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Articles

Ultrasonication ionic liquid-based dispersive liquid–liquid microextraction of palladium in water samples and determination of microsampler system-assisted FAAS

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Pages 2686-2691 | Received 12 Jul 2013, Accepted 15 Nov 2013, Published online: 04 Dec 2013

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Read on this site (3)

Saeed Mohammad Sorouraddin, Mir Ali Farajzadeh, Maryam Hassanzadeh & Tohid Okhravi. (2023) Comparison of different microextraction based sample preparation methods for Pt (IV) and Pd (II) ions in environmental water samples followed by flame atomic absorption spectrometry. International Journal of Environmental Analytical Chemistry 103:18, pages 6242-6259.
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Natalia Campillo, Pilar Viñas, Jana Šandrejová & Vasil Andruch. (2017) Ten years of dispersive liquid–liquid microextraction and derived techniques. Applied Spectroscopy Reviews 52:4, pages 267-415.
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Articles from other publishers (11)

Wael I. Mortada, Ebaa A. Azooz & Mohamed M. Hassanien. (2024) In-syringe low-density solvent dispersive liquid–liquid microextraction of Pd(II) from acidic solutions resulting from hydrometallurgical treatments and quantification by ICP-OES. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 305, pages 123462.
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Wael I. Mortada. (2023) Effective preconcentration of palladium and platinum via dispersive liquid–liquid microextraction based on the solidification of floated organic drop. Journal of the Iranian Chemical Society 20:5, pages 1023-1029.
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Ozra Alimohammadi, Majid Ramezani, Rassoul Noorossana & Mohammad Alimoradi. (2019) Utilization of a robust syringe-to-syringe displacement-assisted dispersive liquid-phase microextraction to the preconcentration and determination of palladium in environmental samples with the aid of experimental design. Journal of the Iranian Chemical Society 17:1, pages 167-176.
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Elnaz Koosha, Majid Ramezani & Ali Niazi. (2019) Optimization of Air-assisted Liquid–liquid Microextraction by Box–behnken Design for Spectrophotometric Determination of Palladium in Water Samples. Journal of Analytical Chemistry 74:11, pages 1073-1080.
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Nursu Aylin Kasa, Sabriye Sel, Betül Çiçek Özkan & Sezgin Bakırdere. (2019) Determination of palladium in soil samples by slotted quartz tube-flame atomic absorption spectrophotometry after vortex-assisted ligandless preconcentration with magnetic nanoparticle–based dispersive solid-phase microextraction. Environmental Monitoring and Assessment 191:11.
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Merve Fırat & Emine Gülhan Bakırdere. (2019) An accurate and sensitive analytical strategy for the determination of palladium in aqueous samples: slotted quartz tube flame atomic absorption spectrometry with switchable liquid–liquid microextraction after preconcentration using a Schiff base ligand. Environmental Monitoring and Assessment 191:3.
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Mohammad Behbahani, Fariborz Omidi, Masoud Ghanbari Kakavandi & Ghasem Hesam. (2017) Selective and sensitive determination of silver ions at trace levels based on ultrasonic‐assisted dispersive solid‐phase extraction using ion‐imprinted polymer nanoparticles. Applied Organometallic Chemistry 31:11.
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Shahram Seidi. (2017) Dissolved carbon dioxide flotation-assisted in-syringe dispersive liquid–liquid microextraction coupled with microsampling flame atomic absorption spectrometry for selective determination of palladium in water samples. Journal of the Iranian Chemical Society 14:6, pages 1159-1167.
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Luthando Nyaba, N. Raphael Biata, J. Catherine Ngila & Philiswa N. Nomngongo. (2017) Ultrasound assisted-ionic liquid-dispersive liquid-liquid microextraction for preconcentration of inorganic tellurium in environmental water samples prior to inductively coupled plasma ? Optical emission spectrometry detection. Journal of Molecular Liquids 231, pages 154-159.
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Naeemullah, Tasneem Gul Kazi & Mustafa Tuzen. (2016) Development of novel simultaneous single step and multistep cloud point extraction method for silver, cadmium and nickel in water samples. Journal of Industrial and Engineering Chemistry 35, pages 93-98.
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Mustafa Tuzen & Ozlem Zeynep Pekiner. (2015) Ultrasound-assisted ionic liquid dispersive liquid–liquid microextraction combined with graphite furnace atomic absorption spectrometric for selenium speciation in foods and beverages. Food Chemistry 188, pages 619-624.
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