Determination of Bi in complex oxide samples by atomic absorption spectrometry by using ordinary acetylene – air flame atomization
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Cross LE, Pohanka RC. Ferroelectricity in bismuth oxide type layer structure compounds. Mat Res Bull. 1971;6(10):939-949. doi:10.1016/0025-5408(71)90072-9
Malathi A, Madhavan J, Ashokkumar M, Arunachalam P. A review on BiVO4 photocatalyst: Activity enhancement methods for solar photocatalytic applications. Appl Catal A. 2018;555:47-74. doi:10.1016/j.apcata.2018.02.010
Emelyanova YV, Mikhailovskaya ZA., Buyanova ES, Petrova SA. Synthesis, structure, and properties of substituted bismuth niobates Bi3Nb1-x ErxO7-d. Rus J Appl Chem. 2017;90(3):354-360. doi:10.1134/S1070427217030053
Vannier RN, Pernot E, Anne M, Isnard O, Nowogrocki G, Mairesse G. Bi4V2O11 polymorph crystal structures related to their electrical properties. Solid State Ionics. 2003;157(1):147-153. doi:10.1016/S0167-2738(02)00202-3
Kaur G, Pandey, OP, Singh K. Optical, structural, and mechanical properties of different valence-cation-doped bismuth vanadate oxides. Physica Status Solidi A. 2012;209(7):1231–1238. doi:10.1002/pssa.201127636
Wang J, Neaton B, Zheng H, Nagarajan V, Ogale SB, Liu B, Viehland D, Vaithyanathan V, Schlom, DG, Waghmare, UV, Spaldin NA, Rabe KM, Wuttig,M, Ramesh R. Epitaxial BiFeO3 multiferroic thin film heterostructures. Science. 2003;299(5613):1719–1722. doi:10.1126/science.1080615.PMID 12637741.
Fu S, Ozoe H. Growth of Bi12GeO20 crystal rods and fibers by the improved floating zone method. J Mater Sci. 1999;34 (2):283–290. doi:10.1023/A:1004430311364.
Shen C, Zhang H, ZhangY, Xu H, Yu H, Wang J, Zhang S. Orientation and temperature dependence of piezoelectric properties for sillenite-type Bi12TiO20 and Bi12SiO20 single crystals. Crystals. 2014;4(2):141-151. doi:10.3390/cryst4020141
Das AK, Chakraborty R, Cervera ML., de la Guardia M. Analytical techniques for the determination of bismuth in solid environmental samples. Trends Anal Chem. 2006;25(6):599–608. doi:10.1016/j.trac.2006.01.006
Codony F, Domenico P, Mas J. Assessment of bismuth thiols and conventional disinfectants on drinking water biofilms. J Appl Microbiol. 2003;95(2):288-93. doi:10.1046/j.1365-2672.2003.01974.x
Madrakian T, Afkhami A, Esmaeili A. Spectrophotometric determination of bismuth in water samples after preconcentration of its thiourea-bromide ternary complex on activated carbon. Talanta. 2003;60(4):831-8. doi:10.1016/S0039-9140(03)00135-8
Pournaghi-Azar MH., Hossein M, Bahar S. Selective determination of trace-bismuth by extraction-differential pulse polarography in non-aqueous media. [Internet]. Iran J Chem Chem Eng. 2001;20(2):59-65. Available from: http://www.ijcce.ac.ir/article_9971_d79d426fa1a46f24492b40f4a3cc28d2.pdf
Şahan S, Saçmacı S, Şahin U., Ülgen A., Kartal S. An on-line preconcentration/ separation system for the determination of bismuth in environmental samples by FAAS, Talanta. 2010;80(5):2127-2131. doi:10.1016/j.talanta.2009.11.019
Afkhami A, Madrakian T, Siampour H. Cloud point extraction spectrophotometric determination of trace quantities of bismuth in urine. J Braz Chem Soc. 2006;17(4):797–802. doi:10.1590/S0103-50532006000400024
Kilinс E, Bakirdere S, Aydin F, Ataman YO. Sensitive determination of bismuth by flame atomic absorption spectrometry using atom trapping in a slotted quartz tube and revolatilization with organic solvent pulse. Spectrochim Acta Part B. 2012;7:84–88. doi:10.1016/j.sab.2012.06.004
Dedina J, Tsalev DL. Hydride Generation Atomic Absorption Spectrometry. Chicester : Wiley & Sons; 1995. 544 p.
Dobrowolski R, Dobrzynska J, Gawronska B. Determination of bismuth in environmental samples by slurry sampling graphite furnace atomic absorption spectrometry using combined chemical modifiers. Environ Monit Assess. 2015;187(4125):1–8. doi:10.1007/s10661-014-4125-7
SOLAAR CookBook. Recommendations for Atomic Absorbtion Determination of Elements. ThermoFisher Scientific; 2007.
Cookies on PerkinElmer: White papers. Sensitivity, Background, Noise and Calibration In Atomic Spectroscopy – Effects on Accuracy and Detection Limits. [Internet]. Available from: https://www.perkinelmer.com/lab-solutions/resources/docs/WHP_Atomic_Spectroscopy-Effects_on_Accuracy_and_Detection_Limits_013559_01.pdf
DOI: https://doi.org/10.15826/chimtech.2019.6.4.03
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