- Previous Article
- Next Article
- Table of Contents
Applied Chemistry for Engineering, Vol.24, No.5, 443-455, October, 2013
마이크로-액체/액체 계면에서의 이온 이동 반응을 이용한 전기화학 센서 개발
Creating Electrochemical Sensors Utilizing Ion Transfer Reactions Across Micro-liquid/liquid Interfaces
E-mail:
초록
혼합되지 않는 두 용액 사이의 계면(interface between two immiscible electrolyte solutions, ITIES)에서의 전하 이동 반응에 대한 전기화학적 연구는 이온 검출용 센서, 바이오센서, 생체막 모델링, 약물 전달 반응, 상전이 촉매반응, 연료 생성, 태양에너지 전환 등을 포함한 다양한 연구 분야에 적용이 가능하기 때문에 크게 주목받고 있다. 특히 ITIES에서의 이온 전이 반응을 이용하여 이온물질 및 생물질 등을 검출할 수 있는 센서로 개발하기 위해 불안정한 ITIES의 한 쪽 액체층을 젤(gel)화하여 안정화하고, 마이크로 계면 형성을 통해 전압강하를 최소화 시키는 등의 연구가 활발하게 이루어졌다. 본 총설에서는 ITIES 계면에서의 이온 전이 반응을 이용하여 개발된 다양한 센서의 원리와 응용 및 발전 가능성에 대해 다루고자 한다. ITIES 계면을 (i) 보편적인 액체/액체 계면형, (ii) 마이크로피펫 팁형, (iii) 고분자 박막에 형성된 단일 마이크로홀 또는 마이크로홀 어래이형 및 (iv) 실리콘 기판에 제작된 마이크로홀 어래이형으로 분류하고, 이들 계면에서의 직접적인 이온 전이 반응과 보조 이온 전이 반응을 활용하여 수질 환경 오염의 원인이 되는 이온 및 농약 성분을 선택적으로 검출할 수 있는 이온 선택성 센서와 생물질을 분석할 수 있는 바이오센서 개발 연구에 대해 초점을 두고 소개하려 한다.
Electrochemical studies on charge transfer reactions across the interface between two immiscible electrolyte solutions (ITIES) have greatly attracted researcher’s attentions due to their wide applicability in research fields such as ion sensing and biosensing, modeling of biomembranes, pharmacokinetics, phase-transfer catalysis, fuel generation and solar energy conversion. In particular, there have been extensive efforts made on developing sensing platforms for ionic species and biomolecules via gelifying one of the liquid phases to improve mechanical stability in addition to creating microscale interfaces to reduce ohmic loss. In this review, we will mainly discuss on the basic principles, applications and future aspects of various sensing platforms utilizing ion transfer reactions across the ITIES. The ITIES is classified into four types : (i) a conventional liquid/liquid interface, (ii) a micropipette supported liquid/liquid interface, (iii) a single microhole or an array of microholes supported liquid/liquid interface on a thin polymer film, and (iv) a microhole array liquid/liquid interface on a silicon membrane. Research efforts on developing ion selective sensors for water pollutants as well as biomolecule sensors will be highlighted based on the use of direct and assisted ion transfer reactions across these different ITIES configurations.
Keywords:interface between two immiscible electrolyte solutions;ion transfer reaction;assisted ion transfer;ion-selective sensors;micro-water/gel interfaces
- Nernst W, Riesenfield EH, Ann. Phys., 8, 600 (1902)
- Gavach C, Mlodnicka T, Guastalla J, Compt. Rend. Acad.Sci. Ser. C., 266, 1196 (1968)
- Gavach C, Henry F, J. Electroanal. Chem., 54, 361 (1974)
- Samec Z, Marecek V, Weber J, J. Electroanal.Chem., 100, 841 (1979)
- Lee HJ, Ph. D. Dissertation, Ion Transfer Reactions Across Micro-liquid|liquid Interfaces: Fundamental Studies and Applications, Ecole Polytechnique Federale de Lausanne, Lausanne, Switzerland (1999)
- Molina A, Serna C, Ortuno JA, Torralba E, Annu. Rep. Prog. Chem., Sect. C: Phys. Chem., 108, 126 (2012)
- Samec Z, Electrochim. Acta., 84, 21 (2012)
- Herzog G, Beni V, Anal. Chim. Acta., 769, 10 (2013)
