화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.54, 30-43, October, 2017
Progress in the sensing techniques for heavy metal ions using nanomaterials
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The widespread pollution of toxic metals has drawn much attention due to its potential to harm both human health and the environment. Recently, a large volume of scientific literature has identified a potent role for nanomaterials in capturing, separating, and probing for such hazardous pollutants. This review discusses the opportunities and challenges in applying nanomaterials to sense hazardous metals in relation to their general working principles. This review evaluates their performance and advantages about conventional analytical methods. Our review also describes the basic features of this developing field to help establish a plan to counteract heavy metal ions contamination.
  1. Vallee BL, Ulmer DD, Annu. Rev. Biochem., 41, 91 (1972)
  2. Hamilton JW, Kaltreider RC, Bajenova OV, Ihnat MA, McCaffrey J, Turpie BW, Rowell EE, Oh J, Nemeth MJ, Pesce CA, Lariviere JP, Environ. Health Perspect., 106, 1005 (1998)
  3. Partanen T, Heikkila P, Hernberg S, Kauppinen T, Moneta G, Ojajarvi A, Scand. J. Work Environ. Health 231 (1991).
  4. Aragay G, Pons J, Merkoci A, Chem. Rev., 111(5), 3433 (2011)
  5. U.S. Environmental Protection Agency. Risk Assessment, Management and Communication of Drinking Water Contamination. US EPA 625/4-89/024, EPA: Washington, DC, 1989.
  6. Mcneil FE, O’meara JM, The In Viva Measurement of Trace Heavy Metals by K X-Ray Fluorescence, (1999).
  7. Flamini R, Panighel A, Mass Spectrom. Rev., 25, 741 (2006)
  8. Merkoc A, Alegret S, Comprehensive Analytical Chemistry, Elsevier B.V., Amsterdam, 2007, pp. 143 Chapter 49.
  9. Aragay G, Pons J, Merkoci A, Chem. Rev., 111(5), 3433 (2011)
  10. Wang J, Tian B, Anal. Chem., 64, 1706 (1992)
  11. Oehme I, Wolfbeis OS, Microchim. Acta., 126, 177 (1997)
  12. Wallace KJ, Supramol. Chem., 21, 89 (2009)
  13. Knecht MR, Sethi M, Anal. Bioanal. Chem., 394, 33 (2009)
  14. Zhang LD, Fang M, Nano Today, 5(2), 128 (2010)
  15. Pierce DT, Zhao XJ, Trace Analysis with Nanomaterials, Wiley-VCH Verlag, Weinheim, Germany, 2010.
  16. Duruibe J, Ogwuegbu M, Egwurugwu J, Int. J. Phys. Sci., 2, 112 (2007)
  17. Hutton M, Symon C, Sci. Total Environ., 57, 129 (1986)
  18. Battarbee R, Anderson N, Appleby P, Flower JR, Fritz S, Haworth E, Higgit S, Jones V, Kreiser A, Munro AM, Natkanski J, Oldfield F, Patrick TS, Richardson N, Rippey B, Stevenson CA. Lake Acidification in The United Kingdom, ENSIS, London, 1998, http://www.geog.ucl.ac.uk/ spatrick/ f_r_pubs.htm.
  19. Nriagu JO, Nature, 337, 47 (1989)
  20. Garbarino RJ, Hayes H, Roth D, Antweider R, Brinton IT, Taylor H, Contaminants in the Mississippi River, U. S. Geological Survey Circular 1133, Virginia, U.S.A., 1995. www.pubs.usgs.gov/circ/circ1133/.
  21. Hawkes SJ, J. Chem. Educ., 74, 1374 (1997)
  22. Nriagu JO, Nature, 338, 47 (1989)
  23. Ihsanullah FAAK, Abu-Sharkh B, Abulkibash AM, Qureshi MI, Laoui Y, Atieh MA, Desalin. Water Treat., 57, 7232 (2016)
  24. Position Paper Against Mining in Rapu-Rapu, Published by INECAR, Institute of Environmental Conservation and Research INECAR, 2000, Ateneo de Naga University, Philippines, www.adnu.edu.ph/Institutes/Inecar/pospaper1.asp.
  25. Water Treatment, Published by Lenntech, Rotterdamseweg, Lenntech Water Treatment and Air Purification, 2004, Netherlands, www.excelwater.com/ thp/filters/Water-Purification.htm.
