中文
Announcement
More
Progress in Chemistry 2008, Vol. 20 Issue (06): 931-935 Previous Articles   Next Articles

• Review •

Applications of Polymer Microsphere in Electrochemistry

Han Limin; Suo Quanling** ; Hong Hailong   

  1. (Chemical Engineering College, Inner Mongolia University of Technology, Hohhot 010051, China)
  • Received: Revised: Online: Published:
  • Contact: Suo Quanling
PDF ( 1158 ) Cited
Export

EndNote

Ris

BibTeX

In this paper, the applications of redox actived polymer microsphere in electrochemistry are reviewed. Spectrum changing of surface-ionized microsphere with the change of extra-electric field, cyclic voltammetry and oscillated current of conductive polymer coated microsphere and size effect of ferrocenyl microsphere on electrode reaction are introduced respectively. The electrochemical behavior and electrode reaction model of polymer microspheres in suspension are elucidated, too. The electrochemistry of polymer microspheres will be applied extensively in molecular model field.

CLC Number: 

[ 1 ] Kohler J , Brouwer A C J , Schmidt J , et al . Science , 1995 , 268 :1457 —1460
[2] Nie S , Chiu D , Zare R. Science , 1994 , 266 : 1018 —1021
[3] Kelley A M, Michalet X, Weiss S. Science , 2001 , 292 : 1671 —1672
[4] Budny A , Novak F , Speiser B. Langmuir , 2005 , 22 : 10605 —10611
[5] Fan F R F , Bard A J . Science , 1995 , 267 : 871 —874
[6] Fan F R F , Kwak J , Bard A J . J . Am. Chem. Soc. , 1996 ,118 : 9669 —9675
[7] Bard A J , Fan F R F. Acc. Chem. Res. , 1996 , 29 : 572 —578
[8] Gorman C B , Parkhurst B L , Su W Y, et al . J . Am. Chem.Soc. , 1997 , 119 : 2588 —2589
[9] Kashiwashi Y, Karashima F , Kikuchi C , et al . Electrochem.Commun. , 1999 , 1 : 305 —308
[10] Ames S P , Miller J F , Vincent B J . J . Colloid. Interface. Sci . ,1987 , 118 : 410 —418
[11] Armitt C , Ames S P. J . Colloid. Interface. Sci . , 1992 , 150 :134 —142
[12] KimJ , Deike I , Dingenouts N , Norhausen C , et al . Macromol .Symp. , 1999 , 142 : 217 —219
[13] Katz L C , Burkhalter A , Dreyer WJ . Nature , 1984 , 310 : 498 —500
[14] Cho M. J . Phys. Soc. Jpn. , 1998 , 67 : 2222 —2225
[15] Kwon O , Solc J . J . Magn. Magn. Mater. , 1986 , 54P57 : 1699 —1700
[16] Elanssari A , Meunier F , Herve C. J . Magn. Magn. Mater. ,2001 , 225 : 127 —133
[17] Farinha J P S , Martinho J M G, Charreyre M T , et al . Langmuir ,2001 , 17 : 2617 —2623
[18] Quesada P M, Martin M A , Galisteo G F. Mol . Phys. , 2002 ,100 : 3029 —3039
[19] Colvin V L , Schlamp M C , Alivisatos A P. Nature , 1994 , 370 :354 —357
[20] Dabbousi B O , Bawendi M G, Rubner M F , et al . Appl . Phys.Lett . , 1995 , 66 : 1316 —1318
[21] Mandel M. Polyelectrolytes. NY: Marcel Dekker , 1993. 10 —35
[22] Schmitz K S. Macroions in Solution and Colloidal Suspension.NY: VCH , 1993. 1 —15
[23] Grier D G. Ordering and Phase Transitions in Charged Colloids.NY: VCH , 1996. 69
[24] Pieranski P , Strzelecki L , Pansu B. Phys. Rev. Lett . , 1983 ,50 : 900 —903
[25] Edgecombe S , Linse P , Langmuir. 2006 , 22 : 3806 —3843
[26] Van W D H , Murray C A. Phys. Rev. A , 1986 , 34 : 562 —573
[27] Li Z D , Wu J Z. J . Phys. Chem. B , 2006 , 110 : 7473 —7484
[28] Golemanov K, Tcholakova S , Kralchevsky P A , et al . Langmuir ,2006 , 22 : 4968 —4977
[29] Roberts J M, Linse P , Osteryoung J G. Langmuir , 1998 , 14 :204 —213
[30] Sirota E B , Ou-Yang H D , Sinha S K, et al . Phys. Rev. Lett . ,1989 , 62 : 1524 —1527
[31] Aoki K, Wang C M. Langmuir , 2001 , 17 : 6506 —6509
[32] Aoki K, Wang C M, Chen J Y. J . Electroanal . Chem. , 2003 ,540 : 135 —143
[33] Dustan S E , White L R. J . Colloid. Interface. Sci . , 1992 , 152 :297 —304
[34] Aoki K, Robers J M, Osteryoung J G. Langmuir , 1998 , 14 :4445 —4450
[35] Lascelles S F , Armes S P. Adv. Mater. , 1995 , 7 : 864 —866
[36] Perruchot C , Delamar M, Armes S P. Langmuir , 1996 , 12 :3245 —3251
[37] Wiersma A E , Vdsteeg L M A , Jongeling T J M. Synth. Met . ,1995 , 71 : 2269 —2270
[38] Barthet C , Armes S P , Lascelles S , et al . Langmuir , 1998 , 14 :2032 —2041
[39] Chang H X, Yuan Y, Guan Y F. Anal . Chem. , 2007 , 79 :5111 —5115
[40] Beadle P , Armes S P , Gottesfeld S , et al . Macromolecules ,1992 , 25 : 2526 —2532
[41] Liu C F , Maruyama T , Yamamoto T. Polym. J . , 1993 , 25 :363 —371
[42] Aoki K, Chen J Y, Ke Q , et al . Langmuir , 2003 , 19 : 5511 —5516
[43] Lei T , Aoki K, Fujita K. Electrochem. Commun. , 2000 , 2 :290 —294
[44] Lei T , Aoki K. J . Electroanal . Chem. , 2000 , 482 : 149 —155
[45] Aoki K, Lei T. Langmuir , 2000 , 16 : 10069 —10075
[46] Genies E M, Lapkowski M, Penneau J F. J . Electroanal .Chem. , 1988 , 249 : 97 —103
[47] Ahmad H , Benee L , Snowden M J , et al . Colloids Surf . A:Physicochem. Eng. Aspects , 2001 , 186 : 221 —227
[48] Chen J Y, Xu CL , Aoki K. J . Electroanal . Chem. , 2003 , 546 :79 —86
[49] Xu C L , Chen J Y, Aoki K. Electrochem. Commun. , 2003 , 5 :506 —512
[50] Chen J Y, Zhang Z J . J . Electroanal . Chem. , 2005 , 583 :116 —123
[51] Han L M, Chen J Y. Chem. Lett . , 2005 , 34 : 1052 —1053
[52] Han L M, Aoki K, Chen J Y. J . Electroanal . Chem. , 2007 ,602 : 123 —130