- Arrigan DWM, Annu. Rep. Prog. Chem., Sect. C: Phys. Chem., 109, 167 (2013)
- Koryta J, Electrochim. Acta., 24, 293 (1979)
- Bakker E, Pretsch E, Angew. Chem.Int. Ed., 46, 5660 (2007)
- Koryta J, Marecek V, Mikrochim. Acta., 1, 225 (1990)
- Samec Z, Samcova E, Girault HH, Talanta., 63, 21 (2004)
- Liu S, Li Q, Shao Y, Chem. Soc. Rev., 40, 2236 (2011)
- Peljo P, Girault HH, “Liquid/Liquid Interfaces, Electrochemistry at”, Encyclopedia of Analytical Chemistry, John Wiley & Sons, Chichester (2012)
- Taylor G, Girault HH, J.Electroanal. Chem., 208, 179 (1986)
- Zazpe R, Hibert C, O’Brien J, Lanyon YH, Arrigan DWM, Lab Chip., 7, 1732 (2007)
- Meng X, Liang Z, Li B, Xu X, Li Q, Zhao W, Xie S, Shao Y, J.Electroanal. Chem., 656, 125 (2011)
- Silva F, Sousa MJ, Pereira CM, Electrochim. Acta, 42(20-22), 3095 (1997)
- Lee HJ, Beriet C, Girault HH, J. Electroanal. Chem., 453(1-2), 211 (1998)
- Tong YH, Sun P, Zhang ZQ, Shao YH, J. Electroanal. Chem., 504(1), 52 (2001)
- Ishimatsu R, Izadyar A, Kabagambe B, Kim Y, Kim J, Amemiya S, J. Am. Chem. Soc., 133(40), 16300 (2011)
- Katano H, Senda M, Anal. Sci., 14, 63 (1998)
- Lee HJ, Lagger G, Pereira CM, Silva AF, Girault HH, Talanta., 78, 66 (2009)
- Hossain MM, Faisal SN, Kim CS, Cha HJ, Nam SC, Lee HJ, Electrochem. Commun., 13, 611 (2011)
- Hossain MM, Lee SH, Girault HH, Devaud V, Lee HJ, Electrochim. Acta., 82, 12 (2012)
- Hatay I, Su B, Li F, Partovi-Nia R, Vrubel H, Hu X, Ersoz M, Girault HH, Angew. Chem., 121, 5241 (2009)
- Marken F, Watkins JD, Collins AM, Phys. Chem. Chem. Phys., 13, 10036 (2011)
- Su B, Hatay I, Trojanek A, Samec Z, Khoury T, Gros CP, Barbe JM, Daina A, Carrupt PA, Girault HH, J. Am. Chem. Soc., 132(8), 2655 (2010)
- Schaming D, Hojeij M, Younan N, Nagatani H, Lee HJ, Girault HH, Phys. Chem. Chem. Phys., 13, 17704 (2011)
- Bard AJ, Faulkner LR, Electrochemical Methods : Fundamentals and Applications, 2nd Ed., John Wiley & Sons, New York (2001)
- Lopes P, Kataky R, Anal.Chem., 84, 2299 (2012)
- Stewart AA, Taylor G, Girault HH, McAleer J, J. Electroanal. Chem., 296, 491 (1990)
- Ohkouchi T, Kakutani T, Osakai T, Senda M, Anal. Sci., 7, 371 (1991)
- Huang B, Yu B, Li P, Jiang M, Bi Y, Wu S, Anal. Chim. Acta., 312, 329 (1995)
- Zhan D, Mao S, Zhao Q, Chen Z, Hu H, Jing P, Zhang M, Zhu Z, Shao Y, Anal. Chem., 76, 4128 (2004)
- Liu B, Mirkin MV, Electroanalysis., 12, 1433 (2000)
- Pereira CM, Silva F, Electroanalysis., 6, 1034 (1994)
- Osborne MD, Girault HH, Mikrochim.Acta., 117, 175 (1995)
- Osborne MD, Girault HH, Electroanalysis., 7, 714 (1995)
- Wilke S, Wang H, Muraczewska M, Muller H, Fresen. J. Anal.Chem., 356, 233 (1996)
- Herzog G, Kam V, Arrigan DWM, Electrochim. Acta, 53(24), 7204 (2008)
- Scanlon MD, Herzog G, Arrigan DWM, Anal. Chem., 80, 5743 (2008)
- Berduque A, Zazpe R, Arrigan DWM, Anal.Chim. Acta., 611, 156 (2008)
- Herzog G, Roger A, Sheehan D, Arrigan DWM, Anal. Chem., 82, 258 (2010)
- Collins CJ, Lyons C, Strutwolf J, Arrigan DWM, Talanta., 80, 1993 (2010)
- O’Sullivan S, Arrigan DWM, Electrochim. Acta., 77, 71 (2012)
- Alvarez de Eulate E, Serls L, Arrigan DWM, Anal. Bioanal. Chem., 405, 3801 (2013)