  26. Wang WC, Mao H, Ma DD, Yang WX, Front. Mar. Sci., 1, 34 (2014)
  27. Silva AJ, Stevens CF, Tonegawa S, Wang Y, Science, 257, 201 (1992)
  28. Dai D, Xu D, Cheng X, He Y, Anal. Methods, 6, 4507 (2014)
  29. Liu X, Wu Z, Zhang W, Zhao W, Zong C, Gai H, Anal. Chem., 88, 2119 (2016)
  30. Zhou W, Ding J, Liu J, Biosens. Bioelectron., 87, 171 (2017)
  31. Wei Q, Nagi R, Sadeghi K, Feng S, Yan E, Ki SJ, Caire R, Tseng D, Ozcan A, ACS Nano, 8, 1121 (2014)
  32. Hu Z, Deibert BJ, Li J, Chem. Soc. Rev., 43, 5815 (2014)
  33. Kumar P, Deep A, Kim KH, TrAC Trends Anal. Chem., 73, 39 (2015)
  34. Xu XY, Yan B, J. Mater. Chem., 4, 1543 (2016)
  35. Cao LH, Shi F, Zhang WM, Zang SQ, Mak TC, Chem. A: Eur. J., 21, 15705 (2015)
  36. Ding SY, Dong M, Wang YW, Chen YT, Wang HZ, Su CY, Wang W, J. Am. Chem. Soc., 138(9), 3031 (2016)
  37. Li YW, Li JR, Wang LF, Zhou BY, Chen Q, Bu XH, J. Mater. Chem., 1, 495 (2013)
  38. Liu B, Wu WP, Hou L, Wang YY, Chem. Commun., 50, 8731 (2014)
  39. Cai D, Guo H, Wen L, Liu C, CrystEngComm, 15, 6702 (2013)
  40. Wu Y, Yang GP, Zhao Y, Wu WP, Liu B, Wang YY, Dalton Trans., 44, 3271 (2015)
  41. Fang QR, Yuan DQ, Sculley J, Li JR, Han ZB, Zhou HC, Inorg. Chem., 49(24), 11637 (2010)
  42. Chai F, Wang C, Wang T, Li L, Su Z, ACS Appl. Mater. Interfaces, 2, 1466 (2010)
  43. Wen Y, Xing F, He S, Song S, Wang L, Long Y, Li D, Fan C, Chem. Commun., 46, 2596 (2010)
  44. Lee SJ, Lee JE, Seo J, Jeong IY, Lee SS, Jung JH, Adv. Funct. Mater., 17(17), 3441 (2007)
  45. Wang Y, Li B, Zhang L, Liu L, Zuo Q, Li P, New J. Chem., 34, 1946 (2010)
  46. Dong Y, Wang R, Li G, Chen C, Chi Y, Chen G, Anal. Chem., 84, 6220 (2012)
  47. Yuan C, Liu B, Liu F, Han MY, Zhang Z, Anal. Chem., 86, 1123 (2014)
  48. Lee HY, Bae DR, Park JC, Song H, Han WS, Jung JH, Angew. Chem.-Int. Edit., 121, 1265 (2009)
  49. Kim Y, Johnson RC, Hupp JT, Nano Lett., 1, 165 (2001)
  50. Lee JS, Mirkin CA, Anal. Chem., 80, 6805 (2008)
  51. Liu CW, Huang CC, Chang HT, Anal. Chem., 81, 2383 (2009)
  52. Zhu H, Zhang S, Li M, Shao Y, Zhu Z, Chem. Commun., 46, 2259 (2010)
  53. Govindhan M, Adhikari BR, Chen A, RSC Adv., 4, 36741 (2014)
  54. Chen A, Chatterjee S, Chem. Soc. Rev., 42, 5425 (2013)
  55. Xiong W, Zhou L, Liu ST, Chem. Eng. J., 284, 650 (2016)
  56. Gao F, Gao NN, Nishitani A, Tanaka H, J. Electroanal. Chem., 775, 212 (2016)
  57. Serrano N, Alberich A, Diaz-Cruz JM, Arino C, Esteban M, TrAC Trends Anal. Chem., 46, 15 (2013)
  58. Barton J, Garcia MBG, Santos DH, Fanjul-Bolado P, Ribotti A, McCaul M, Diamond D, Magni P, Microchim. Acta., 183, 503 (2016)
