中文
Announcement
More
Progress in Chemistry 2007, Vol. 19 Issue (01): 101-106 Previous Articles   Next Articles

• Review •

Covalent Functionalization of Carbon Nanotubes

Xiao Qi**;Wang Pinghua;Si Zhichun   

  1. Department of Inorganic Materials, School of Resoures Processing and Bioengineering, Central South University, Changsha 410083,China
  • Received: Revised: Online: Published:
  • Contact: Xiao Qi
PDF ( 2925 ) Cited
Export

EndNote

Ris

BibTeX

The remarkable structure-dependent properties of carbon nanotubes (CNTs) have attracted much attention due to their potential in applications of various new areas. But their applications have been greatly restricted by the unsolvable property of carbon nanotubes in aqueous and organic solvents, so the functionalization of carbon nanotubes becomes the research focuse. In this paper, we emphasize on the covalent functionalization of carbon nanotubes, and discuss the recent progress on the funtionalization of sites places of carbon nanotubes in detail.

CLC Number: 

[ 1 ] Hirsch A. Angew. Chem. Int . Ed. , 2002 , 41 ( 11) : 1853 —1859
[ 2 ] Tsang S C , Chen Y K, Green M, et al . Nature , 1994 , 372(10) :159 —162
[ 3 ] Liu J , Rinzler A G, Dai H , et al . Science , 1998 , 280 (22) :1253 —1256
[ 4 ] Chen J , Hamon M A , Hu H , et al . Science , 1998 , 282 (2) :95 —98
[ 5 ] Hamon M A , Chen J , Hu H , et al . Adv. Mater. , 1999 , 11(10) : 835 —840
[ 6 ] Banerjee S , Hemraj-Benny T , Wong S S. Adv. Mater. , 2005 ,17(3) : 17 —29
[ 7 ] Niyogi S , Hamon M A , Hu H , et al . Acc. Chem. Res. , 2002 ,35(12) : 1105 —1113
[ 8 ] Chen J , Hamon M A , Hu H , et al . Science , 1998 , 282(5386) :95 —98
[ 9 ] Zhao B , Niyogi S , Hamon M A , et al . J . Am. Chem. Soc. ,2001 , 123 (47) : 11673 —11677
[10] Basiuk V A , Basiuk E V , Blesa S. Nano Lett . , 2001 , 1 (11) :657 —661
[11] Azamian B R , Coleman K S , Dvis J J , et al . J . Am. Chem.Soc. , 2002 , 124 (43) : 12664 —12665
[12] Lin Y, Hill D E , Bentley J , et al . J . Phys. Chem. B , 2003 ,107(38) : 10453 —10457
[13] Huang WJ , Fernando S , Fet A L , et al . Nano Lett . , 2003 , 3(4) : 565 —568
[14] Yamaguchi I , Yasuda T , Yamamoto T , et al . Adv. Mater. ,2003 , 15(3) : 293 —296
[15] Lin Y, Taylor S , Huang W J , et al . J . Phys. Chem. B , 2003 ,107(4) : 914 —919
[16] Ellis A V , Vijayamohanan K, Goswaimi R , et al . Nano Lett . ,2003 , 3 (3) : 279 —282
[17] Liu Z F , Shen Z Y, Zhu T , et al . Langmuir , 2000 , 16 (8) :3569 —3573
[18] Wu B , Zhang J , Liu Z F , et al . J . Phys. Chem. B , 2001 , 105(22) : 5075 —5078
[19] Yu R Q , Chen L W, Liu Q P , et al . Chem. Mater. , 1998 , 10(3) : 718 —722
[20] Lordi V , Yao N , Wei J , et al . Chem. Mater. , 2001 , 13 (3) :733 —737
[21] Banerjee S , Wong S S. Nano Lett . , 2002 , 2(3) : 195 —200
[22] Banerjee S , Wong S S. Nano Lett . , 2002 , 2(1) : 49 —53
[23] Satishkumar B C , Vogl E M, Ovindaraj GA , et al . J . Phys. D:Appl . Phys. , 1996 , 29 : art . no. 31731
[24] Hernadi K, Couteau E , Seo J W, et al . Langmuir , 2003 , 19(17) : 7026 —7029
[25] Dwyer C , Guthold M, Falvo M, et al . Nanotechnology , 2002 , 13(5) : 601 —604
[26] Baker S E , Cai W. Nano Lett . , 2002 , 2(12) : 1413 —1417
[27] Hazani M, Naaman R , Hennrich F , et al . Nano Lett . , 2003(3) :153 —155
[28] Huang W J , Taylor S , Kefu F , et al . Nano Lett . , 2002 (2) :311 —314
[29] Fu Q , Lu C G, Liu J , et al . Nano Lett . , 2002 (2) : 329 —332
[30] Holzinger M, Vostrowsky O , Hirsch A , et al . Angew. Chem.Int . Ed. Engl . , 2001 , 40(21) : 4002 —4005
[31] Mickelson E T , Huffman C B , Rinzler A G, et al . Chem. Phys.Lett . , 1998 , 296 (1) : 188 —194
[32] Hamwi A , Alevergnat H , Bonnamy S , et al . Carbon , 1997 , 35(6) : 723 —728
[33] Kelly K F , Mickelson E T , Halas N J , et al . Chem. Phys.Lett . , 1999 , 313 : 445 —450
[34] Boul P J , Liu J , Mickelson E T , et al . Chem. Phys. Lett . ,1999 , 310 (3) : 367 —372
[35] Mickelson E T , Chiang I W, Margrave J L , et al . J . Phys.Chem. B , 1999 , 103 (21) : 4318 —4322
[36] Saini R K, Chiang I W, Smalley P H , et al . J . Am. Chem.Soc. , 2003 , 125 (12) : 3617 —3621
[37] Dyke C A , Tour J M. J . Am. Chem. Soc. , 2003 , 125 (5) :1156 —1157
[38] Stevens J L , Huang A Y, Peng H Q , et al . Nano Lett . , 2003 , 3(3) : 331 —336
[39] Tour J M, Bahr J L , Yang J P , et al . J . Am. Chem. Soc. ,2001 , 123 (27) : 6536 —6542
[40] Holzinger M, Steinmetz J , Samaille D , et al . Carbon , 2004 , 42(5) : 941 —947
[41] Khare B N , Meyyappan M, Cassell A M, et al . Nano Lett . ,2002 , 2(1) : 73 —77
[42] Prato M, Maggini M. Acc. Chem. Res. , 1998 , 31 (9) : 519 —526

