References
- C. Ozdemir, S. Sacmacı, S. Kartal, M. Sacmacı, Determination
of gold and palladium in environmental samples by FAAS after
dispersive liquid-liquid microextraction pretreatment, J. Ind.
Eng. Chem., 20 (2014) 4059–4065.
- J. Medved, M. Bujdoš, P. Matúš, J. Kubová, Determination of
trace amounts of gold in acid-attacked environmental samples
by atomic absorption spectrometry with electrothermal atomization
after preconcentration, Anal. Bioanal. Chem., 379 (2004)
60–65.
- A.B.G. Lansdown, Silver and Gold, Patty’s Toxicology, 6th ed.,
John Wiley & Sons, 2012, pp. 75–112.
- M.F. Guerra, T. Calligaro, Gold cultural heritage objects: a review
of studies of provenance and manufacturing technologies,
Meas. Sci. Technol., 14 (2003) 1527–1537.
- I. Ott, On the medicinal chemistry of gold complexes as
anticancer drugs, Coord. Chem. Rev., 253 (2009) 1670–1681.
- E. Kazemi, S. Dadfarnia, A. Mohammad, H. Shabani, Dispersive
solid phase microextraction with magnetic graphene oxide as
the sorbent for separation and preconcentration of ultra-trace
amounts of gold ions, Talanta, 141 (2015) 273–278.
- M. Behbahani, T. Gorji, M. Mahyari, M. Salarian, A. Bagheri,
A. Shaabani, Application of polypropylene amine dendrimers
(POPAM)-grafted MWCNTs hybrid materials as a new sorbent
for solid-phase extraction and trace determination of gold(III)
and palladium(II) in food and environmental samples, Food
Anal. Methods, 7 (2014) 957–966.
- M. Konecna, J. Komarek, Utilization of electrodeposition for
electrothermal atomic absorption spectrometry determination
of gold, Spectrochim. Acta B, 62 (2007) 283–287.
- S. Chen, X. Zhu, Simplified cloud point extraction-inductively
coupled plasma mass spectrometry for the preconcentration/
analysis of ultra-trace gold, Miner. Eng., 23 (2010) 1152–1154.
- H. Fazelirad, M.A. Taher, Ligandless, Ion pair-based and
ultrasound assisted emulsification solidified floating organic
drop microextraction for simultaneous preconcentration of
ultra-trace amounts of gold and thallium and determination
by GFAAS, Talanta, 103 (2013) 375–383.
- M. Soylak, M. Tuzen, Coprecipitation of gold(III), palladium(II)
and lead(II) for their flame atomic absorption spectrometric
determinations, J. Hazard. Mater., 152 (2008) 656–661.
- S.S. Kolekar, M.A. Anuse, Rapid solvent extraction of gold(III)
with high molecular weight amine from organic acid solution,
Gold Bull., 34 (2000) 50–55.
- T. Shamspur, A. Mostafavi, Application of modified multiwalled
carbon nanotubes as a sorbent for simultaneous separation
and preconcentration trace amounts of Au(III) and Mn(II),
J. Hazard. Mater., 168 (2009) 1548–1553.
- L. Kocúrová, I.S. Balogh, J. Skrlíková, J. Posta, V. Andruch,
A novel approach in dispersive liquid-liquid microextraction
based on the use of an auxiliary solvent for adjustment of
density UV-VIS spectrophotometric and graphite furnace atomic
absorption spectrometric determination of gold based on ion
pair formation, Talanta, 82 (2010) 1958–1964.
- A. Zgoła-Grzeskowiak, T. Grzeskowiak, Dispersive liquidliquid
microextraction, Trends Anal. Chem., 30 (2011) 1382–1399.
- F. Pena-Pereira, I. Lavilla, C. Bendicho, Liquid-phase microextraction
approaches combined with atomic detection:
a critical review, Anal. Chim. Acta, 669 (2010) 1–16.
- A. Sarafraz-Yazdi, A. Amiri, Liquid-phase microextraction,
Trends Anal. Chem., 29 (2010) 1–14.
- A.K. Malik, V. Kaur, N. Verma, A review on solid phase
microextraction-high performance liquid chromatography as a
novel tool for the analysis of toxic metal ions, Talanta, 68 (2006)
842–849.
- M. Shamsipur, M. Ramezani, Selective determination of ultra
trace amounts of gold by graphite furnace atomic absorption
spectrometry after dispersive liquid-liquid microextraction,
Talanta, 75 (2008) 294–300.
- Z. Bahadir, V.N. Bulut, H. Bektas, M. Soylak, A sensitive
method for the determination of gold and palladium based
on dispersive liquid–liquid microextraction combined with
flame atomic absorption spectrometric determination using
N- (6-morpholin-4-ylpyridin-3-yl)-N0-phenylthiourea, RSC Adv.,
6 (2016) 6896–6904.
- S. Mahpishanian, F. Shemirani, Ionic liquid-based modified
cold-induced aggregation microextraction (M-CIAME) as a
novel solvent extraction method for determination of gold in
saline solutions, Miner. Eng., 23 (2010) 823–825.
- E, Yilmaz, M. Soylak, Supramolecular solvent microextraction
(SsLLME) of gold prior to its determination by microsample
injection system coupled with flame atomic absorption
spectrometry, RSC Adv., 4 (2014) 47396–47401.
- M. Tüzen, K.O. Saygi, M. Soylak, Novel solid phase extraction
procedure for gold(III) on Dowex M 4195 prior to its flame
atomic absorption spectrometric determination, J. Hazard.
Mater., 156 (2008) 591–595.
- S. Tong, Q. Jia, N. Song, W. Zhou, T. Duan, C. Bao, Determination
of gold(III) and palladium(II) in mine samples by cloud
point extraction preconcentration coupled with flame atomic
absorption spectrometry, Microchim. Acta, 172 (2011) 95–102.
- A.S. Amin, Utility of solid phase extraction for spectrophotometric
determination of gold in water, jewel and ore samples,
Spectrochim. Acta Part A, 77 (2010) 1054–1058.
- S. Tajik, M.A. Taher, New method for microextraction of ultra
trace quantities of gold in real samples using ultrasoundassisted
emulsification of solidified floating organic drops,
Microchim. Acta, 173 (2011) 249–257.
- H. Ashkenani, M.A. Taher, Use of ionic liquid in simultaneous
microextraction procedure for determination of gold and silver
by ETAAS, Microchem. J., 103 (2012) 185–190.
- D. Li, X. Chang, Z. Hu, Q. Wang, Z. Tu, R. Li, Selective
solid-phase extraction of trace Au (III), Pd (II) and Pt (IV)
using activated carbon modified with 2,6-diaminopyridine,
Microchim. Acta, 174 (2011) 131–136.
- S. Kagaya, D. Takata, T. Yoshimori, T. Kanbara, K. Tohda,
A sensitive and selective method for determination of gold(III)
based on electrothermal atomic absorption spectrometry in
combination with dispersive liquid-liquid microextraction using
dicyclohexylamine, Talanta, 80 (2010) 1364–1370.
- O. Sha, X. Zhu, Determination of gold(III) by simplified
room-temperature ionic liquid extraction with flame atomic
absorption spectrometry, Anal. Lett., 47 (2014) 1052–1062.
- Z. Bahadir, M. Yazar, E. Marguí, Ligandless surfactant-assisted
emulsification microextraction and total reflection X‑ray
fluorescence analysis for ıonic gold traces quantification in
aqueous samples and extracts containing gold nanoparticles,
Anal. Chem., 90 (2018) 14081–14087.