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化学进展 2009, Vol. 21 Issue (09): 1847-1856 前一篇   后一篇

• 综述与评论 •

三角银纳米柱的研究进展*

马占芳**|司国丽|初一鸣|陈颖   

  1. (首都师范大学化学系   |北京100048)
  • 收稿日期:2008-10-08 修回日期:2008-11-13 出版日期:2009-09-24 发布日期:2009-09-15
  • 通讯作者: 马占芳 E-mail:mazhanfang@yahoo.com
  • 基金资助:

    省级资助

Advances on Triangular Silver Nanoprisms

Ma Zhanfang**|Si Guoli|Chu Yiming|Chen Ying   

  1. (Department of Chemistry, Capital Normal University, Beijing 100048)
  • Received:2008-10-08 Revised:2008-11-13 Online:2009-09-24 Published:2009-09-15
  • Contact: Ma Zhanfang E-mail:mazhanfang@yahoo.com

由于三角银纳米柱独特可调的光学性质及其在生物分子和无机离子检测等领域的重要应用前景而引起了人们的关注。本文综述了三角银纳米柱的研究进展,介绍了三角银纳米柱的光学性质,几种主要的制备方法,三角银纳米柱的表面修饰、颗粒膜的制备以及在无机离子检测中的应用,并对三角银纳米柱在应用中存在的结构不稳定性问题以及现行的解决方法进行了综述。

Due to the unique and controllable optical properties and potential applications in biosensing and inorganic ionic sensing, triangular silver nanoprisms have been attracted much attention. The research advances on triangular silver nanoprisms are reviewed in this paper, including optical properties, main approaches for preparation of silver nanoprisms, surface modifications and fabrication of their particle films and detection of inorganic ions using silver triangular nanoprisms. In addition, the structural instability of triangular silver nanoprisms and the corresponding methods to solve this issue are also reviewed and discussed.

Contents
1 Optical properties of triangular silver nanoprisms
2 Synthesis of triangular silver nanoprisms
2.1 Photoinduced conversion method
2.2 Thermal conversion method
2.3 Microemulsion method
2.4 Reductive method
3 Surface modifications of triangular silver nanoprisms and fabrication of its particle film
4 Detection of inorganic ions using silver triangular nanoprisms
5 Instability of triangular silver nanoprisms
6 Conclusion and outlook

中图分类号: 

