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Journal papars

 

 

37.    M.T. Jafari, M. Saraji and M. Mossaddegh, “Mitigation of solvent interference using a short packed column prior to ion mobility spectrometryTalanta, 167 (2017) 486–492.

 

36.    M. Saraji, M.T. Jafari, and M. Mossaddegh, “Chemically modified halloysite nanotubes as a solid–phase microextraction coatingOAnal. Chim. Acta, 964 (2017) 85–95.

 

35.    M.T. Jafari, M. Jafarian and H. Sherafatmand, “Determination of diazinon in apple juice and underground water using dispersive liquid-liquid microextraction coupled with corona discharge ion mobility spectroscopy” Nashrieh Shimi va Mohandesi Shimi Iran (NSMSI), 36 (2017) xxx-xxx.

 

34.    K. Azadkish, M.T. Jafari and H.S.. Ghaziaskar, “Performance evaluation of oxygen adsorbents using negative corona dischargeeion mobility spectrometryAnal. Chim. Acta, 953 (2017) 32–39.

 

33.    T. Zargar, T. Khayamian and M.T. Jafari, “Immobilized aptamer paper spray ionization source for ion mobility spectrometry” J. Pharm. Biomed. Anal., 132 (2017) 232–237.

 

32.    M.T. Jafari, M. Saraji and M. Mossaddegh, “Combination of dispersive liquid–liquid microextraction andsolid–phase microextraction: An efficient hyphenated samplepreparation methodJ. Chromatogr. A, 1466 (2016) 50–58.

 

31.    M. Saraji, M.T. Jafari and M. Mossaddegh, “Halloysite nanotubes-titanium dioxide as a solid-phase microextraction coating combined with negative corona discharge-ion mobility spectrometry for the determination of parathionAnal. Chim. Acta, 926 (2016) 55–62.

 

30.    M. Saraji, M.T. Jafari and M. Mossaddegh, “Carbon nanotubes@silicon dioxide nanohybrids coating forsolid-phase microextraction of organophosphorus pesticides followedby gas chromatography–corona discharge ion mobility spectrometricdetectionJ. Chromatogr. A, 1429 (2016) 30–39.

 

29.    M.T. Jafari, M. Saraji, and H. Sherafatmand, “Towards metals analysis using corona discharge ionization ion mobility spectrometryAnal. Chim. Acta, 909 (2016) 84–90.

 

28.    Amir Ebrahimi and Mohammad T. Jafari, “Negative corona discharge–ion mobility spectrometry as a detection system for low density extraction solvent–based dispersive liquid–liquid microextractionTalanta, 134 (2015) 724–731.

 

27.     M. Saraji, M.T. Jafari and H. Sherafatmand, “Sol-gel/ nanoclay composite as a solid-phase microextraction fiber coating for the determination of organophosphorus pesticides in water samplesAnal. Bioanal. Chem., 407 (2015) 1241–1252.

 

26.     Mohammad T. Jafari, M. Saraji and A. H. Ameri, “Coupling of solidphase microextraction with electrospray ionization ion mobility spectrometry and direct analysis of venlafaxine in human urine and plasmaAnal. Chim. Acta, 853 (2015) 460–468.

 

25.     Mohammad T. Jafari and Farhad Riahi, “Feasibility of corona discharge ion mobility spectrometry for direct analysis of samples extracted by dispersive liquid–liquid microextractionJ. Chromatogr. A, 1343 (2014) 63–68.

 

24.     M.T. Jafari, M. Saraji and H. Sherafatmand, “Polypyrrole/montmorillonite nanocomposite as a new solid phasemicroextraction fiber combined with gas chromatography–coronadischarge ion mobility spectrometry for the simultaneousdetermination of diazinon and fenthion organophosphorus pesticides”, Anal. Chim. Acta, 814 (2014) 69–78.

 

23.     M.T. Jafari, M. Kamfirozi, E. Jazan and S. M. Ghoreishi “Selective extraction and analysis of pioglitazone in cow plasma using a molecularly imprinted polymer combined with ESI ion mobility spectrometryJ. Sep. Sci., 37 (2014) 573–579.

 

22.     M.T. Jafari, M. Saraji and H. Sherafatmand, “Design for Gas ChromatographyCorona DischargeIon Mobility Spectrometry”, Anal. Chem., 84 (2012) 10077–10084.

 

21.     M. Saraji, N. Mehrafza, A.A. Hajialiakbari Bidgoli, and M.T. Jafari, “Determination of desipramine in biological samples using liquid-liquid-liquid microextraction combined with in-syringe derivatization, gas chromatography, and nitrogen/phosphorus detectionJ. Sep. Sci., 35 (2012) 2637–2644.

 

20.     M.T. Jafari, Z. Badihi and E. Jazan, “A new approach to determine salicylic acid in human urine and blood plasma based on negative electrospray ion mobility spectrometry after selective separation using a molecular imprinted polymerTalanta, 99 (2012) 520–526.

