
A colorimetric chemosensor based on new water-soluble PODIPY dye for Hg2+ detection
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关键词:
- PODIPY
- / Hg2+
- / Colorimetric
- / DFT
- / Chemosensor
English
A colorimetric chemosensor based on new water-soluble PODIPY dye for Hg2+ detection
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Key words:
- PODIPY
- / Hg2+
- / Colorimetric
- / DFT
- / Chemosensor
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[1] E.M. Nolan, S.J. Lippard, Tools and tactics for the optical detection of mercuric ion, Chem. Rev. 108(2008) 3443-3480.[1] E.M. Nolan, S.J. Lippard, Tools and tactics for the optical detection of mercuric ion, Chem. Rev. 108(2008) 3443-3480.
-
[2] R. Joseph, C.P. Rao, Ion and molecular recognition by lower rim 1, 3-di-conjugates of calix[4] arene as receptors, Chem. Rev. 111(2011) 4658-4702.[2] R. Joseph, C.P. Rao, Ion and molecular recognition by lower rim 1, 3-di-conjugates of calix[4] arene as receptors, Chem. Rev. 111(2011) 4658-4702.
-
[3] H.H. Harris, I.J. Pickering, G.N. George, The chemical form of mercury in fish, Science 301(2003) 1203-11203.[3] H.H. Harris, I.J. Pickering, G.N. George, The chemical form of mercury in fish, Science 301(2003) 1203-11203.
-
[4] D.W. Domaille, E.L. Que, C.J. Chang, Synthetic fluorescent sensors for studying the cell biology of metals, Nat. Chem. Biol. 4(2008) 168-175.[4] D.W. Domaille, E.L. Que, C.J. Chang, Synthetic fluorescent sensors for studying the cell biology of metals, Nat. Chem. Biol. 4(2008) 168-175.
-
[5] Mercury Update:Impact on Fish Advisories; EPA Fact Sheet EPA-823-F-01-001, Environmental Protection Agency, Office of Water, Washington, DC, 2001.[5] Mercury Update:Impact on Fish Advisories; EPA Fact Sheet EPA-823-F-01-001, Environmental Protection Agency, Office of Water, Washington, DC, 2001.
-
[6] Z. Han, B. Zhu, T. Wu, et al., A fluorescent probe for Hg2+ sensing in solutions and living cells with a wide working pH range, Chin. Chem. Lett. 25(2014) 73-76.[6] Z. Han, B. Zhu, T. Wu, et al., A fluorescent probe for Hg2+ sensing in solutions and living cells with a wide working pH range, Chin. Chem. Lett. 25(2014) 73-76.
-
[7] Z.Q. Yan, S.Y. Guang, H.Y. Xu, X.Y. Liu, An effective real-time colorimeteric sensor for sensitive and selective detection of cysteine under physiological conditions, Analyst 136(2011) 1916-1921.[7] Z.Q. Yan, S.Y. Guang, H.Y. Xu, X.Y. Liu, An effective real-time colorimeteric sensor for sensitive and selective detection of cysteine under physiological conditions, Analyst 136(2011) 1916-1921.
-
[8] J.S. Lee, M.S. Han, C.A. Mirkin, Colorimetric detection of mercuric ion (Hg2+) in aqueous media using DNA-functionalized gold nanoparticles, Angew. Chem. Int. Ed. 46(2007) 4093-4096.[8] J.S. Lee, M.S. Han, C.A. Mirkin, Colorimetric detection of mercuric ion (Hg2+) in aqueous media using DNA-functionalized gold nanoparticles, Angew. Chem. Int. Ed. 46(2007) 4093-4096.
-
[9] J.R. Lakowicz, Principles of Fluorescence Spectroscopy, 3rd ed., Springer, Heidelberg, 2006.[9] J.R. Lakowicz, Principles of Fluorescence Spectroscopy, 3rd ed., Springer, Heidelberg, 2006.
-
[10] F. Bergstroem, I. Mikhalyov, P. Haeggloef, et al., Dimers of dipyrrometheneboron difluoride (BODIPY) with light spectroscopic applications in chemistry and biology, J. Am. Chem. Soc. 124(2002) 196-204.[10] F. Bergstroem, I. Mikhalyov, P. Haeggloef, et al., Dimers of dipyrrometheneboron difluoride (BODIPY) with light spectroscopic applications in chemistry and biology, J. Am. Chem. Soc. 124(2002) 196-204.
-
[11] X.D. Jiang, J. Zhang, T. Furuyama, W. Zhao, Development of mono- and di-AcO substituted BODIPYs on the boron center, Org. Lett. 14(2012) 248-251.[11] X.D. Jiang, J. Zhang, T. Furuyama, W. Zhao, Development of mono- and di-AcO substituted BODIPYs on the boron center, Org. Lett. 14(2012) 248-251.
-
[12] X.D. Jiang, D. Xi, J. Zhao, et al., A styryl-containing aza-BODIPY as near-infrared dye, RSC Adv. 4(2014) 60970-60973.[12] X.D. Jiang, D. Xi, J. Zhao, et al., A styryl-containing aza-BODIPY as near-infrared dye, RSC Adv. 4(2014) 60970-60973.
-
[13] P. Shi, X.D. Jiang, R. Gao, et al., Synthesis and application of Vis/NIRdialkylaminophenylbuta-1,3-dienyl borondipyrromethene dyes, Chin. Chem. Lett.26(2015) 834-838.[13] P. Shi, X.D. Jiang, R. Gao, et al., Synthesis and application of Vis/NIRdialkylaminophenylbuta-1,3-dienyl borondipyrromethene dyes, Chin. Chem. Lett.26(2015) 834-838.