  59. Perez-Rafols C, Serrano N, Diaz-Cruz JM, Arino C, Esteban M, Anal. Chim. Acta, 916, 17 (2016)
  60. Schwarz J, Trommer K, Mertig M, Am. J. Anal. Chem., 7, 525 (2016)
  61. Injang U, Noyrod P, Siangproh W, Dungchai W, Motomizu S, Chailapakul O, Anal. Chim. Acta, 668, 54 (2010)
  62. Bagheri H, Afkhami A, Khoshsafar H, Rezaei M, Shirzadmehr A, Sens. Actuators B-Chem., 186, 451 (2013)
  63. Ouyang RZ, Zhu ZQ, Tatum CE, Chambers JQ, Xue ZL, J. Electroanal. Chem., 656(1-2), 78 (2011)
  64. Li YH, Ding J, Luan Z, Di Z, Zhu Y, Xu C, Wu D, Wei B, Carbon, 41, 2787 (2003)
  65. Lu CY, Chiu HS, Chem. Eng. Sci., 61(4), 1138 (2006)
  66. Xu H, Zeng L, Xing S, Xian Y, Shi G, Jin L, Electroanalysis, 20, 2655 (2008)
  67. Zhao W, Ge PY, Xu JJ, Chen HY, Langmuir, 23(16), 8597 (2007)
  68. Gao C, Yu XY, Xu RX, Liu JH, Huang XJ, ACS Appl. Mater. Interfaces, 4, 4672 (2012)
  69. Gong J, Zhou T, Song D, Zhang L, Sens. Actuators B-Chem., 150, 491 (2010)
  70. Khun NW, Liu E, Electrochim. Acta, 54(10), 2890 (2009)
  71. Huang H, Chen T, Liu X, Ma H, Anal. Chim. Acta, 852, 45 (2014)
  72. Lv MJ, Wang XB, Li J, Yang XY, Zhang CA, Yang J, Hu H, Electrochim. Acta, 108, 412 (2013)
  73. Forzani ES, Li X, Zhang P, Tao N, Zhang R, Amlani I, Tsui R, Nagahara LA, Small, 2, 1283 (2006)
  74. Yu XY, Meng QQ, Luo T, Jia Y, Sun B, Li QX, Liu JH, Huang XJ, Sci. Rep., 3 (2013)
  75. Pan D, Wang Y, Chen Z, Lou T, Qin W, Anal. Chem., 81, 5088 (2009)
  76. Lee JS, Han MS, Mirkin CA, Angew. Chem.-Int. Edit., 46, 4093 (2007)
  77. Tuzen M, Saygi KO, Soylak M, J. Hazard. Mater., 152(2), 632 (2008)
  78. Sohrabi MR, Matbouie Z, Asgharinezhad AA, Dehghani A, Microchim. Acta., 180, 589 (2013)
  79. Taghizadeh M, Asgharinezhad AA, Pooladi M, Barzin M, Abbaszadeh A, Tadjarodi A, Microchim. Acta., 180, 1073 (2013)
  80. Aragay G, Pons J, Merkoci A, Chem. Rev., 111(5), 3433 (2011)
  81. Mehta SK, Bhardwaj SK, Bhardwaj N, Paul A, Kumar P, Kim KH, Deep A, Biotechnol. Adv., 34, 47 (2016)
  82. Zhang JJ, Cheng FF, Li JJ, Zhu JJ, Lu Y, Nano Today, 11(3), 309 (2016)
  83. Zhou Y, Tang L, Zeng G, Zhang C, Zhang Y, Xie X, Sens. Actuators B-Chem., 223, 280 (2016)
  84. Shen L, Chen Z, Li Y, He S, Xie S, Xu X, Liang Z, Meng X, Li Q, Zhu Z, Anal. Chem., 80, 6323 (2008)
  85. Bontidean I, Berggren C, Johansson G, Csoregi E, Mattiasson B, Lloyd JR, Jakeman KJ, Brown NL, Anal. Chem., 70, 4162 (1998)
  86. Bousse L, Sens. Actuators B-Chem., 34, 270 (1996)
  87. Tsekenis G, Filippidou M, Chatzipetrou M, Tsouti V, Zergioti I, Chatzandroulis S, Sens. Actuators B-Chem., 208, 628 (2015)
  88. Turner AP, Sens. Actuators, 17, 433 (1989)
  89. Turner AP, Sens. Actuators, 17, 433 (1989)