[1] Shuaibing Yu, Zhaolu Wang, Xuliang Pang, Lei Wang, Lianzhi Li, Yingwu Lin. Peptide-Based Metal Ion Sensors [J]. Progress in Chemistry, 2021, 33(3): 380-393.
[2] Meng Mu, Xuewen Ning, Xinjie Luo, Yujun Feng. Fabrications, Properties, and Applications of Stimuli-Responsive Polymer Microspheres [J]. Progress in Chemistry, 2020, 32(7): 882-894.
[3] Xin Ni, Yang Zhou, Ruiqin Tan, Yongbo Kuang. Fabrication and Modification of Ferrite Photocathodes for Photoelectrochemical Water Splitting [J]. Progress in Chemistry, 2020, 32(10): 1515-1534.
[4] Lijun Guo, Rui Li, Jianxin Liu, Qing Xi, Caimei Fan. Study on Hydrogen Evolution Efficiency of Semiconductor Photocatalysts for Solar Water Splitting [J]. Progress in Chemistry, 2020, 32(1): 46-54.
[5] Wenzhong Zhai, Yufeng He, Bin Wang, Yubing Xiong, Pengfei Song, Rongmin Wang. Fabrication and Applications of Polymeric Janus Particles [J]. Progress in Chemistry, 2017, 29(1): 127-136.
[6] Ma Jinlian, Ma Chen, Tang Jia, Zhou Shungui, Zhuang Li. Mechanisms and Applications of Electron Shuttle-Mediated Extracellular Electron Transfer [J]. Progress in Chemistry, 2015, 27(12): 1833-1840.
[7] Song Yingpan, Feng Miao, Zhan Hongbing*. Application of Graphene Edge Effect in Electrochemical Biosensors [J]. Progress in Chemistry, 2013, 25(05): 698-706.
[8] Li Jing, Yang Xiaoying*. Applications of Novel Carbon Nanomaterials——Graphene and Its Derivatives in Biosensing [J]. Progress in Chemistry, 2013, 25(0203): 380-396.
[9] Qian Dongjin*, Fu Yanrong. Interfacial Self-Assembly of Viologen-Functionalized Ultrathin Films and Molecular Aggregates [J]. Progress in Chemistry, 2013, 25(01): 46-53.
[10] Wen Yanli, Lin Meihua, Pei Hao, Lu Na, Fan Chunhai. Electrochemical-Based MicroRNA Sensors [J]. Progress in Chemistry, 2012, (9): 1656-1664.
[11] Song Yingpan, Feng Miao, Zhan Hongbing. Applications of Graphene Nanocomposites in Electrochemical Biosensors [J]. Progress in Chemistry, 2012, (9): 1665-1673.
[12] Shi Wentao, Di Jing, Ma Zhanfang. Electrochemical Glucose Biosensors [J]. Progress in Chemistry, 2012, 24(04): 568-576.
[13] Wang Zhaohui, Song Wenjing, Ma Wanhong, Zhao Jincai. Environmental Photochemistry of Iron Complexes and Their Involvement in Environmental Chemical Processes [J]. Progress in Chemistry, 2012, 24(0203): 423-432.
[14] Wang Juan, Liu Ying, Zhang Weide. Photoelectrochemical Properties and Applications of Carbon Nanotubes/Semiconductor Nanocomposites [J]. Progress in Chemistry, 2011, 23(8): 1583-1590.
[15] Lu Lin, Li Xiaogang, Gao Jin. Localized Electrochemical Study on the Interface Corrosion Between Organic Coating/Metal Substrate [J]. Progress in Chemistry, 2011, 23(8): 1618-1626.