of-concept design, the PCD response was no change by addding enzyme inhibitor. These experiments suggested that the chirality depended upon the structure of core satellites nanoassemblies, and the results clarify that the possible origin of the optical activity comes from chiral arrangement of building blocks and Coulomb dipole dipole interactions. This research also illuminated that the assemblies can be used to develop a new sensor for the sensitive screening of the enzyme inhibitors.

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