Chemistry Reference
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78. Wallenborg, S.R.; Markides, K.E. and Nyholm, L. (1997) Oxidative and reductive amperometric detection of
phenolic and nitroaromatic compounds in packed capillary column supercritical fluid chromatography,
J. Chromatogr. A , 785 , 121-128.
79. Erkey, C.J. (2009) Preparation of metallic supported nanoparticles and films using supercritical fluid deposition,
J. Supercrit. Fluids , 47 , 517-522.
80. Lou, Z.; Chen, Q.; Wang, W. and Zhang, Y. (2003) Synthesis of carbon nanotubes by reduction of carbon dioxide
with metallic lithium, Carbon , 41 , 3063-3067.
81. Smith, D.K.; Lee, D.C. and Korgel, B.A. (2006) High yield multiwall carbon nanotube synthesis in supercritical
fluids, Chem. Mater ., 18 , 3356-3364.
82. Maya, F.; Estela, J.M. and Cerdà, V. (2010) Flow analysis techniques as effective tools for the improved
environmental analysis of organic compounds expressed as total indices, Talanta , 81 , 1-8.
83. Kim, Y.C.; Sasaki, S.; Yano, K.; Ikebukuro, K.; Hashimoto, K. and Karube, I. (2001) Photocatalytic sensor for the
determination of chemical oxygen demand using flow injection analysis, Anal. Chim. Acta , 432 , 59-66.
84. Li, J.; Li, L.; Zheng, L.; Xian, Y.; Ai, S. and Jin, L. (2005) Amperometric determination of chemical oxygen
demand with flow injection analysis using F-PbO 2 modified electrode, Anal. Chim. Acta , 548, 199-204.
85. Li, J.; Zheng, L.; Li, L.; Shi, G.; Xian, Y. and Jin, L. (2007) Photoelectro-synergistic catalysis combined with a FIA
system application on determination of chemical oxygen demand, Talanta , 72 , 1752-1756.
86. Musijowski, J.; Trojanowicz, M.; Szostek, B.; Lima, J.L.F.C.; Lapa, R.; Yamashita, H.; Takayanagi, T. and
Motomizu, S. (2007) Flow-injection determination of total organic fluorine with off-line defluorination reaction on
a solid sorbent bed, Anal. Chim. Acta , 600 , 147-154.
87. Ruzicka, J. and Marshall, G.D. (1990) Sequential injection: a new concept for chemical sensors, process analysis
and laboratory assays, Anal. Chim. Acta , 237 , 329-343.
88. Ruzicka, J. (1992) The second coming of flow-injection analysis, Anal. Chim. Acta , 261 , 3-10.
89. Pérez-Olmos, R.; Soto, J.C.; Zárate, N.; Araújo, A.N. and Montenegro, M.C.B.S.M. (2005) Sequential injection
analysis using electrochemical detection: A review, Anal. Chim. Acta , 554 , 1-16.
90. Echols, R.T.; James, R.R. and Aldstadt, J.H. (1997) Determination of primary explosive azides in environmental
samples by sequential injection amperometry, Analyst , 122 , 315-319.
91. Injang, U.; Noyrod, P.; Siangprohb, W.; Dungchai, W.R.; Motomizu, S. and Chailapakul, O. (2010) Determination
of trace heavy metals in herbs by sequential injection analysis-anodic stripping voltammetry using screen-printed
carbon nanotubes electrodes Anal. Chim. Acta , 668 , 54-60.
92. Siriangkhawut, W.; Pencharee, S.; Grudpan, K. and Jakmunee, J. (2009) Sequential injection monosegmented flow
voltammetric determination of cadmium and lead using a bismuth film working electrode, Talanta , 79 , 1118-1124.
93. Wang, J. and Taha, Z. (1991) Batch injection analysis, Anal. Chem ., 63 , 1053-1056.
94. Calvo Quintana, J.; Idrissi, L.; Palleschi, G.; Albertano, P.; Amine, A.; Rhazi, M.E. and Moscone, D. (2004)
Investigation of amperometric detection of phosphate: Application in seawater and cyanobacterial biofilm samples,
Talanta , 63 , 567-574.
95. Adraoui, I.; Rhazi, M.E. and Amine, A. (2007) Fibrinogen-coated bismuth film electrodes for voltammetric
analysis of lead and cadmium using the batch injection analysis, Anal. Lett ., 40 , 349-354.
96. Alegret, S. (2003) Integrated Analytical Systems, Ch. 1, Elsevier, Amsterdam.
97. Gawron, A.J.; Martin, R.S. and Lunte, S.M. (2001) Microchip electrophoretic separation systems for biomedical
and pharmaceutical analysis, Eur. J. Pharm. Sci ., 14 , 1-12.
98. Wu, C.C.; Yasukawa, T.; Shiku, H. and Matsue, T. (2005) Fabrication of miniature Clark oxygen sensor integrated
with microstructure, Sens. Actuators B , 110 , 342-349.
99. Zou, Z.; Jang, A.; MacKnight, E.; Wu, P.M.; Do, J.; Bishop, P.L. and Ahn, C.H. (2008) Environmentally friendly
disposable sensors with microfabricated on-chip planar bismuth electrode for in situ heavy metal ions measurement,
Sens. Actuators B , 134 , 18-24.
100. Virdi, G.S.; Chutani, R.K.; Rao, P.K. and Kumar, S. (2008) Fabrication of low cost integrated micro-capillary
electrophoresis analytical chip for chemical analysis, Sens. Actuators B , 128 , 422-426.
101.
Ding, Y.; Ayon, A. and García, C.D. (2007) Electrochemical detection of phenolic compounds using cylindrical
carbon-ink electrodes and microchip capillary electrophoresis, Anal. Chim. Acta , 584 , 244-251.
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