2022
DOI: 10.1039/d1sc03327a
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Template-assisted self-assembly of achiral plasmonic nanoparticles into chiral structures

Abstract: Diverse templating materials and assembly strategies can be used to induce collective optical activity on achiral plasmonic building blocks. We present the advances, applications, challenges, and prospects of plasmonic–excitonic hybrids.

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Cited by 61 publications
(66 citation statements)
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References 130 publications
(197 reference statements)
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“…Recently, emerging bent-core mesogens exhibiting the B4 phase or so-called helical nanofilament (HNF) phase have been used as chiral liquid-crystalline templates for fabricating chiral plasmonic nanomaterials 44,159,[181][182][183][184][185][186][187] . For example, Lewandowski et al judiciously designed and synthesized a dimeric liquid-crystalline template (L-L), which can self-organize into the HNF phase showing hierarchical and tailorable nanostructures and drive the self-assembly of L-ligand-functionalized gold nanoparticles into ordered chiral plasmonic nanomaterials 188 .…”
Section: Chiral Nanomaterials Based On Thermotropic Liquid Crystal Te...mentioning
confidence: 99%
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“…Recently, emerging bent-core mesogens exhibiting the B4 phase or so-called helical nanofilament (HNF) phase have been used as chiral liquid-crystalline templates for fabricating chiral plasmonic nanomaterials 44,159,[181][182][183][184][185][186][187] . For example, Lewandowski et al judiciously designed and synthesized a dimeric liquid-crystalline template (L-L), which can self-organize into the HNF phase showing hierarchical and tailorable nanostructures and drive the self-assembly of L-ligand-functionalized gold nanoparticles into ordered chiral plasmonic nanomaterials 188 .…”
Section: Chiral Nanomaterials Based On Thermotropic Liquid Crystal Te...mentioning
confidence: 99%
“…Chiral nanomaterials based on emerging soft templates have been considered as the model system for investigating their inter-particle coupling, high-order selforganized nanostructures, and responsive dynamic properties, which can bring up a variety of potential applications [38][39][40] . For example, chiral nanomaterials based on nanoscale plasmonic building blocks, i.e., chiral plasmonic nanomaterials, have been demonstrated to show novel plasmon coupling or collective plasmonic properties that are usually absent in their discrete counterparts [41][42][43][44][45][46][47] . Chiral plasmonic nanomaterials could exhibit unprecedented enhanced CD, amplified dissymmetry factor (gfactor), engineerable and dynamic chiroptical responses 41 , thus holding a great opportunity in plasmon-based technological applications, such as chiral sensing 48,49 , chirality detection [50][51][52] , surface-enhanced spectroscopies 53,54 , and beyond 55,56 .…”
Section: Introductionmentioning
confidence: 99%
“…Among the different host materials explored in the context of chiral plasmonic composite fabrication, polymers, liquid crystals (LCs) and organic gels are particularly interesting. , These composites can benefit from the synergy of plasmonic properties of NPs as well as the morphology and soft character of the template. For example, materials exhibiting stimuli-responsive PCD properties have been prepared through a directed assembly of NPs by chiral liquid crystals. , However, remote control over the structure of LCs still remains a challenge.…”
Section: Introductionmentioning
confidence: 99%
“…However, these fabrication techniques are either sophisticated or costly, and the whole processes are usually time-consuming. Recent studies investigated alternative fabrication approaches for plasmonic metasurfaces, including template-guided selfassembly, [41][42][43] block copolymer lithography, [44][45][46] etc. However, the patterning resolution and large-area uniformity do not agree with the demand for high-performance plasmonic metasurface-based biosensors.…”
mentioning
confidence: 99%