[1] Sharma N., Jain A., Singh V. K., Verma K. K. (2015) Solid-phase extraction combined with headspace single-drop microextraction of chlorophenols as their methyl ethers and analysis by high-performance liquid chromatography-diode array detection. Talanta, 83(3), 994-9.
[2] Li D., Oh J. R., Park J. (2003) Direct extraction of alkylphenols, chlorophenols and bisphenol A from acid-digested sediment suspension for simultaneous gas chromatographic–mass spectrometric analysis. J. Chromatogr. A, 1012(2), 207-214.
[3] Saraji M., Ghani M. (2015) Hollow fiber liquid–liquid–liquid microextraction followed by solid-phase microextraction and in situ derivatization for the determination of chlorophenols by gas chromatography-electron capture detection. J. Chromatogr. A, 1418, 45-53.
[4] Makuch B., Gazda K., Kamiski M. (1993) Determination of phenol and monochlorophenols in water by reversed-phase liquid chromatography. Anal. Chim. Acta, 284, 53-58.
[5] Crespin M. A., Gallego M., Valcarcel M. (2002) Solid-phase extraction method for the determination of free and conjugated phenol compounds in human urine. J. Chromatogr. B, 773(2), 89-96.
[6] Xiao Q., Hu B., Yu C., Xia L., Jiang Z. (2006) Optimization of a single-drop microextraction procedure for the determination of organophosphorus pesticides in water and fruit juice with gas chromatography-flame photometric detection. Talanta, 69 (4), 848-855.
[7] Mirzaei, N., Rezaei, V., Aibaghi, B. (2019). Preconcentration and determination of diazepam in pharmaceutical and biological samples by graphene oxide based on dispersive solid phase microextraction. Applied Chemistry, 14(51), 21-34. (in persion)
[8] Fathi, M., Rajabi, H. R., Khajehsharifi, H., Gorjizadeh Kohvadeh, A. Application of liquid-liquid microextraction based on deep eutectic solvent for preconcentration and spectrophotometric determination of purpurin. Applied Chemistry, (Articles in Press), (in persion), doi: 10.22075/CHEM.2023.28461.2107
[9] Sorouraddin, S. M., Asadpour-Zeynali, K., Fathollahi, I. (2019). Development of a green dispersive liquid-liquid microextraction method using a home-made tablet disperser for extraction and preconcentration of Co (II) and Ni(II) from high volume aqueous samples. Applied Chemistry, 14(50), 139-154. (in persion)
[10] Bagheri H., Mir A., Babanezhad E. (2005) An electropolymerized aniline-based fiber coating for solid phase microextraction of phenols from water. Anal. Chim. Acta, 532, 89-95.
[11] Psillakis E., Kalogerakis N. (2003) Developments in liquid-phase Microextraction. Trends Anal. Chem, 22(10), 565-574.
[12] Helena P., Locita I. K. (1999) Solid-phase microextraction. Trends Anal. Chem, 18(4), 272-282.
[13] Lee H.R., Cho S.M., Kim J., Chung D.S. (2014) Novel and simple headspace in-tube microextraction coupled with capillary electrophoresis. J. Chromatogr. A, 1346, 117-122.
[14] Galan-Cano F., Lucena R., Cardenas S., Valcarcel M. (2012) Ionic liquid based in situ solvent formation microextraction coupled to thermal desorption for chlorophenols determination in waters by gas chromatography/mass spectrometry. J. Chromatogr. A, 1229, 48-54.
[15] Chien R.L., Burgi D. S. (1991) Field amplified sample injection in high-performance capillary electrophoresis. J. Chromatogr. A, 559(1–2), 141-152.
[16] Křivánková L., Pantůčková P., Boček P. (1999) Isotachophoresis in zone electrophoresis. J. Chromatogr. A, 838(1–2), 55-70.
[17] Park S. T., Kim J., Choi K., Lee H. R., Chung D. S. (2012) Headspace-single drop microextraction with a commercial capillary electrophoresis instrument. Electrophoresis, 33, 2961-2968.
[18] Es’haghi Z. (2011) Extraction and Determination of Three Chlorophenols by Hollow Fiber Liquid Phase Microextraction - Spectrophotometric Analysis, and Evaluation Procedures Using Mean Centering of Ratio Spectra Method. Am. J. Analyt. Chem, 2, 1-8.
[19] Lou D.-W., Lee X., Pawliszyn J. (2008) Extraction of formic and acetic acids from aqueous solution by dynamic headspace-needle trap extraction: Temperature and pH optimization. J. Chromatogr. A, 1201(2), 228-234.
[20] Cho S.M., Park B.S., Jung W.S., Lee S.W., Jung Y., Chung D.S. (2016) Headspace in-tube microextraction coupled with micellar electrokinetic chromatography of neutral aromatic compounds. Talanta, 148, 729–733.
[21] George M. J., Marjanovic L., Williams D. B. G. (2015) Solvent-Assisted Headspace Sampling Using Solid Phase Microextraction for the Analysis of Phenols in Water. Anal. Chem, 87, 9559-9562.
[22] An Y., Ma W., Row K.H. (2020) Preconcentration and determination of chlorophenols in wastewater with dispersive liquid–liquid microextraction using hydrophobic deep eutectic solvents. Anal. Lett. 53, 262–272.
[23] Firouzy M., Hashemi P. (2023) Ionic Liquid-Based Magnetic Needle Headspace Single-Drop Microextraction Combined with HPLC/UV for the Determination of Chlorophenols in Wastewater. J. Chromatogr. Sci. 61, 743-749.
[24] Ma W., Row K.H. (2018) Solid-phase extraction of chlorophenols in seawater using a magnetic ionic liquid molecularly imprinted polymer with incorporated silicon dioxide as a sorbent. J. Chromatogr. A 1559, 78–85.
[25] Portillo M., Prohibas N., Salvadó V., Simonet B. (2006) Vial position in the determination of chlorophenols in water by solid phase microextraction. J. Chromatogr. A 1103, 29–34.
[26] Zhao L., Lee H.K. (2001) Determination of phenols in water using liquid phase microextraction with back extraction combined with high performance liquid chromatography. J. Chromatogr. A 931, 95–105.
[27] Gonzalez-Toledo E., Prat M., Alpendurada M. (2001) Solid-phase microextraction coupled to liquid chromatography for the analysis of phenolic compounds in water. J. Chromatogr. A 923, 45–52.