The electrochemical performance of Self-doped polyaniline- Molybdenum disulfide nanocomposite for vitamin B2 Determination
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- (a) J.N. Coleman, M. Lotya, A. O’Neill, et al., Science 2011, 331, 568.
(b) K.G. Zhou, N.N. Mao, H.X. Wang, Y. Peng, H.L. Zhang, Angew. Chem, Int. Ed. 2011, 50, 10839.
(c) C.N.R. Rao, A. Nag, J.I. Eur. Chem. 2010, 4244.
(d) M. Osada, T.J. Sasaki, Mater. Chem. 2009, 19, 2503.
(e) Z. Zeng, T. Sun, J. Zhu, X. Huang, Z. Yin, G. Lu, Z. Fan, Q. Yan, H.H. Hng, H. Zhang, Angew. Chem, Int. Ed. 2012,15, 9052.
(f) X. Huang, Z. Zeng, H. Zhang, Chem. Soc. Rev. 2013, 42, 1934.
(g) M. Chhowalla, H.S. Shin, G. Eda, L.J. Li, K. Loh, H. Zhang, Nat. Chem. 2013, 5, 263.
(h) Q.H. Wang, K. Kalantar-Zadeh, A. Kis, J.N. Coleman, M.S. Strano, Nat. Nanotech. 2012, 27, 699.
- T.Y. Wang, H.C. Zhu, J.Q. Zhuo, Z.W. Zhu, P. Papakonstantinou, G. Lubarsky, J. Lin, and M.X. Li, Biosensor Based on Ultrasmall MoS2 Nanoparticles for Electrochemical Detection of H2O2 Released by Cells at the Nanomolar Level, Anal. Chem. 2013, 85, 10289-10295.
- T. Yang, H. Chen, R. Yang, Y. Jiang, W. Li, K. Jiao, A glassy carbon electrode modified with a nanocomposite consisting of molybdenum disulfide intercalated into self-doped polyaniline for the detection of bisphenol A, Microchimica Acta, 2015, 182, 2623-2628.
- R. Yang, J. Zhao, M. Chen, T. Yang, S. Luo, K. Jiao, Electrocatalytic determination of chloramphenicol based on molybdenum disulfide nanosheets and self-doped polyaniline, Talanta,, 2015, 131, 619-623.
- L.C. Yang, S.N. Wang, J.J. Mao, J.W. Deng, Q.S. Ga, Y. Tang, and O.G. Schmidt, Hierarchical MoS2/Polyaniline Nanowires with Excellent Electrochemical Performance for Lithium-Ion Batteries, Adv. Mater. 2013, 25, 1180-1184.
- K.J. Huang, L. Wang, Y.J. Liu, H.B. Wang, Y.M. Liu, L.L. Wang, Synthesis of polyaniline/2-dimensional graphene analog MoS2 composites for high-performance supercapacitor, Electrochim. Acta. 2013, 109, 587-594.
- K.J. Huang, J.Z. Zhang, Y.J. Liu, L.L. Wang, Novel electrochemical sensing platform based on molybdenum disulfide nanosheets-polyaniline composites and Au nanoparticles, Sensors and Actuators B. 2014, 194, 303-310.
- P.D. Xu, C.S. Qiao, S. F. Yang, L.J. Liu, M.W. Wang, J.K. Zhang, Fast Determination of Vitamin B2 Based on Molecularly Imprinted Electrochemical Sensor, Engineering. 2012, 10B, 129-134.
- W. Qijin, Y. Nianjun, Z. Haili, Z. Xinpin, X. Bin, Voltammetric behavior of vitamin B2 on the gold electrode modified with a self-assembled monolayer of l-cysteine and its application for the determination of vitamin B2 using linear sweep stripping voltammetry, Talanta, 2001, 55, 459-467.
- W.Y. Zhong, B. Huang, L. Chen and C. Shu, Fluorescence resonance energy transfer quenching for determination of vitamin B2, ä¸å›½è¯ç§‘大å¦å¦æŠ¥, 2011, 42, 527-533.
- J. Chen, B. Q. Li, Y. Q. Cui, E, Yu and H. L. Zhai, A fast and effective method of quantitative analysis of VB1, VB2 and VB6 in B-vitamins complex tablets based on three-dimensional fluorescence spectra, Journal of Food Composition and Analysis, 2015, 41, 122-128.
- C. Rosângela, Barthus, H. Luiz, Mazo, J. Ronei, Poppi, UV Spectrophotrometry and Chemometrics Methods for Simultaneous Determinations of Riboflavin (VB2), Thiamine (VB1), Pyridoxine (VB6) and Nicotinamide (VPP). QuÃmica Nova, 2007, 7, 1638-1643.
- X. Xiao, Y.Y. Hou, J. Du, D. Sun, G. Bai, G. Luo, Determination of vitamins B2, B3, B6 and B7 in corn steep liquor by NIR and PLSR, Transactions of Tianjin University. 2012, 5, 372.
- T. Nie, J.K. Xu, L.M. Lu, K.X. Zhang, L. Bai, Y.P. Wen, Electroactive species-doped poly(3,4-ethylenedioxythiophene) films: Enhanced sensitivity for electrochemical simultaneous determination of vitamins B2, B6 and C. Biosens Bioelectron. 2013, 50, 244-250.
- B. Bas, M. Jakubowska, U. Górski, Application of renewable silver amalgam annular band electrode to voltammetric determination of vitamins C, B1 and B2, Talanta. 2011, 4, 1032-1037.
- K. G. Zhou, N.N. Mao, H.X. Wang, Y. Peng, H.L. Zhang, A Mixed-Solvent Strategy for Efficient Exfoliation of Inorganic Graphene Analogues, Angew. Chem. Int. Ed. 2011, 50, 10839 -10842.
- R.J. Smith, P.J. King, M. Lotya, et al., Large-Scale Exfoliation of Inorganic Layered Compounds in Aqueous Surfactant Solutions, Adv. Mater. 2011, 23, 3944-3948.
- J.N. Coleman1, M. Lotya1, A. O’Neill, et al., Two-Dimensional Nanosheets Produced by Liquid Exfoliation of Layered Materials, Science 2011, 331, 568-571.
- T. Yang, Q. Guan , Q.H. Li , L. Meng, L.L. Wang, C.X. Liu and K. Jiao, Large-area three-dimensional interconnected grapheme oxide intercalated with self-doped polyaniline nanofi bers as a free-standing electrocatalytic platform for adenine and guanine, J. Mater. Chem. B. 2013, 1, 2926 - 2933.
- Y.W. Hu, T. Yang, Q.H. Li, Q. Guan, K. Jiao, Conjugated self-doped polyaniline-DNA hybrid as trigger for highly sensitive reagentless and electrochemical self-signal amplifying DNA hybridization sensing. Analyst, 2013, 138, 1067-1074.
- T. Yang, Q. Guan, X.H. Guo, L. Meng, M. Du, K. Jiao, Direct and freely switchable detection of target genes engineered by reduced graphene oxide-poly(m-aminobenzenesulfonic acid) nanocomposite via synchronous pulse-electrosynthesis. Anal. Chem. 2013, 85,1358-1366.
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