  90. Skotadis E, Tsekenis G, Chatzipetrou M, Patsiouras L, Madianos L, Bousoulas P, Zergioti I, Tsoukalas D, Sens. Actuators B-Chem., 239, 962 (2017)
  91. Gong L, Zhao Z, Lv YF, Huan SY, Fu T, Zhang XB, Shen GL, Yu RQ, Chem. Commun., 51, 979 (2015)
  92. Liu Q, Cai H, Xu Y, Xiao L, Yang M, Wang P, Biosens. Bioelectron., 22, 3224 (2007)
  93. Slocik JM, Zabinski JS, Phillips DM, Naik RR, Small, 4, 548 (2008)
  94. Yoosaf K, Ipe BI, Suresh CH, Thomas KG, J. Phys. Chem., 111, 12839 (2007)
  95. Liu J, Lu Y, Chem. Mater., 16, 3231 (2004)
  96. Zhou W, Ding J, Liu J, Biosens. Bioelectron., 87, 171 (2017)
  97. Liu JW, Lu Y, J. Am. Chem. Soc., 126(39), 12298 (2004)
  98. Lu Y, Chem. A: Eur. J., 8, 4588 (2002)
  99. Zhao W, Lam JC, Chiuman W, Brook MA, Li Y, Small, 4, 810 (2008)
  100. Wei H, Li B, Li J, Dong S, Wang E, Nanotechnology, 19, 095501 (2008)
  101. Yang T, Liu LH, Liu JW, Chen ML, Wang JH, J. Mater. Chem., 22, 21909 (2012)
  102. Yantasee W, Warner CL, Sangvanich T, Addleman RS, Carter TG, Wiacek RJ, Fryxell GE, Timchalk C, Warner MG, Environ. Sci. Technol., 41, 5114 (2007)
  103. Faraji M, Yamini Y, Saleh A, Rezaee M, Ghambarian M, Hassani R, Anal. Chim. Acta, 659, 172 (2010)
  104. Darbha GK, Ray A, Ray PC, ACS Nano, 1, 208 (2007)
  105. Xu RX, Yu XY, Gao C, Jiang YJ, Han DD, Liu JH, Huang XJ, Anal. Chim. Acta, 790, 31 (2013)
  106. Sugunan A, Thanachayanont C, Dutta J, Hilborn J, Sci. Technolo. Adv. Mater., 6, 335 (2005)
  107. Liu X, Hu Q, Fang Z, Zhang X, Zhang B, Langmuir, 25, 3 (2008)
  108. Darbha GK, Singh AK, Rai US, Yu E, Yu HT, Ray PC, J. Am. Chem. Soc., 130(25), 8038 (2008)
  109. Ye BC, Yin BC, Angew. Chem.-Int. Edit., 47, 8386 (2008)
  110. Li YH, Ding J, Luan Z, Di Z, Zhu Y, Xu C, Wu D, Wei B, Carbon, 41, 2787 (2003)
  111. Lu CY, Chiu HS, Chem. Eng. Sci., 61(4), 1138 (2006)
  112. Shellaiah M, Simon T, Sun KW, Ko FH, Sens. Actuators B-Chem., 226, 44 (2016)
  113. Zeng Y, Ren JQ, Shen AG, Hu JM, ACS Appl. Mater. Interfaces, 8(41), 27772 (2016)
  114. Liu JF, Zhao ZS, Jiang GB, Environ. Sci. Technol., 42, 6949 (2008)
  115. Bhanjana G, Dilbaghi N, Singhal NK, Kim KH, Kumar S, J. Ind. Eng. Chem. (2017), doi:http://dx.doi.org/10.1016/j.jiec.2017.04.025.
  116. Jeong U, Kim Y, J. Ind. Eng. Chem., 31, 393 (2015)
  117. Ghaedi M, Montazerozohori M, Rahimi N, Biysreh MN, J. Ind. Eng. Chem., 19(5), 1477 (2013)
  118. Zhou WY, Liu JY, Song JY, Li JJ, Liu JH, Huang XJ, Anal. Chem., 89(6), 3386 (2017)
  119. Sudibya HG, He Q, Zhang H, Chen P, ACS Nano, 5, 1990 (2011)
  120. Malek A, Thomas T, Prasad E, ACS Sustain. Chem. Eng., 4(6), 3497 (2016)