- O’Sullivan S, Alvarez de Eulate E, Yuen TH, Helmerhorst E, Arrigan DWM, Stripping Voltammetric Detection of Insulin at Liquid-liquid Microinterfaces in the Presence of Bovine Albumin, Analyst, DOI: 10.1039/c3an01123b (2013)
- Lee HJ, Beattie PD, Seddon BJ, Osborne MD, Girault HH, J. Electroanal. Chem., 440(1-2), 73 (1997)
- Sawada S, Torii H, Osakai T, Kimoto T, Anal.Chem., 70, 4286 (1998)
- Lee HJ, Girault HH, Anal. Chem., 70, 4280 (1998)
- Lee HJ, Pereira CM, Silva AF, Girault HH, Anal. Chem., 72, 5562 (2000)
- Faisal SN, Hossain MM, Lee HJ, J. Electrochem. Sci. Tech., 1, 121 (2010)
- Hossain MM, Kim CS, Cha HJ, Lee HJ, Electroanalysis., 23, 2049 (2011)
- Hossain MM, Girault HH, Lee HJ, Bull. Korean Chem. Soc., 33, 1734 (2012)
- Wilke S, Anal. Chim. Acta., 295, 165 (1994)
- Marecek V, Gratzl M, Pungor A, Janata J, J. Electroanal.Chem., 266, 239 (1989)
- Nishi N, Imakura S, Kakiuchi T, Anal. Chem., 78, 2726 (2006)
- Nishi N, Murakami H, Imakura S, Kakiuchi T, Anal.Chem., 78, 5805 (2006)
- Ishimatsu R, Nishi N, Kakiuchi T, Langmuir, 23(14), 7608 (2007)
- Silvester DS, Arrigan DWM, Electrochem. Commun., 13, 477 (2011)
- Stockmann TJ, Ding Z, Phys. Chem. Chem. Phys., 14, 13949 (2012)
- Stockmann TJ, Lu Y, Zhang J, Girault HH, Ding Z, Chem. Eur. J., 17, 13206 (2011)
- Bianchi F, Lee HJ, Girault HH, J. Electroanal. Chem., 523(1-2), 40 (2002)
- Ribeiro JA, Miranda IM, Silva F, Pereira CM, Phys. Chem. Chem. Phys., 12, 15190 (2010)
- Ribeiro JA, Silva F, Pereira CM, Talanta., 88, 54 (2012)
- Sherburn A, Platt M, Arrigan DWM, Boag NM, Dryfe RAW, Analyst., 128, 1187 (2003)
- Bingol H, Akgemci EG, Ersoz M, Atalay T, Electroanalysis., 19, 1327 (2007)
- Tomaszewski L, Ding ZF, Fermin DJ, Cacote HM, Pereira CM, Silva F, Girault HH, J. Electroanal. Chem., 453(1-2), 171 (1998)
- O’Mahony AM, Scanlon MD, Berduque A, Beni V, Arrigan DWM, Faggi E, Bencini A, Electrochem. Commun., 7, 976 (2005)
- Herzog G, Kam V, Berduque A, Arrigan DWM, J. Agric. Food Chem., 56, 4304 (2008)
- Ortuno JA, Gil A, Sanchez-Pedreno C, Sens. Actuators, B., 122, 369 (2007)
- Herzog G, Flynn S, Arrigan DWM, J. Phys.: Conf. Ser., 307, 1 (2011)
- Ribeiro JA, Silva F, Pereira CM, Anal. Chem., 85, 1582 (2013)
- Lee HJ, Beriet C, Girault HH, Anal. Sci., 14, 71 (1998)
- Pereira CM, Oliveira JM, Silva RM, Silva F, Anal. Chem., 76, 5547 (2004)
- Beattie PD, Delay A, Girault HH, J. Electroanal. Chem., 380(1-2), 167 (1995)
- Shao Y, Tan SN, Devaud V, Girault HH, J. Chem. Soc., Faraday Trans., 89, 4307 (1993)
- Wilke S, Wang HM, J. Electroanal. Chem., 475(1), 9 (1999)
- Kudo Y, Takeda Y, Matsuda H, J. Electroanal. Chem., 396(1-2), 333 (1995)
- Osakai T, Kakutani T, Senda M, Anal. Sci., 3, 521 (1987)
- Osakai T, Kakutani T, Senda M, Anal. Sci., 4, 529 (1988)
- Campbell JA, Stewart AA, Girault HH, J.Chem. Soc., Faraday Trans. 1., 85, 843 (1989)
- Beattie PD, Delay A, Girault HH, Electrochim. Acta, 40(18), 2961 (1995)
- Kakutani T, Nishiwaki Y, Osakai T, Senda M, Bull. Chem. Soc.Jpn., 59, 781 (1986)
- Dwyer P, Cunnane VJ, J. Electroanal. Chem., 581(1), 16 (2005)
- Guo J, Yuan Y, Amemiya S, Anal. Chem., 77, 5711 (2005)
- Cui RF, Li Q, Gross DE, Meng X, Li B, Marquez M, Yang RH, Sessler JL, Shao YH, J. Am. Chem. Soc., 130(44), 14364 (2008)