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Progress in Chemistry 2011, Vol. 23 Issue (5): 951-962 Previous Articles   Next Articles

• Review •

Electroanalytical Applications of Boron Doped Diamond Electrode

Gao Chengyao1, Chang Ming2,3, Li Xiaowei2,3, Li Cuiping2,3   

  1. 1. Chinese Peoples Armed Police Forces Academy, Langfang 065000, China;
    2. Tianjin Key Laboratory of Film Electronics & Communication Devices, Tianjin University of Technology, Tianjin 300191, China;
    3. School of Electronic Information Engineering, Tianjin University, Tianjin 300072, China
  • Received: Revised: Online: Published:
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Discoveries of new materials have significant impact on development of new methods and instrumentation for eletroanalysis. Boron doped diamond (BDD) electrode occupies a special place as an electrode material with interesting applications in electroanalysis because of its superior properties such as a wide potential window,low background current responses, remarkable corrosion stability, an inert surface with low adsorption. BDD electrodes have attracted the interests of many researchers for electrophoresis. The object of this article is to discuss the recent results available in the literature concerning the application of BDD electrodes to electroanalysis such as capillary electrophoresis end-column detection, electrochemical biosensor, anodic stripping voltammetry for trace metal ion detection,modified diamond electrodes and chemical oxygen demand detection.

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[1] Oyama M. Anal. Sci., 2010, 26: 1-12
[2] Huang J S, Liu Y, You T Y. Anal. Meth., 2010, 2: 202-211
[3] Valle M. Electroanalysis, 2010, 22: 1539-1555
[4] Javanbakht M, Ganjali M R, Eshghi H, Sharghi H, Shamsipur M. Electroanalysis, 1999, 11: 81-84
[5] Hoyer B, Jensen N. Electroanalysis, 2005, 17: 2037-2042
[6] Lau C, Flechsig G U, Grundler P, Wang J. Anal. Chim. Acta, 2005, 554: 74-78
[7] Wang L, Huang P F, Bai J Y, Wu X W, Wang H J, Zhao Y Q. Chem. Anal(Warsaw), 2007, 52: 15-24
[8] 郏建波(Jia J B). 化学进展(Progress in Chemistry), 2007, 19: 1800-1805
[9] Sartori E R, Medeiros R A, Rocha-Filho R C, Fatibello-Filho O. Talanta, 2010, 81: 1418-1424
[10] Hu J, Lu X, Foord J S. Electrochem. Commun., 2010, 12: 676-679
[11] Geng R, Zhao G H, Liu M C, Lei Y Z. Acta Phys-Chim. Sin., 2010, 26: 1493-1498
[12] Panizza M, Cerisola G. Electrochim. Acta, 2005, 51: 191-199
[13] Sur U K, Marken F, Seager R, Foord J S, Chatterjee A, Coles B A, Compton R G. Electroanalysis, 2005, 17: 385-391
[14] Rao T N, Sarada B V, Tryk D A, Fujishima A. J. Electroanal. Chem., 2000, 491: 175-181
[15] Shin D C, Sarada B V, Tryk D A, Fujishima A. J. Anal. Chem., 2003, 75: 530-534
[16] Musilova J, Barek J, Peckova K. Chem. Listy, 2009, 103: 469-478
[17] Baron R, Wildgoose G G, Compton R G. J. Nanosci. Nanotechno., 2009, 9: 2274-2282
[18] Weiss E, Saez C, Groenen-Serrano K, Canizares P, Savall A, Rodrigo M A. J. Appl. Electrochem., 2008, 38: 93-100
[19] Ca izares P, Arcís M, Sáez C, Rodrigo M A. Electrochem. Commun., 2007, 9: 2286-2290
[20] Fardel R, Griesbach U, Putter H, Comninellis C. J. Appl. Electrochem., 2006, 36: 249-253