 

19.     M.T. Jafari, M. Saraji and S. Yousefi, “Negative electrospray ionization ion mobility spectrometry combined with microextraction in packed syringe for direct analysis of phenoxyacid herbicides in environmental watersJ. Chromayogr. A, 1249 (2012) 41–47.

 

18.     M.T. Jafari, F. Torki and M. Saraji, “Simultaneous Determination of Nitrite and Nitrate in Potato and Water Samples using Negative Electrospray Ionization Ion Mobility Spectrometry”, Anal. Sci., 28 (2012) 391–395.

 

17.     M.T. Jafari, M. Saraji and H. Sherafatmand, “Electrospray ionization-ion mobility spectrometry as a detection system for three-phase hollow fiber microextraction technique and simultaneous determination of trimipramine and desipramine in urine and plasma samples”, Anal. Bioanal. Chem., 399 (2011) 3555–3564.

 

16.     M.T. Jafari, “Low Temperature Plasma Ionization Ion Mobility Spectrometry (LTP-IMS)”, Anal. Chem., 83 (2011) 797–803.

         

15.     M.T. Jafari, B. Rezaei and M. Javaheri, “A New Method Based on Electrospray Ionization Ion Mobility Spectrometry (ESI-IMS) for Simultaneous Determination of Caffeine and Theophylline”, Food Chem., 126 (2011) 1964–1970.

 

14.     B. Rezaei, M.T. Jafari, and O. Rahmanian, “Selective pretreatment and determination of phenazopyridine using an imprinted polymer-electrospray ionization ion mobility spectrometry system”,Talanta, 83 (2011) 765–769.

 

13.    M.T. Jafari and M. Javaheri, “Selective method based on negative electrospray ionization ion mobility spectrometry (ESI-IMS) for direct analysis of salivary thiocyanate”, Anal. Chem., 82 (2010) 6721–6725.

        

12.    M. Saraji, M.T. Jafari, and H. Sherafatmand, “Hollow fiber-based liquid-liquid-liquid microextraction combined with electrospray ionization-ion mobility spectrometry for the determination of pentazocine in biological samples”, J. Chromatogr. A, 1217 (2010) 5173–5178.

 

11.    B. Rezaei, M.T. Jafari, and R. Khademi, “Selective separation and determination of primidone in the pharmaceutical and human serum samples using molecular imprinted polymer-electrospray ionization ion mobility spectrometry (MIP-ESI-IMS)”, Talanta, 79 (2009) 669–675.

 

10.    M.T. Jafari, B. Rezaei and B. Zaker, “Ion Mobility spectrometry as a detector for molecular imprinted polymer separation and metronidazole determination in pharmaceutical and human serum samples”, Anal. Chem., 81 (2009) 3585-3591.

 

9.      M.T. Jafari, and T. Khayamian, “Simultaneous determination of 2-furfural and 5-methyl-2-furfural using corona discharge ion mobility spectrometry”, Anal. Sci., 25 (2009) 801–805.

 

8.      M.T. Jafari, “Improved design for high resolution electrospray ionization ion mobility spectrometry”, Talanta, 77 (2009) 1632–1639.

 

7.      M.T. Jafari, and T. Khayamian, "Direct determination of ammonia nitrogen in water samples using corona discharge ion mobility spectrometry", Talanta, 76 (2008) 1189-1193.

 

6.      T. Khayamian, and M.T. Jafari, "Design for electrospray ionization-ion mobility spectrometry", Anal. Chem., 79 (2007) 3199-3205.

 

5.      M.T. Jafari, T. Khayamian, V. Shaer, and N. Zarei, "Determination of veterinary drug residues in chicken meat using corona discharge ion mobility spectrometry", Anal. Chim. Acta, 581 (2007) 147-153.

 

4.      M.T. Jafari, and M. Azimi, "Analysis of sevin, amitraz and metalaxyl pesticides using ion mobility spectrometry", Anal. Lett., 39 (2006) 2061-2071.

 

3.      M.T. Jafari, "Determination and identification of malathion, ethion and dichlorovos using ion mobility spectrometry", Talanta, 69 (2006) 1054-1058.

 

2.      T. Khayamian, M. Tabrizchi, and M.T. Jafari, "Quantitative analysis of morphine and noscapine using corona discharge ion mobility spectrometry with ammonia reagent gas", Talanta, 69 (2006) 795-799.

 

1.      T. Khayamian, M. Tabrizchi, and M.T. Jafari, "Analysis of 2,4,6-trinitrotoluene, pentaerythritol tetranitrate and cyclo-1,3,5-trimethylene-2,4,6- trinitramine using negative corona discharge ion mobility spectrometry", Talanta, 59 (2003) 327-333.