[1] Ruyue Cao, Jingjing Xiao, Yixuan Wang, Xiangyu Li, Anchao Feng, Liqun Zang. Cascade RAFT Polymerization of Hetero Diels-Alder Cycloaddition Reaction [J]. Progress in Chemistry, 2023, 35(5): 721-734.
[2] Dandan Wang, Zhaoxin Lin, Huijie Gu, Yunhui Li, Hongji Li, Jing Shao. Modification and Application of Bi2MoO6 in Photocatalytic Technology [J]. Progress in Chemistry, 2023, 35(4): 606-619.
[3] Shuyang Yu, Wenlei Luo, Jingying Xie, Ya Mao, Chao Xu. Review on Mechanism and Model of Heat Release and Safety Modification Technology of Lithium-Ion Batteries [J]. Progress in Chemistry, 2023, 35(4): 620-642.
[4] Xuedan Qian, Weijiang Yu, Junzhe Fu, Youxiang Wang, Jian Ji. Fabrication and Biomedical Application of Hyaluronic Acid Based Micro- and Nanogels [J]. Progress in Chemistry, 2023, 35(4): 519-525.
[5] Xuexian Wu, Yan Zhang, Chunyi Ye, Zhibin Zhang, Jingli Luo, Xianzhu Fu. Surface Pretreatment of Polymer Electroless Plating for Electronic Applications [J]. Progress in Chemistry, 2023, 35(2): 233-246.
[6] Shiying Yang, Qianfeng Li, Sui Wu, Weiyin Zhang. Mechanisms and Applications of Zero-Valent Aluminum Modified by Iron-Based Materials [J]. Progress in Chemistry, 2022, 34(9): 2081-2093.
[7] Yehjun Lim, Yanmei Li. Chemical Synthesis/Semisynthesis of Post-Translational Modified Tau Protein [J]. Progress in Chemistry, 2022, 34(8): 1645-1660.
[8] Jin Zhou, Pengpeng Chen. Modification of 2D Nanomaterials and Their Applications in Environment Pollution Treatment [J]. Progress in Chemistry, 2022, 34(6): 1414-1430.
[9] Xuanshu Zhong, Zongjian Liu, Xue Geng, Lin Ye, Zengguo Feng, Jianing Xi. Regulating Cell Adhesion by Material Surface Properties [J]. Progress in Chemistry, 2022, 34(5): 1153-1165.
[10] Yan Xu, Chungang Yuan. Preparation, Stabilization and Applications of Nano-Zero-Valent Iron Composites in Water Treatment [J]. Progress in Chemistry, 2022, 34(3): 717-742.
[11] Chaolumen Xue, Wanru Liu, Tuya Bai, Mingmei Han, Ren Sha, Chuanlang Zhan. Recent Progress on Solar Cell Performance Based on Structural Tailoring on DA'D Units of Nonfullerene Acceptors [J]. Progress in Chemistry, 2022, 34(2): 447-459.
[12] Xiaolian Niu, Kejun Liu, Ziming Liao, Huilun Xu, Weiyi Chen, Di Huang. Electrospinning Nanofibers Based on Bone Tissue Engineering [J]. Progress in Chemistry, 2022, 34(2): 342-355.
[13] Geng Gao, Keyu Zhang, Qianwen Wang, Libo Zhang, Dingfang Cui, Yaochun Yao. Metal Oxalate-Based Anode Materials: A New Choice for Energy Storage Materials Applied in Metal Ion Batteries [J]. Progress in Chemistry, 2022, 34(2): 434-446.
[14] Xiaoqiong Feng, Yunlong Ma, Hong Ning, Shiying Zhang, Changsheng An, Jinfeng Li. Transition Metal Chalcogenide Cathode Materials Applied in Aluminum-Ion Batteries [J]. Progress in Chemistry, 2022, 34(2): 319-327.
[15] Shixiang Xue, Pan Wu, Liang Zhao, Yanli Nan, Wanying Lei. The Application of CoFe Layered Double Hydroxide-Based Materials in Oxygen Evolution Reaction [J]. Progress in Chemistry, 2022, 34(12): 2686-2699.