English
新闻公告
More
化学进展 2004, Vol. 16 Issue (01): 26- 前一篇   后一篇

• 综述与评论 •

模板及其在纳米材料合成领域的应用

张作山;张树永*;李文荣   

  1. (山东大学化学与化工学院 济南 250100)
  • 收稿日期:2002-09-01 修回日期:2002-12-01 出版日期:2004-01-24 发布日期:2004-01-24
  • 通讯作者: 张树永

Templates and Their Applications in Synthesis of Nanomaterials

Zhang Zuoshan;Zhang Shuyong*;Li Wenrong   

  1. (School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, China)
  • Received:2002-09-01 Revised:2002-12-01 Online:2004-01-24 Published:2004-01-24
  • Contact: Zhang Shuyong
模板法是合成纳米材料的重要方法之一.本文综述了模板的分类、制备方法、性能以及在纳米材料合成领域中的应用,并对模板合成的未来发展进行了展望。
Template synthesis is one of the most important methods for preparation of nanomaterials. The prepara-tion , properties and the applications of some important templates for synthesis of nanomaterials are reviewed with 85 refer-ences . The techniques for fabrication of nanomaterials are summarized. The future development of templates and their possible applications are also discussed.

中图分类号: 

()

[ 1 ] Lin C H , Chen S H , Chao J C , et al . Catal . Lett . , 2002 ,80 (3/4) :153 —159
[ 2 ] Chatterjee A , Chakravorty D. J . Mater. Sci . , 1992 , 27 :4115 —4118
[ 3 ] Feiffer L P , Stormer H L , Baldwin K W, et al . J . Cryst .Growth , 1993 ,127 :849 —853
[ 4 ] Wu S D , Zhu Z Z, Tan J Y. Chem. Lett . , 2001 , 396 —397
[ 5 ] 张立德(Zhang L D) , 牟季美(Mu J M) . 纳米材料和纳米结构(Nanomaterial and Nanostructure) , 北京:科学技术出版社,2001
[ 6 ] Hu G T, Odom T W, Lieber C M. Acc. Chem. Res. , 1999 ,32 :435 —439
[ 7 ] Zheng M J , Zhang L D , Li G H , et al . Appl . Phys. Lett . ,2001 , 79 : 839 —841
[ 8 ] Wu Y L , Yang P D. Topics in Catalysis , 2002 , 19 (2) :197 —202
[ 9 ] Manalis S , Babcock K, Massie J , et al . Appl . Phys. Lett . ,1995 , 66 : 2585 —2589
[10] Simonds J L. Phys. Today , 1995 , 48 :26 —30
[11] Pokropivny V V. Supercond. J . Incorp. Novel Magnet . , 2000 ,13 (4) :607 —612
[12] Badri V , Hermann A M. Int . J . Hydrogen Energy , 2000 , 25 :249 —253
[13] Joo S H , Choi S J , Kwak O I , et al . Nature , 2001 , 412 : 169 —172
[14] Che G, Lakshmi B B , Fisher E R , et al . Nature , 1998 , 393 :346 —349
[15] Li Y, Meng G W, Zhang L D. Appl . Phys. Lett . , 2000 , 76 :2011 —2013
[16] Masuda H , Fukuda K. Science , 1995 , 268 :1466 —1468
[17] Wang Y W, Liang C H , Wang G Z, et al . J . Mater. Sci . Lett . ,2001 , 20 :1687 —1689
[18] Forrer P , Schllig F , Siegenthaer H , et al . J . Appl . Electrochem. , 2000 , 30 : 533 —541
[19] Gao T, Meng G W, Zhang J , et al . Appl . Phys. A , 2001 , 73 :251 —254
[20] Nielsch K, Wehrspohn R B , Barthel J , et al . Appl . Phys. Letters , 2001 , 79 :1360 —1362
[21] Yin A J , Li J , Jian W, et al . Appl . Phys. Lett . , 2001 , 79 :1039 —1041
[22] Wang Y W, Meng G W, Liang C H , et al . Chem. Phys. Lett . ,2001 , 339 :174 —178
[23] Xu D S , Xu Y J , Chen D P , et al . Chem. Phys. Lett . , 2000 ,325 :340 —344
[24] Zhang J , Zhang L D , Wang X F , et al . J . Chem. Phys. , 2001 ,115 :5714 —5717
[25] Prieto A M, Sander M S , Martin-Gonzales M S , et al . J . Am.Chem. Soc. , 2001 , 123 :7160 —7161
[26] Lei Y, Zhang L D , Meng G W, et al . Appl . Phys. Lett . , 2001 ,78 :1125 —1127
[27] Zheng M J , Zhang L D , Li G H , et al . Appl . Phys. Lett . ,2001 , 79 :839 —841
[28] Peng X S , Zhang J , Wang X F , et al . Chem. Phys. Lett . ,2001 , 343 :470 —474
[29] Zelenski C M, Dorhout P D. J . Am. Chem. Soc. , 1998 , 120 :734 —742
[30] Nishizawa A , Mukai K, Kuwabata S , et al . J . Electrochem.Soc. , 1997 ,144 :1923 —1927
[31] Martin C R. Science , 1994 , 266 :1962 —1966
[32] Che G L , Lakshmi B B , Martin C R , et al . Langmuir , 1999 , 15 :750 —758
[33] Pra L D D , Ferain E , Legras R , et al . Nucl . Instrum. Method Phys. Res. B , 2002 , 196 :81 —88
[34] Sun L , Searson P C , Chen L. Appl . Phys. Lett . , 1999 , 19 :2803 —2805
[35] Bhattacarrya S , Saha S K, Chakravrty D. Appl . Phys. Lett . ,2000 , 76 : 3896 —3898
