Ultrathin Gold Nanoframes through Surfactant-Free Templating of Faceted Pentagonal Silver Nanoparticles

被引:170
作者
McEachran, Matthew [1 ]
Keogh, Dilyn [1 ]
Pietrobon, Brendan [1 ]
Cathcart, Nicole [1 ]
Gourevich, Ilya [2 ]
Coombs, Neil [2 ]
Kitaev, Vladimir [1 ]
机构
[1] Wilfrid Laurier Univ, Dept Chem, Waterloo, ON N2L 3C5, Canada
[2] Univ Toronto, Dept Chem, Ctr Nanostruct Imaging, Toronto, ON M5S 3H6, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
SHAPE-CONTROLLED SYNTHESIS; NOBLE-METAL NANOPARTICLES; OPTICAL-PROPERTIES; REPLACEMENT REACTION; CHEMICAL SYNTHESIS; ALLOY NANOBOXES; AU NANOWIRES; NANORODS; AG; NANOSHELLS;
D O I
10.1021/ja111642d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Ultrathin gold nanoframes (up to 1.6 nm) were prepared via templating upon well-defined faceted silver morphologies. Starting with silver decahedra, small quantities of gold (1-10 mol % relative to the amount of silver) were selectively deposited on the nanoparticle edges under optimized reducing conditions. Silver dissolution in hydrogen peroxide yielded well-defined gold frames that retained their structural integrity in the ultrathin nanowire regime below 2 nm. The frame formation protocol was also successfully applied to other silver nanoparticle shapes featuring pentagonal twinning and (111) facets (e.g., pentagonal faceted rods and icosahedra). The demonstrated approach can be applied in the controlled preparation of ultrathin metal nanowires complementary to lithography and in the production of ultrafine noble-metal nanostructures for catalytic applications.
引用
收藏
页码:8066 / 8069
页数:4
相关论文
共 39 条
[1]   From Ag Nanoprisms to Triangular AuAg Nanoboxes [J].
Aherne, Damian ;
Gara, Matthew ;
Kelly, John M. ;
Gun'ko, Yurii K. .
ADVANCED FUNCTIONAL MATERIALS, 2010, 20 (08) :1329-1338
[2]   Synthesis and Optical Properties of Cubic Gold Nanoframes [J].
Au, Leslie ;
Chen, Yeechi ;
Zhou, Fei ;
Camargo, Pedro H. C. ;
Lim, Byungkwon ;
Li, Zhi-Yuan ;
Ginger, David S. ;
Xia, Younan .
NANO RESEARCH, 2008, 1 (06) :441-449
[3]   Ultrathin Nanowires - A Materials Chemistry Perspective [J].
Cademartiri, Ludovico ;
Ozin, Geoffrey A. .
ADVANCED MATERIALS, 2009, 21 (09) :1013-1020
[4]   Gold Nanocages: A Novel Class of Multifunctional Nanomaterials for Theranostic Applications [J].
Chen, Jingyi ;
Yang, Miaoxin ;
Zhang, Qiang ;
Cho, Eun Chul ;
Cobley, Claire M. ;
Kim, Chulhong ;
Glaus, Charles ;
Wang, Lihong V. ;
Welch, Michael J. ;
Xia, Younan .
ADVANCED FUNCTIONAL MATERIALS, 2010, 20 (21) :3684-3694
[5]   Environmentally benign aqueous oxidative catalysis using AuPd/TiO2 colloidal nanoparticle system stabilized in absence of organic ligands [J].
Frank, Andrew J. ;
Rawski, Jacob ;
Maly, Kenneth E. ;
Kitaev, Vladimir .
GREEN CHEMISTRY, 2010, 12 (09) :1615-1622
[6]   Gold Nanoparticles for Biology and Medicine [J].
Giljohann, David A. ;
Seferos, Dwight S. ;
Daniel, Weston L. ;
Massich, Matthew D. ;
Patel, Pinal C. ;
Mirkin, Chad A. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2010, 49 (19) :3280-3294
[7]   A Way To Control the Gold Nanocrystals Size: Using Seeds with Different Sizes and Subjecting Them to Mild Annealing [J].
Goubet, Nicolas ;
Ding, Yong ;
Brust, Mathias ;
Wang, Zhong Lin ;
Pileni, Marie-Paule .
ACS NANO, 2009, 3 (11) :3622-3628
[8]   Sub-two nanometer single crystal Au nanowires [J].
Huo, Ziyang ;
Tsung, Chia-kuang ;
Huang, Wenyu ;
Zhang, Xiaofeng ;
Yang, Peidong .
NANO LETTERS, 2008, 8 (07) :2041-2044
[9]   Plasmonic coupling in noble metal nanostructures [J].
Jain, Prashant K. ;
El-Sayed, Mostafa A. .
CHEMICAL PHYSICS LETTERS, 2010, 487 (4-6) :153-164
[10]   Wet chemical synthesis of silver nanorods and nanowires of controllable aspect ratio [J].
Jana, NR ;
Gearheart, L ;
Murphy, CJ .
CHEMICAL COMMUNICATIONS, 2001, (07) :617-618