[21] Griesbach U, Zollinger D, Putter H, Comninellis C. J. Appl. Electrochem., 2005, 35: 1265-1270
[22] 李学敏(Li X M), 汪家道(Wang J D), 张振(Zhang Z), 陈大融(Chen D R). 清华大学学报(J. Tsinghua University), 2004, 44: 1032-1035
[23] Panizza M, Michaud P A, Cerisola G, Comninellis C. J. Electroanal. Chem., 2001, 507: 206-214
[24] Troster I, Schafer L, Fryda M, Matthee T. Water Sci. Technol., 2004, 49: 207-212
[25] Martinez-Huitle C A, Quiroz M A, Comninellis C, Ferro S, De Battisti A. Electrochim. Acta, 2004, 50: 949-956
[26] Chang M, Gao C Y, Jiang J Y. J. Electrochem. Soc., 2009, 156: E50-E54
[27] Jiang J Y, Chang M, Pan P. Environ. Sci. Technol., 2008, 42: 3059-3063
[28] Yano T, Tryk D A, Hashimoto K, Fujishima A. J. Electrochem. Soc., 1998, 145: 1870-1876
[29] Wisniewski N, Reichert M. Colloid Surface B, 2000, 18: 197-219
[30] Yano T, Popa E, Tryk D A, Hashimoto K, Fujishima A. J. Electrochem. Soc., 1999, 146: 1081-1087
[31] Perret A, Haenni W, Skinner N, Tang X M, Gandini D, Comninellis C, Correa B, Foti G. Diam. Relat. Mater., 1999, 8: 820-823
[32] Jay L, Nikolay N, Vladimir T. Innovative Superhard Materials and Sustainable Coatings for Advanced Manufacturing, NewYork: Springer, 2005, 193-202
[33] Das D, Singh R N. Inter. Mater. Rev., 2007, 52: 29-64
[34] Butler J E, Mankelevich Y A, Cheesman A, Ma J, Ashfold M N R. J. Phys-Condens Mat., 2009, 21: art.no.364201
[35] Lin H Q, Lu W Z, Zuo D W, Yang C, Xu F. Mach. Adv. Manufact. Technol. X, 2010, 431/432: 21-24
[36] Arnault J C, Saada S, Mer-Calfati C, Jomard F, Habka N, Barjon J, Chevallier J. Phys. Lett. A, 2010, 374: 3254-3257
[37] Li C M, Wang L M, Chen L X, Liu Z, Hei L F, Lu F X. Diam. Relat. Mater., 2009, 18: 1348-1352
[38] McKindra T, O'Keefe M J, Xie Z Q, Lu Y F. Mater. Charact., 2010, 61: 661-667
[39] Goss J P, Eyre R J, Briddon P R. Physica Status Solidib Basic Solid State Physics, 2008, 245: 1679-1700
[40] Nesladek M. Semicond. Sci. Tech., 2005, 20: R19-R27
[41] Boeyens J C A, Cook L M, Krane H G, Schoening F R L. Z. Kristallogr., 1999, 214: 351-352
[42] Fabisiak K, Szreiber M, Uniszkiewicz C, Runka T, Kasprowicz D. Cryst. Res. Technol., 2010, 45: 167-172
[43] Niaura G, Ragauskas R, Dikcius A, Sebeka B, Kuodis Z. Chemija, 2009, 20: 78-83
[44] Peckova K, Musilova J, Barek J. Crit. Rev. Anal. Chem., 2009, 39: 148-172
[45] Spataru N, Sarada B V, Tryk D A, Fujishima A. Electroanalysis, 2002, 14: 721-728
[46] Honda K, Rao T N, Tryk D A, Fujishima A, Watanabe M, Yasui K, Masuda H. J. Electrochem. Soc., 2000, 147: 659-664
[47] 常明(Chang M), 高成耀(Gao C Y). 化学通报(Chemistry), 2008, 12: 912-917
[48] Gandini D, Michaud P A, Duo I, Mahe E, Haenni W, Perret A, Comninellis C. New Diam. Front. C. Tec., 1999, 9: 303-316
[49] Xu J, Chen Q, Swain G M. Anal. Chem., 1998, 70: 3146-3154
[50] Park J, Show Y, Quaiserova V, Galligan J J, Fink G D, Swain G M. J. Electroanal. Chem., 2005, 583: 56-68
[51] Spataru N, Sarada B V, Popa E, Tryk D A, Fujishima A. Anal. Chem., 2001, 73: 514-519
[52] Xu J, Swain G M. Anal. Chem., 1998, 70: 1502-1510
[53] Dejmkova H, Scampicchio M, Zima J, Barek J, Mannino S. Electroanalysis, 2009, 21: 1014-1018
