Fine-tune chiroptical activity in discrete chiral Au nanorods

Accurate researches on the surface plasmon resonance (SPR)-based applications of chiral plasmonic metal nanoparticles (NPs) still remain a great challenge. Herein, a series of chiral plasmonic metal NPs, e.g., chiral Au nanorods (c-Au NRs), c-Au@Ag core—shell, and c-Au@TiO 2 core—shell NRs, with dif...

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Veröffentlicht in:Nano research 2022-07, Vol.15 (7), p.6574-6581
Hauptverfasser: Zheng, Guangchao, Jiao, Sulin, Zhang, Wei, Wang, Shenli, Zhang, Qinghua, Gu, Lin, Ye, Weixiang, Li, Junjun, Ren, Xiaochen, Zhang, Zhicheng, Wong, Kwok-yin
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Sprache:eng
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Zusammenfassung:Accurate researches on the surface plasmon resonance (SPR)-based applications of chiral plasmonic metal nanoparticles (NPs) still remain a great challenge. Herein, a series of chiral plasmonic metal NPs, e.g., chiral Au nanorods (c-Au NRs), c-Au@Ag core—shell, and c-Au@TiO 2 core—shell NRs, with different chiroptical activities have been produced. Plasmonic circular dichroism (PCD) bands of c-Au NRs can be precisely tailored by tuning the longitudinal SPR (LSPR) and amount of Au NRs as seeds. Besides, a shift of PCD bands within ultraviolet—visible—near infrared ray (UV—vis—NIR) region can also be achieved through the functionalization of a shell of another metal or semiconductor. Interestingly, chirality transfer from c-Au core to Ag shell leads to new PCD bands at the near-UV region. The tuning of PCD bands and chirality transfer are confirmed by our developed theoretical model. Developing chiral Au NRs-based chiral plasmonic nanomaterials with tunable chiroptical activities will be helpful to understand the structure-direct PCD and to extend circularly polarized-based applications.
ISSN:1998-0124
1998-0000
DOI:10.1007/s12274-022-4212-y