Plasmonic twinned silver nanoparticles with molecular precision

The structure of nanoparticles strongly influences their properties. Here, the authors use single crystal X-ray diffraction to resolve the crystal structures of Ag136 and Ag374nanoparticles, enabling the observation of local structure distortion and the lower size limit of surface plasmon resonance.

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Autores principales: Huayan Yang, Yu Wang, Xi Chen, Xiaojing Zhao, Lin Gu, Huaqi Huang, Juanzhu Yan, Chaofa Xu, Gang Li, Junchao Wu, Alison J. Edwards, Birger Dittrich, Zichao Tang, Dongdong Wang, Lauri Lehtovaara, Hannu Häkkinen, Nanfeng Zheng
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/7e97850bb2844b93a5611c4a1d3bf1c1
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spelling oai:doaj.org-article:7e97850bb2844b93a5611c4a1d3bf1c12021-12-02T15:34:58ZPlasmonic twinned silver nanoparticles with molecular precision10.1038/ncomms128092041-1723https://doaj.org/article/7e97850bb2844b93a5611c4a1d3bf1c12016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12809https://doaj.org/toc/2041-1723The structure of nanoparticles strongly influences their properties. Here, the authors use single crystal X-ray diffraction to resolve the crystal structures of Ag136 and Ag374nanoparticles, enabling the observation of local structure distortion and the lower size limit of surface plasmon resonance.Huayan YangYu WangXi ChenXiaojing ZhaoLin GuHuaqi HuangJuanzhu YanChaofa XuGang LiJunchao WuAlison J. EdwardsBirger DittrichZichao TangDongdong WangLauri LehtovaaraHannu HäkkinenNanfeng ZhengNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Huayan Yang
Yu Wang
Xi Chen
Xiaojing Zhao
Lin Gu
Huaqi Huang
Juanzhu Yan
Chaofa Xu
Gang Li
Junchao Wu
Alison J. Edwards
Birger Dittrich
Zichao Tang
Dongdong Wang
Lauri Lehtovaara
Hannu Häkkinen
Nanfeng Zheng
Plasmonic twinned silver nanoparticles with molecular precision
description The structure of nanoparticles strongly influences their properties. Here, the authors use single crystal X-ray diffraction to resolve the crystal structures of Ag136 and Ag374nanoparticles, enabling the observation of local structure distortion and the lower size limit of surface plasmon resonance.
format article
author Huayan Yang
Yu Wang
Xi Chen
Xiaojing Zhao
Lin Gu
Huaqi Huang
Juanzhu Yan
Chaofa Xu
Gang Li
Junchao Wu
Alison J. Edwards
Birger Dittrich
Zichao Tang
Dongdong Wang
Lauri Lehtovaara
Hannu Häkkinen
Nanfeng Zheng
author_facet Huayan Yang
Yu Wang
Xi Chen
Xiaojing Zhao
Lin Gu
Huaqi Huang
Juanzhu Yan
Chaofa Xu
Gang Li
Junchao Wu
Alison J. Edwards
Birger Dittrich
Zichao Tang
Dongdong Wang
Lauri Lehtovaara
Hannu Häkkinen
Nanfeng Zheng
author_sort Huayan Yang
title Plasmonic twinned silver nanoparticles with molecular precision
title_short Plasmonic twinned silver nanoparticles with molecular precision
title_full Plasmonic twinned silver nanoparticles with molecular precision
title_fullStr Plasmonic twinned silver nanoparticles with molecular precision
title_full_unstemmed Plasmonic twinned silver nanoparticles with molecular precision
title_sort plasmonic twinned silver nanoparticles with molecular precision
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/7e97850bb2844b93a5611c4a1d3bf1c1
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AT yuwang plasmonictwinnedsilvernanoparticleswithmolecularprecision
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AT birgerdittrich plasmonictwinnedsilvernanoparticleswithmolecularprecision
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AT dongdongwang plasmonictwinnedsilvernanoparticleswithmolecularprecision
AT laurilehtovaara plasmonictwinnedsilvernanoparticleswithmolecularprecision
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AT nanfengzheng plasmonictwinnedsilvernanoparticleswithmolecularprecision
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