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[ 1 ]  Wiley B J , Kim S H , Li Z Y, McLellan J , Siekkinen A , Xia YN.J . Phys. Chem. B , 2006 , 110 : 15666 —15675
[ 2 ]  Stuart D A , Haes A J , Yonzon C , et al . IEE Proc.Nanobiotechnol . , 2005 , 152 : 13 —32
[ 3 ]  Maillard M, Giorgio S , Pileni M. Adv. Mater. , 2002 , 14 : 1084 —1086
[ 4 ]  Callegari A , Tonti D , Chergui M. Nano Lett . , 2003 , 3 : 1565 —1568
[ 5 ]  Hao E , Kelly KL , Hupp J T, et al . J . Am. Chem. Soc. , 2002 ,124 : 15182 —15183
[ 6 ]  Sun Y G, Mayers B , Xia YN. Nano Lett . , 2003 , 3 : 675 —679
[ 7 ]  Liu S , Zhang Z, Han M. Anal . Chem. , 2005 , 77 : 2595 —2600
[ 8 ]  Perez-Juste J , Pastoriza-Santos I , Liz-Marzan L M, et al . Coord.Chem. Rev. , 2005 , 249 : 1870 —1901
[ 9 ]  Pastoriza-Santos I , Liz-Marzan L M. Nano Lett . , 2002 , 2 : 903 —905
[10 ]  Yang Y, Matsubara S , Xiong L , Hayakawa T, Nogami M. J . Phys.Chem. C , 111 : 9095 —9104
[11 ]  Okada N , Hamanaka Y, Liz-Marzán L M, et al . J . Phys. Chem.B , 2004 , 108 : 8751 —8755
[12 ]  Mirkin C A , Schatz G C. Nano Lett . , 2006 , 6 : 2060 —2065
[13 ]  Metraux C S , Mirkin C A. Adv. Mater. , 2005 , 17 : 412 —415
[14 ]  Jin R , Cao Y, Mirkin C A , et al . Science , 2001 , 294 : 1901 —1903
[15 ]  Jin R , Cao Y C , Hao E C , et al . Nature , 2003 , 425 : 487 —490
[16 ]  Xue C , Mirkin C A. Angew. Chem. Int . Ed. , 2007 , 46 : 2036 —2038
[17 ]  Sun Y, Xia Y. Adv. Mater. , 2003 , 15 : 695 —699
[18 ]  Bastys V , Pastoriza-Santos I , Liz-Marzán L M, et al . Adv. Funct .Mater. , 2006 , 16 : 766 —773
[19 ]  Jia H , Xua W, Ana J , et al . Spectrochim. Acta Part A , 2006 , 64 :956 —960
[20 ]  Pastoriza-Santos I , Liz-Marzán L M. Nano Lett . , 2002 , 2 : 903 —905
[21 ]  Chen S , Carrol D L. Nano Lett . , 2002 , 2 : 1003 —1007
[22 ]  Chen S , Fan Z, Carrol D L. J . Phys. Chem. B , 2002 , 106 :10777 —10781
[23 ]  Maillard M, Giorgio S , Pileni M P. Adv. Mater. , 2002 , 14 :1084 —1086
[24 ]  Yener D O , Sindel J , Randall C A , Adair J H. Langmuir , 2002 ,18 : 8692 —8699
[25 ]  Jiang X, Zeng Q , Yu A. Nanotechnology , 2006 , 17 : 4929 —4935
[26 ]  Song J , Chu Y, Liu Y, Li L , Sun W. Chem. Commun. , 2008 , 10 :1223 —1225
[27 ]  Cao Z, Fu H B , Kang L T, Huang L , Zhai T, Ma Y, Yao J N. J .Mater. Chem. , 2008 , 18 : 2673 —2678
[28 ]  Shipway A N , Katz E , Willner I. Chem. Phys. Chem. , 2000 , 1 :18 —52
[29 ]  Maier S A , Brongersma ML , Kik P G, et al . Adv. Mater. , 2001 ,13 : 1501 —1505
[30 ]  Pellegrino T, Kudera S , Lied T, et al . Small , 2005 , 1 : 48 —63
[31 ]  Maxwell D J , Taylor J R , Nie S M. J . Am. Chem. Soc. , 2002 ,124 : 9606 —9612
[32 ]  Elghanian R , Storhoff J J , Mucic R C , et al . Science , 1997 , 277 :1078 —1081
[33 ]  Aslan K, Lakowicz J R , Geddes C D. J . Phys. Chem. B , 2005 ,109 : 6247 —6251
[34 ]  Xue C , Li Z, Mirkin C A. Small , 2005 , 1 (5) : 513 —516
[35 ]  Chen Y, Wang C G, Ma Z F , et al . Nanotechnology , 2007 , 18 :art . no. 325602
[36 ]  Bae Y, Kim N H , Kim M J , et al . J . Am. Chem. Soc. , 2008 ,130 : 5432 —5433
[37 ]  Jiang X C , Yu A B. Langmuir , 2008 , 24 : 4300 —4309
[38 ]  Xue C , Chen X, Hurst S J , Mirkin C A. Adv. Mater. , 2007 , 19 :4071 —4074
[39 ]  Jiang X, Zeng Q , Yu A. Langmuir , 2007 , 23 : 2218 —2223
[40 ]  Jin R C , Wu G S , Li Z, et al . J . Am. Chem. Soc. , 2003 , 125 :1643 —1654

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摘要

三角银纳米柱的研究进展*