[54] Dolnik V, Liu S R, Jovanovich S. Electrophoresis, 2000, 21: 41-54
[55] 王钰蓉(Wang Y R), 陈恒武(Chen H W). 化学进展(Progress in Chemistry), 2009, 21: 200-209
[56] Shin D C, Tryk D A, Fujishima A, Muck A, Chen G, Wang J. Electrophoresis, 2004, 25: 3017-3023
[57] Wang J, Chen G, Muck A Jr, Shin D, Fujishima A. J. Chromatogr. A, 2004, 1022: 207-212
[58] Cvacka J, Quaiserova V, Park J, Show Y, Muck A, Swain G M. Anal. Chem., 2003, 75: 2678-2687
[59] Einaga Y, Sato R, Olivia H, Shin D, Ivandini T A, Fujishima A. Electrochim. Acta, 2004, 49: 3989-3995
[60] Muna G W, Tasheva N, Swain G M. Env. Sci. Tec., 2004, 38: 3674-3682
[61] Ngamukot P, Charoenraks T, Chailapakul O, Motomizu S, Chuanuwatanakul S. Anal. Sci., 2006, 22: 111-116
[62] Peckova K, Jandova K, Maixnerova L, Swain G M, Barek J. Electroanalysis, 2009, 21: 316-324
[63] Goodwin A, Lawrence A L, Banks C E, Wantz F, Omanovic D, Komorsky-Lovric E, Compton R G. Analytica Chimica Acta, 2005, 533: 141-145
[64] Pedrosa V A, Malagutti A R, Mazo L H, Avaca L A. Anal. Lett., 2006, 39: 2737-2748
[65] Boonsong K, Chuanuwatanakul S, Wangfuengkanagul N, Chailapakul O. Sensor Actuat. B-Chem., 2005, 108: 627-632
[66] Sun J Y, Zheng C Y, Xiao X L, Niu L, You T Y, Wang E K. Electroanalysis, 2005, 17: 1675-1680
[67] Wangfuengkanagul N, Chailapakul O. J. Pharmaceut. Biomed., 2002, 28: 841-847
[68] Wu J, Li X L, Lei C X, Wu X M, Shen G L, Yu R G. J. Anal. Chem., 2005, 60: 1062-1068
[69] Treetepvijit S, Chuanuwatanakul S, Einaga Y, Sato R, Chailapakul O. Anal. Sci., 2005, 21: 531-535
[70] Karuwan C, Mantim T, Chaisuwan P, Wilairat P, Grudpan K, Jittangprasert P, Einaga Y, Chailapakul O, Suntornsuk L, Anurukvorakun O, Nacapricha D. Sensors-Basel, 2006, 6: 1837-1850
[71] Chuanuwatanakul S, Chailapakul O, Motomizu S. Anal. Sci., 2008, 24: 493-498
[72] Medeiros R A, de Carvalho A E, Rocha R C, Fatibello O. Anal. Lett., 2007, 40: 3195-3207
[73] Patel B A, Bian X H, Quaiserova-Mocko V, Galligan J J, Swain G M. Analyst, 2007, 132: 41-47
[74] Zhou Y L, Zhi J F. Talanta, 2009, 79: 1189-1196
[75] Fujishima A, Rao T N, Popa E, Sarada B V, Yagi I, Tryk D A. J. Electroanal. Chem., 1999, 473: 179-185
[76] Koppang M D, Witek M, Blau J, Swain G M. Anal. Chem., 1999, 71: 1188-1195
[77] Sarada B V, Rao T N, Tryk D A, Fujishima A. Anal. Chem., 2000, 72: 1632-1638
[78] Rao T N, Ivandini T A, Terashima C, Sarada B V, Fujishima A. New Diam. Front. C. Tec., 2003, 13: 79-88
[79] Apilux A, Tabata M, Chailapakul O. Bioelectrochemistry, 2007, 70: 435-439
[80] Pividori M I, Alegret S. Top Curr. Chem., 2005: 1-36
[81] Popa E, Kubota Y, Tryk D A, Fujishima A. Anal. Chem., 2000, 72: 1724-1727
[82] Terashima C, Rao T N, Sarada B V, Kubota Y, Fujishima A. Anal. Chem., 2003, 75: 1564-1572
[83] Chiku M, Ivandini T A, Kamiya A, Fujishima A, Einaga Y. J. Electroanal. Chem., 2008, 612: 201-207
[84] Novotny M, Quaiserova-Mocko V, Wehrwein E A, Kreulen D L, Swain G M. J. Neurosci. Meth., 2007, 163: 52-59
[85] Zhang J D, Oyama M. Microchem. J., 2004, 78: 217-222
[86] Zhu J T, Shi C G, Xu J J, Chen H Y. Bioelectrochemistry, 2007, 71: 243-248
[87] Xu Z Q, Jeedigunta S, Kumar A. J. Nanosci. Nanotechno., 2007, 7: 2092-2095
[88] Zhao W, Xu J J, Qiu Q Q, Chen H Y. Biosens. Bioelectron., 2006, 22: 649-655
