Invention Grant
- Patent Title: Asymmetric monometallic nanorod nanoparticle dimer and related compositions and methods
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Application No.: US15513257Application Date: 2015-09-25
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Publication No.: US10458039B2Publication Date: 2019-10-29
- Inventor: Yu Han , Jianfeng Huang , Yihan Zhu
- Applicant: KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY
- Applicant Address: SA Thuwal
- Assignee: KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY
- Current Assignee: KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY
- Current Assignee Address: SA Thuwal
- Agency: Pabst Patent Group LLP
- International Application: PCT/IB2015/002077 WO 20150925
- International Announcement: WO2016/046645 WO 20160331
- Main IPC: C30B7/14
- IPC: C30B7/14 ; B82Y30/00 ; C30B29/02 ; C30B29/60 ; G01N21/65 ; C03B29/02 ; B82Y40/00

Abstract:
The fabrication of asymmetric monometallic nanocrystals with novel properties for plasmonics, nanophotonics and nanoelectronics. Asymmetric monometallic plasmonic nanocrystals are of both fundamental synthetic challenge and practical significance. In an example, a thiol-ligand mediated growth strategy that enables the synthesis of unprecedented Au Nanorod-Au Nanoparticle (AuNR-AuNP) dimers from pre-synthesized AuNR seeds. Using high-resolution electron microscopy and tomography, crystal structure and three-dimensional morphology of the dimer, as well as the growth pathway of the AuNP on the AuNR seed, was investigated for this example. The dimer exhibits an extraordinary broadband optical extinction spectrum spanning the UV, visible, and near infrared regions (300-1300 nm). This unexpected property makes the AuNR-AuNP dimer example useful for many nanophotonic applications. In two experiments, the dimer example was tested as a surface-enhanced Raman scattering (SERS) substrate and a solar light harvester for photothermal conversion, in comparison with the mixture of AuNR and AuNP. In the SERS experiment, the dimer example showed an enhancement factor about 10 times higher than that of the mixture, when the excitation wavelength (660 nm) was off the two surface plasmon resonance (SPR) bands of the mixture. In the photothermal conversion experiment under simulated sunlight illumination, the dimer example exhibited an energy conversion efficiency about 1.4 times as high as that of the mixture.
Public/Granted literature
- US20170306520A1 ASYMMETRIC MONOMETALLIC NANOROD NANOPARTICLE DIMER AND RELATED COMPOSITIONS AND METHODS Public/Granted day:2017-10-26
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