Heterophase fcc-2H-fcc gold nanorods

The crystal phase-based heterostructures of noble metal nanomaterials are of interest for various applications. Here, the authors report the wet-chemical synthesis of gold nanorods with a well-defined fcc-2H-fcc heterophase, which possess unique optical and catalytic properties.

Guardado en:
Detalles Bibliográficos
Autores principales: Zhanxi Fan, Michel Bosman, Zhiqi Huang, Ye Chen, Chongyi Ling, Lin Wu, Yuriy A. Akimov, Robert Laskowski, Bo Chen, Peter Ercius, Jian Zhang, Xiaoying Qi, Min Hao Goh, Yiyao Ge, Zhicheng Zhang, Wenxin Niu, Jinlan Wang, Haimei Zheng, Hua Zhang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
Materias:
Q
Acceso en línea:https://doaj.org/article/27bb27a02e404635b80af4039a7d09bb
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:27bb27a02e404635b80af4039a7d09bb
record_format dspace
spelling oai:doaj.org-article:27bb27a02e404635b80af4039a7d09bb2021-12-02T18:18:46ZHeterophase fcc-2H-fcc gold nanorods10.1038/s41467-020-17068-w2041-1723https://doaj.org/article/27bb27a02e404635b80af4039a7d09bb2020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17068-whttps://doaj.org/toc/2041-1723The crystal phase-based heterostructures of noble metal nanomaterials are of interest for various applications. Here, the authors report the wet-chemical synthesis of gold nanorods with a well-defined fcc-2H-fcc heterophase, which possess unique optical and catalytic properties.Zhanxi FanMichel BosmanZhiqi HuangYe ChenChongyi LingLin WuYuriy A. AkimovRobert LaskowskiBo ChenPeter ErciusJian ZhangXiaoying QiMin Hao GohYiyao GeZhicheng ZhangWenxin NiuJinlan WangHaimei ZhengHua ZhangNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhanxi Fan
Michel Bosman
Zhiqi Huang
Ye Chen
Chongyi Ling
Lin Wu
Yuriy A. Akimov
Robert Laskowski
Bo Chen
Peter Ercius
Jian Zhang
Xiaoying Qi
Min Hao Goh
Yiyao Ge
Zhicheng Zhang
Wenxin Niu
Jinlan Wang
Haimei Zheng
Hua Zhang
Heterophase fcc-2H-fcc gold nanorods
description The crystal phase-based heterostructures of noble metal nanomaterials are of interest for various applications. Here, the authors report the wet-chemical synthesis of gold nanorods with a well-defined fcc-2H-fcc heterophase, which possess unique optical and catalytic properties.
format article
author Zhanxi Fan
Michel Bosman
Zhiqi Huang
Ye Chen
Chongyi Ling
Lin Wu
Yuriy A. Akimov
Robert Laskowski
Bo Chen
Peter Ercius
Jian Zhang
Xiaoying Qi
Min Hao Goh
Yiyao Ge
Zhicheng Zhang
Wenxin Niu
Jinlan Wang
Haimei Zheng
Hua Zhang
author_facet Zhanxi Fan
Michel Bosman
Zhiqi Huang
Ye Chen
Chongyi Ling
Lin Wu
Yuriy A. Akimov
Robert Laskowski
Bo Chen
Peter Ercius
Jian Zhang
Xiaoying Qi
Min Hao Goh
Yiyao Ge
Zhicheng Zhang
Wenxin Niu
Jinlan Wang
Haimei Zheng
Hua Zhang
author_sort Zhanxi Fan
title Heterophase fcc-2H-fcc gold nanorods
title_short Heterophase fcc-2H-fcc gold nanorods
title_full Heterophase fcc-2H-fcc gold nanorods
title_fullStr Heterophase fcc-2H-fcc gold nanorods
title_full_unstemmed Heterophase fcc-2H-fcc gold nanorods
title_sort heterophase fcc-2h-fcc gold nanorods
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/27bb27a02e404635b80af4039a7d09bb
work_keys_str_mv AT zhanxifan heterophasefcc2hfccgoldnanorods
AT michelbosman heterophasefcc2hfccgoldnanorods
AT zhiqihuang heterophasefcc2hfccgoldnanorods
AT yechen heterophasefcc2hfccgoldnanorods
AT chongyiling heterophasefcc2hfccgoldnanorods
AT linwu heterophasefcc2hfccgoldnanorods
AT yuriyaakimov heterophasefcc2hfccgoldnanorods
AT robertlaskowski heterophasefcc2hfccgoldnanorods
AT bochen heterophasefcc2hfccgoldnanorods
AT peterercius heterophasefcc2hfccgoldnanorods
AT jianzhang heterophasefcc2hfccgoldnanorods
AT xiaoyingqi heterophasefcc2hfccgoldnanorods
AT minhaogoh heterophasefcc2hfccgoldnanorods
AT yiyaoge heterophasefcc2hfccgoldnanorods
AT zhichengzhang heterophasefcc2hfccgoldnanorods
AT wenxinniu heterophasefcc2hfccgoldnanorods
AT jinlanwang heterophasefcc2hfccgoldnanorods
AT haimeizheng heterophasefcc2hfccgoldnanorods
AT huazhang heterophasefcc2hfccgoldnanorods
_version_ 1718378203664351232