[89] Su L, Qiu X P, Guo L H, Zhang F H, Tung C H. Sensor Actuat. B-Chem., 2004, 99: 499-504
[90] Nekrassova O, Lawrence N S, Compton R G. Electroanalysis, 2004, 16: 1285-1291
[91] Zhao G H, Qi Y, Tian Y. Electroanalysis, 2006, 18: 830-834
[92] Yosypchuk O, Peckova K, Barek J. Chem. Listy, 2010, 104: 186-190
[93] Ivandini T A, Rao T N, Fujishima A, Einaga Y. Anal. Chem., 2006, 78: 3467-3471
[94] Martinez-Huitle C A, Ferro S, De Battisti A. Electrochim. Acta, 2004, 49: 4027-4034
[95] Halpern J M, Xie S, Sutton G P, Higashikubo B T, Chestek C A, Lu H, Chiel H J, Martin H B. Diam. Relat. Mater., 2006, 15: 183-187
[96] Park J, Galligan J J, Fink G D, Swain G M. Anal. Chem., 2006, 78: 6756-6764
[97] Yoon J H, Yang J, Kim J, Bae J, Shim Y B, Won M S. Bull. Korean Chem. Soc., 2010, 31: 140-145
[98] Langeloth M, Chiku M, Einaga Y. Electrochim. Acta, 2010, 55: 2824-2828
[99] Chooto P, Wararatananurak P, Innuphat C. Scienceasia, 2010, 36: 150-156
[100] McGaw E A, Swain G M. Analytica Chimica Acta, 2006, 575: 180-189
[101] Sonthalia P, McGaw E, Show Y, Swain G M. Analytica Chimica Acta, 2004, 522: 35-44
[102] Manivannan A, Seehra M S, Tryk D A, Fujishima A. Anal. Lett., 2002, 35: 355-368
[103] Szunerits S, Niedziolka-Jonsson J, Boukherroub R, Woisel P, Baumann J S, Siriwardena A. Anal. Chem., 2010, 82: 8203-8210
[104] Martinez-Huide C A, Fernandes N S, Ferro S, De Battisti A, Quiroz M A. Diam. Relat. Mater., 2010, 19: 1188-1193
[105] 关波(Guan B), 只金芳(Zhi J F). 科学通报(Chinese Science Bulletin), 2006, 51(5): 497-505
[106] Yang W S, Auciello O, Butler J E, Cai W, Carlisle J A, Gerbi J, Gruen D M, Knickerbocker T, Lasseter T L, Russell J N, Smith L M, Hamers R J. Nature Materials, 2002, 1: 253-257
[107] Hartl A, Schmich E, Garrido J A, Hernando J, Catharino S C R, Walter S, Feulner P, Kromka A, Steinmuller D, Stutzmann M. Nature Materials, 2004, 3: 736-742
[108] Zhou Y, Zhi J. Electrochem. Commun., 2006, 8: 1811-1816
[109] Wang J, Carlisle J A. Diam. Relat. Mater., 2006, 15: 279-284
[110] Zhao W, Xu J J, Qiu Q Q, Chen H Y. Biosens. Bioelectron., 2006, 22: 649-655
[111] Wu J, Lei C, Yang H, Wu X, Shen G, Yu R. Sensor Actuat. B-Chem., 2005, 107: 509-515
[112] Awada M, Strojek J W, Swain G M. J. Electrochem. Soc., 1995, 142: 42-45
[113] Zhao J W, Tian R H, Zhi J F. Thin Solid Films, 2008, 516: 4047-4052
[114] Tian R H, Zhi J F. Electrochem. Commun, 2007, 9: 1120-1126
[115] Hrapovic S, Liu Y, Luong J H T. Anal. Chem., 2007, 79: 500-507
[116] Salimi A, Alizadeh V, Hallaj R. Talanta, 2006, 68: 1610-1616
[117] Salimi A, Hyde M E, Banks C E, Compton R G. Analyst, 2004, 129: 9-14
[118] Han S P, Gan W E, Jiang X J, Zi H J, Su Q D. Int. J. Environ. Anal. Chem., 2010, 90: 137-147
[119] Ai S Y, Gao M N, Yang Y, Li J Q, Jin L T. Electroanalysis, 2004, 16: 404-409
[120] Li J Q, Li L P, Zheng L, Xian Y Z, Jin L T. Meas. Sci. Technol., 2006, 17: 1995-2000
[121] Yu H B, Wang H, Quan X, Chen S, Zhang Y B. Electrochem. Commun., 2007, 9: 2280-2285
[122] Yu H B, Ma C J, Quan X, Chen S, Zhao H M. Environ. Sci. Technol., 2009, 43: 1935-1939
[123] Wang J, Zhi J F. CN101639459A, 2010

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