[36] Badri V , Hermann A M. Int . J . Hydrogen Energy , 2000 , 25 :249 —253
[37] Mibindyo J K, Mallouk T E , Mattzela J B , et al . J . Am. Chem.Soc. , 2002 , 124 : 4020 —4026
[38] Liang W B , Martin C R. J . Am. Chem. Soc. , 1990 , 112 :9666 —9668
[39] Albrecht T T, Schotter J , Kastle G A , et al . Science , 2000 ,290 : 2126 —2129
[40] Tonucci R J , Justus B L , Campillo A J , et al . Science , 1992 ,258 :783 —785
[41] Berry A D , Tonucci R J , Fatemi M. Appl . Phys. Lett . , 1996 ,69 (19) :2846 —2848
[42] Pearson D H , Tonucci R J . Science , 1995 , 270 :68 —73
[43] Beck J S , Vartuli J C , Roth W J , et al . J . Am. Chem. Soc. ,1992 , 114 : 10834 —10843
[44] Trikalitis P N , Rangan K, Kanatzidis M G. J . Am. Chem. Soc. ,2002 , 124 : 2604 —2613
[45] Yu C Z, Tian B Z, Fan J , et al . J . Am. Chem. Soc. , 2002 ,124 :4556 —4557
[46] Huang W H , Choudtey A , Yang P D. Chem. Commun. , 2000 ,1063 —1064
[47] Atsushi F , Naonori H , Yuzuru S , et al . Top. Catal . , 2002 , 18(1/2) :73 —78
[48] Shin , H J , Ko C H , Ryoo R. J . Mater. Chem. , 2001 , 11 (2) :260 —261
[49] Lee K B , Lee S M, Cheon J . Adv. Mater. , 2001 ,13 (7) : 517 —622
[50] Sun L , Searson P C , Chien C L. Appl . Phys. Lett . ,1999 , 74(19) :2803 —2805
[51] Sun L , Chien CL , Searson P C. J . Mater. Sci . , 2000 , 35 (5) :1097 —1103
[52] Yin Y, Lu Y, Gates B , Xia Y. J . Am. Chem. Soc. , 2001 , 123(36) : 8718 —8729
[53] Fan S , Chaphine M G, Frarcklin N R , et al . Science , 1999 ,283 : 512 —515
[54] 刘忠范(Liou Z F) , 朱涛(Zhu T) , 张锦(Zhang J ) . 大学化学(University Chemistry ) , 2001 , 16 (5) :1 —10
[55] Braun B , Eichen , Sivan U , et al . Nature , 1998 , 391 :775 —778
[56] 陈霞(Chen X) , 靳键(Jin J ) , 杨文胜(Yang W S) 等. 高等学校化学学报(Chemical Journal of Chinese Universities) , 2000 ,21 :1115 —1117
[57] Song J H , Wu Y Y, Messer B , et al . J . Am. Chem. Soc. ,2001 , 123 :10397 —10398
[58] Song J H , Messer B , Wu Y Y, et al . J . Am. Chem. Soc. ,2001 ,123 : 9714 —9715
[59] Huczko A. Appl . Phys. A , 2002 , 74 :618 —638
[60] Sloan J , Wright D M, Woo H G, et al . Chem. Commun. , 1999 ,699 —700
[61] Smith B W, Monthioux M, Luzzi D E. Nature , 1998 , 396 :323 —326
[62] Han W Q , Fan S S , Li Q Q , et al . Science , 1997 , 277 :1287 —1289
[63] Huczko A. Appl . Phys. , 2000 , A70 : 365 —374
[64] Holland B T, Blanford C F , Stein A. Science , 1998 , 281 :538 —540
[65] Iijima S , Qin L C. Science , 2002 , 296 :611
[66] Zach M P , Kwok H N , Penner R M. Science , 2000 , 290 :2120 —2123
[67] Sugawara A , Coyle T, Hembree G G, et al . Appl . Phys. Lett . ,70(8) :1043 —1045
[68] Foss C A , Gabor J , Jon L H. J . Phys. Chem. , 1992 , 96 :7497 —7499
[69] Brumlik C J , Martin C R. J . Am. Chem. Soc. 1991 , 113 :3174 —3175
[70] Nicewarner S R , Freeman R G, Reiss B D , et al . Science ,2001 ,294 :137 —141
[71] Sun L , Chien C L , Searson P C , et al . J . Mater. Sci . , 2000 , 35(5) :1097 —1103
[72] Martin C R , Van L S , Cai Z. Electrochimica Acta , 1992 , 37 :1611 —1613
[73] Martin C R , Parthasarathy R , Menon V. Electroimica Acta ,1994 , 39 :1309 —1313
[74] Parthasarathy R , Martin C R. Chem. Mater. , 1994 , 6 :1627 —1632
[75] Martin C R. Acc. Chem. Res. , 1995 , 28 :61 —68
[76] Otten C J , lourie O R , Yu M F , et al . J . Am. Chem. Soc. ,2002 , 124 : 4564 —4565
[77] Huber C A , Huber T E , Sadoqi M, et al . Science , 1994 , 263 :800 —802
[78] Herron W. J . Phys. Chem. , 1991 , 95 :525 —531
[79] Caruso F , Caruso R A , Mohuald H , et al . Science , 1998 , 282 :1111 —1114
[80] Decher G. Science , 1997 , 277 :1232
[81] Rosei F , Schunack M, Jiang P , et al . Science , 2002 , 296 :328 —331
[82] Doyle P S , Bibette J , Bancaud A , et al . Science , 2002 , 295 :2237 —2240
[83] Masuda H , Fukuda K. Science , 1995 , 268 :1466 —1468
[84] Liang L , Liu J , Windisch C F , et al . Angew. Chem. Int . Ed.2002 , 41 :3665 —3668
[85] Enzel P , Zoller J J , Bein T. J . Chem. Soc. , Chem. Commun. ,1992 , 633 —635

