AI Article Synopsis

  • The assembly of anisotropic nanomaterials, like gold nanorods, into organized structures is difficult but produces systems with unique properties.
  • A linear diamino BODIPY derivative was used to effectively align the gold nanorods into long chains, enhancing their optical features through plasmon-molecule coupling.
  • This approach demonstrates a novel method for creating structured nanorods with potential applications in biomedicine due to their improved photothermal properties.

Article Abstract

The assembly of anisotropic nanomaterials into ordered structures is challenging. Nevertheless, such self-assembled systems are known to have novel physicochemical properties and the presence of a chromophore within the nanoparticle ensemble can enhance the optical properties through plasmon-molecule electronic coupling. Here, we report the end-to-end assembly of gold nanorods into micrometer-long chains using a linear diamino BODIPY derivative. The preferential binding affinity of the amino group and the steric bulkiness of BODIPY directed the longitudinal assembly of gold nanorods. As a result of the linear assembly, the BODIPY chromophores positioned themselves in the plasmonic hotspots, which resulted in efficient plasmon-molecule coupling, thereby imparting photothermal properties to the assembled nanorods. This work thus demonstrates a new approach for the linear assembly of gold nanorods resulting in a plasmon-molecule coupled system, and the synergy between self-assembly and electronic coupling resulted in an efficient system having potential biomedical applications.

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Source
http://dx.doi.org/10.1039/d4nr02161dDOI Listing

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