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Journal ArticleDOI

Three-dimensional plasmonic chiral tetramers assembled by DNA origami.

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TLDR
It is demonstrated that circular dichroism can be generated with artificial plasmonic chiral nanostructures composed of the minimum number of spherical gold nanoparticles required for three-dimensional (3D) chirality.
Abstract
Molecular chemistry offers a unique toolkit to draw inspiration for the design of artificial metamolecules. For a long time, optical circular dichroism has been exclusively the terrain of natural chiral molecules, which exhibit optical activity mainly in the UV spectral range, thus greatly hindering their significance for a broad range of applications. Here we demonstrate that circular dichroism can be generated with artificial plasmonic chiral nanostructures composed of the minimum number of spherical gold nanoparticles required for three-dimensional (3D) chirality. We utilize a rigid addressable DNA origami template to precisely organize four nominally identical gold nanoparticles into a three-dimensional asymmetric tetramer. Because of the chiral structural symmetry and the strong plasmonic resonant coupling between the gold nanoparticles, the 3D plasmonic assemblies undergo different interactions with left and right circularly polarized light, leading to pronounced circular dichroism. Our experimental results agree well with theoretical predictions. The simplicity of our structure geometry and, most importantly, the concept of resorting on biology to produce artificial photonic functionalities open a new pathway to designing smart artificial plasmonic nanostructures for large-scale production of optically active metamaterials.

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Citations
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Journal ArticleDOI

DNA Origami: Scaffolds for Creating Higher Order Structures

TL;DR: This review provides a comprehensive survey of recent developments in DNA origami structure, design, assembly, and directed self-assembly, as well as its broad applications.
Journal ArticleDOI

Chiral Inorganic Nanostructures

TL;DR: This review will cover both experiment and theory of chiral nanostructures starting with the origin and multiple components of mirror asymmetry of individual NPs and their assemblies, and shall consider four different types of chirality in nanostructure and related physical, chemical, and biological effects.
Journal ArticleDOI

DNA origami based assembly of gold nanoparticle dimers for surface-enhanced Raman scattering

TL;DR: This work uses surface-enhanced Raman scattering (SERS) to demonstrate local field enhancements of several orders of magnitude through detection of a small number of dye molecules as well as short single-stranded DNA oligonucleotides, demonstrating that DNA origami is a powerful tool for the high-yield creation of SERS-active nanoparticle assemblies with reliable sub-5 nm gap sizes.
Journal ArticleDOI

Bio-inspired synthesis of metal nanomaterials and applications

TL;DR: This critical review focuses on recent advances in the bio-inspired synthesis of metal nanomaterials using microorganisms, viruses, plants, proteins and DNA molecules as well as their applications in various fields.
References
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Journal ArticleDOI

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TL;DR: In this paper, the optical constants for the noble metals (copper, silver, and gold) from reflection and transmission measurements on vacuum-evaporated thin films at room temperature, in the spectral range 0.5-6.5 eV.
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Folding DNA to create nanoscale shapes and patterns

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Gold Helix Photonic Metamaterial as Broadband Circular Polarizer

TL;DR: This work investigated propagation of light through a uniaxial photonic metamaterial composed of three-dimensional gold helices arranged on a two-dimensional square lattice that is scalable to other frequency ranges and can be used as a compact broadband circular polarizer.
Journal ArticleDOI

Self-assembly of DNA into nanoscale three-dimensional shapes

TL;DR: This work demonstrates the design and assembly of nanostructures approximating six shapes—monolith, square nut, railed bridge, genie bottle, stacked cross, slotted cross, and heterotrimeric wireframe icosahedra with precisely controlled dimensions.
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