[1] 刘峻, 叶代勇. 抗病毒涂层[J]. 化学进展, 2023, 35(3): 496-508.
[2] 王乐壹, 李牛. 从铜离子、酸中心与铝分布的关系分析不同模板剂制备Cu-SSZ-13的NH3-SCR性能[J]. 化学进展, 2022, 34(8): 1688-1705.
[3] 陆峰, 赵婷, 孙晓军, 范曲立, 黄维. 近红外二区发光稀土纳米材料的设计及生物成像应用[J]. 化学进展, 2022, 34(6): 1348-1358.
[4] 周晋, 陈鹏鹏. 二维纳米材料的改性及其环境污染物治理方面的应用[J]. 化学进展, 2022, 34(6): 1414-1430.
[5] 李彬, 于颖, 幸国香, 邢金峰, 刘万兴, 张天永. 手性无机纳米材料圆偏振发光的研究进展[J]. 化学进展, 2022, 34(11): 2340-2350.
[6] 郑明心, 谭臻至, 袁金颖. 光响应Janus粒子体系的构建与应用[J]. 化学进展, 2022, 34(11): 2476-2488.
[7] 漆晨阳, 涂晶. 无抗生素纳米抗菌剂:现状、挑战与展望[J]. 化学进展, 2022, 34(11): 2540-2560.
[8] 王嘉莉, 朱凌, 王琛, 雷圣宾, 杨延莲. 循环肿瘤细胞及细胞外囊泡的纳米检测技术[J]. 化学进展, 2022, 34(1): 178-197.
[9] 赵丹, 王昌涛, 苏磊, 张学记. 荧光纳米材料在病原微生物检测中的应用[J]. 化学进展, 2021, 33(9): 1482-1495.
[10] 谢勇, 韩明杰, 徐钰豪, 熊晨雨, 王日, 夏善红. 荧光内滤效应在环境检测领域的应用[J]. 化学进展, 2021, 33(8): 1450-1460.
[11] 程熙萌, 张庆瑞. 功能蛋白纳米材料在环境保护中的应用[J]. 化学进展, 2021, 33(4): 678-688.
[12] 谭莎, 马建中, 宗延. 聚(3,4-乙烯二氧噻吩)∶聚苯乙烯磺酸/无机纳米复合材料的制备及应用[J]. 化学进展, 2021, 33(10): 1841-1855.
[13] 蒋乔, 徐雪卉, 丁宝全. 纳米材料对生物凝聚态的调控[J]. 化学进展, 2020, 32(8): 1128-1139.
[14] 秦瑞轩, 邓果诚, 郑南峰. 金属纳米材料表面配体聚集效应[J]. 化学进展, 2020, 32(8): 1140-1157.
[15] 刘阳, 张新波, 赵樱灿. 二维MoS2纳米材料及其复合物在水处理中的应用[J]. 化学进展, 2020, 32(5): 642-655.