-
[14] X.D. Jiang, J. Zhao, D. Xi, et al., A new water-soluble phosphorus-dipyrromethene and phosphorus-azadipyrromethene dye:PODIPY/aza-PODIPY, Chem. Eur. J. 21(2015) 6079-6082.[14] X.D. Jiang, J. Zhao, D. Xi, et al., A new water-soluble phosphorus-dipyrromethene and phosphorus-azadipyrromethene dye:PODIPY/aza-PODIPY, Chem. Eur. J. 21(2015) 6079-6082.
-
[15] A. Loudet, K. Burgess, BODIPY dyes and their derivatives:syntheses and spectroscopic properties, Chem. Rev. 107(2007) 4891-4932.[15] A. Loudet, K. Burgess, BODIPY dyes and their derivatives:syntheses and spectroscopic properties, Chem. Rev. 107(2007) 4891-4932.
-
[16] L. Yuan, W. Lin, K. Zheng, L. He, W. Huang, Far-red to near infrared analyteresponsive fluorescent probes based on organic fluorophore platforms for fluorescence imaging, Chem. Soc. Rev. 42(2013) 622-661.[16] L. Yuan, W. Lin, K. Zheng, L. He, W. Huang, Far-red to near infrared analyteresponsive fluorescent probes based on organic fluorophore platforms for fluorescence imaging, Chem. Soc. Rev. 42(2013) 622-661.
-
[17] Y. Yang, Q. Zhao, W. Feng, F. Li, Luminescent chemodosimeters for bioimaging, Chem. Rev. 113(2013) 192-270.[17] Y. Yang, Q. Zhao, W. Feng, F. Li, Luminescent chemodosimeters for bioimaging, Chem. Rev. 113(2013) 192-270.
-
[18] S.-B. Yi, H.-F. Gao, Q. Li, Y.-F. Ye, et al., Synthesis and self-assembly behavior of 2,5-diphenylethynyl thiophene based bolaamphiphiles, Chin. Chem. Lett. 26(2015)872-876.[18] S.-B. Yi, H.-F. Gao, Q. Li, Y.-F. Ye, et al., Synthesis and self-assembly behavior of 2,5-diphenylethynyl thiophene based bolaamphiphiles, Chin. Chem. Lett. 26(2015)872-876.
-
[19] P.-Z. Chen, H.-R. Zheng, L.-Y. Niu, et al., A BODIPY analogue from the tautomerization of sodium 3-oxide BODIPY, Chin. Chem. Lett. 6(2015) 631-635.[19] P.-Z. Chen, H.-R. Zheng, L.-Y. Niu, et al., A BODIPY analogue from the tautomerization of sodium 3-oxide BODIPY, Chin. Chem. Lett. 6(2015) 631-635.
-
[20] M. Sun, H. Nie, J. Yao, Y. Zhong, Bis-triarylamine with a cyclometalated diosmium bridge:a multi-stage redox-active system, Chin. Chem. Lett. 6(2015) 649-652.[20] M. Sun, H. Nie, J. Yao, Y. Zhong, Bis-triarylamine with a cyclometalated diosmium bridge:a multi-stage redox-active system, Chin. Chem. Lett. 6(2015) 649-652.
-
[21] Y. Wu, C. Cheng, L. Jiao, et al., β-Thiophene-fused BF2-azadipyrromethenes as near-infrared dyes, Org. Lett. 16(2014) 748-751.[21] Y. Wu, C. Cheng, L. Jiao, et al., β-Thiophene-fused BF2-azadipyrromethenes as near-infrared dyes, Org. Lett. 16(2014) 748-751.
-
[22] K. Huang, H. Yang, Z. Zhou, et al., A highly selective phosphorescent chemodosimeter for cysteine and homocysteine based on platinum(II) complexes, Inorg. Chim. Acta 362(2009) 2577-2580.[22] K. Huang, H. Yang, Z. Zhou, et al., A highly selective phosphorescent chemodosimeter for cysteine and homocysteine based on platinum(II) complexes, Inorg. Chim. Acta 362(2009) 2577-2580.
-
[23] M. Chen, X. Lv, Y. Liu, et al., An 2-(20-aminophenyl)benzoxazole-based off-on fluorescent chemosensor for Zn2+ in aqueous solution, Org. Biomol. Chem. 9(2011) 2345-2349.[23] M. Chen, X. Lv, Y. Liu, et al., An 2-(20-aminophenyl)benzoxazole-based off-on fluorescent chemosensor for Zn2+ in aqueous solution, Org. Biomol. Chem. 9(2011) 2345-2349.
-
[24] X. Chen, T.H. Pradhan, F. Wang, J.S. Kim, J.Y. Yoon, Fluorescent chemosensors based on spiroring-opening of xanthenes and related derivatives, Chem. Rev. 112(2012) 1910-1956.[24] X. Chen, T.H. Pradhan, F. Wang, J.S. Kim, J.Y. Yoon, Fluorescent chemosensors based on spiroring-opening of xanthenes and related derivatives, Chem. Rev. 112(2012) 1910-1956.
-
[25] M.N. Elizabeth, J.L. Stephen, Turn-on fluorescent sensor for the selective detection of mercuric ion in aqueous media, J. Am. Chem. Soc. 125(2003) 14270-14271.[25] M.N. Elizabeth, J.L. Stephen, Turn-on fluorescent sensor for the selective detection of mercuric ion in aqueous media, J. Am. Chem. Soc. 125(2003) 14270-14271.
-
[26] H.G. Brittain, Physical Characterization of Pharmaceutical Solids, Marcel Dekker, New York, 1995.[26] H.G. Brittain, Physical Characterization of Pharmaceutical Solids, Marcel Dekker, New York, 1995.
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