Hi, I am Mohammad Hossein Ahmadi Azqhandi, My LiveDNA is 98.17841
 
   
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Dr. Mohammad Hossein Ahmadi Azqhandi
 
Highest Degree: Ph.D. in Analytical Chemistry from Imam Khomeini International University, Iran
 
Institute: Yasouj University, Iran
 
Area of Interest: Molecular Sciences
  •   Drug Delivery
  •   Thermodynamic Properties
  •   Physical Chemistry
  •   Analytical Chemistry
 
URL: http://livedna.org/98.17841
 
My SELECTED Publications
1:   Asfaram, A., M. Ghaedi, M.H.A. Azqhandi, A. Goudarzi and M. Dastkhoon, 2016. Statistical experimental design, least squares-support vector machine (LS-SVM) and artificial neural network (ANN) methods for modeling the facilitated adsorption of methylene blue dye. RSC Adv., 6: 40502-40516.
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2:   Asfaram, A., M. Ghaedi, M.H.A. Azqhandi, A. Goudarzi and S. Hajati, 2017. Ultrasound-assisted binary adsorption of dyes onto Mn@ CuS/ZnS-NC-AC as a novel adsorbent: Application of chemometrics for optimization and modeling. J. Ind. Eng. Chem., 54: 377-338.
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3:   Azad, F.N., M. Ghaedi, A. Asfaram, A. Jamshidi and G. Hassani, et al., 2016. Optimization of the process parameters for the adsorption of ternary dyes by Ni doped FeO(OH)-NWs–AC using response surface methodology and an artificial neural network. RSC Adv., 6: 19768-19779.
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4:   Azghandi, M.H.A. and M.R. Khanmohammadi, 2012. Introducing doolittle multivariate calibration algorithm for infrared spectrometric determination of sttp, ss, and sc in iranian washing powder. Green Chem. Lett. Rev., 5: 415-420.
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5:   Azqhandi, M.H.A. B.V. Farahani and N. Dehghani, 2017. Encapsulation of methotrexate and cyclophosphamide in interpolymer complexes formed between poly acrylic acid and poly ethylene glycol on multi-walled carbon nanotubes as drug delivery systems. Mater. Sci. Eng. C. Mater. Biol. Appl., 79: 841-847.
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6:   Azqhandi, M.H.A. M. Ghaedi, F. Yousefi and M. Jamshidi, 2017. Application of random forest, radial basis function neural networks and central composite design for modeling and/or optimization of the ultrasonic assisted adsorption of brilliant green on ZnS-NP-AC. J. Colloid. Interface Sci., 505: 278-292.
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7:   Azqhandi, M.H.A., F.H. Rajabi and M. Keramati, 2017. Synthesis of Cd doped ZnO/CNT nanocomposite by using microwave method: Photocatalytic behavior, adsorption and kinetic study. Results in Phys., 7: 1106-1114.
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8:   Azqhandi, M.H.A., M.R. Khanmohammadi, B.V. Farahani and R. Najafipour, 2016. Biotin-encoded and fe3o4-loaded polymeric nano micelles: Preparation, optimization and in vitro characterization. Lett. Drug Design Discovery, 10: 1015-1023.
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9:   Dastkhoon, M., M. Ghaedi, A. Asfaram, M.H.A. Azqhandi and M.K. Purkait, 2017. Simultaneous removal of dyes onto nanowires adsorbent use of ultrasound assisted adsorption to clean waste water: Chemometrics for modeling and optimization, multicomponent adsorption and kinetic study. Chem. Eng. Res. Design, 124: 222-237.
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10:   Farahani, B.V., F.H. Rajabi, M.H. Ahmadi and N. Zenooz, 2012. Qualitative investigation on some h–bonded interpolymer complexes by determination of thermodynamic parameters. J. Mex. Chem. Soc., 56: 212-216.
11:   Igder, A., A.A. Rahmani, A. Fazlavi, M.H.A. Azqhandi and M.H. Omidi, 2012. Box-behnken design of experiments investigation foradsorption of cd2+ onto carboxymethyl chitosan magnetic nanoparticles. J. Mining Environ., 3: 51-59.
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12:   Keshavarz, M., N. Iravani, M.H.A. Azqhandi and S. Nazari, 2016. Ion-pair immobilization of l-prolinate anion onto cationic polymer support and a study of its catalytic activity as an efficient heterogeneous catalyst for the synthesis of 2-amino-4H-chromene derivatives. Res. Chem.l Intermed., 42: 4591-4604.
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13:   Khanmohammadi, M. and M.A. Azghandi, 2012. Introducing a multivariate calibration method based on iterative methods in predication of components concentration in chemical systems with high overlapping ATR-FTIR spectra. J. Spectrosc. Dyn., .
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14:   Khanmohammadi, M.R. and M. Azqhandi, 2011. Introducing an orthogonal-triangular decomposition algorithm and its application in multivariate calibration. Anal. Methods, 3: 2721-2725.
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15:   Khanmohammadi, M.R. and M.A. Azghandi, 2011. Application of doolittle algorithm as a multivariate calibration method for infrared spectrometric determination of some ingredients in detergent washing powder. Anal. Chem. Lett., 1: 202-206.
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16:   Khanmohammadi, M.R. and M.H.A. Azghandi, 2012. Application of QR decomposition algorithm for multivariate Calibration in high overlapping systems. Int. J. Rapid Commun., 45: 269-272.
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17:   Khanmohammadi, M.R., M.H.A. Azqhandi, B.V. Farahani and R. Najafipourb, 2013. Methoxy poly(ethylene glycol)-block-polycaprolactone copolymer: formulation and optimization by experimental design; determination of diblock molar mass by multivariate regression analysis of 1H NMR spectra. Anal. Methods, 5: 2840-2847.
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18:   Mazaheri, H., M. Ghaedi, M.H.A. Azqhandi and A. Asfaram, 2017. Application of machine/statistical learning, artificial intelligence and statistical experimental design for the modeling and optimization of methylene blue and Cd(II) removal from a binary aqueous solution by natural walnut carbon. Phys. Chem. Chem. Phys., 19: 11299-11317.
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19:   Omidi, M.H., F.N. Azad, M. Ghaedi, A. Asfaram, M.H.A. Azqhandi and L. Tayebi, 2017. Synthesis and characterization of Au-NPs supported on carbon nanotubes: Application for the ultrasound assisted removal of radioactive UO22+ ions following complexation with Arsenazo III: Spectrophotometric detection, optimization, isotherm and kinetic study. J. Colloid Interface Sci., 504: 68-77.
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20:   Porhemmat, S., M. Ghaedi, A.R. Rezvani, M.H.A. Azqhandi and A.A. Bazrafshan, 2017. Nanocomposites: Synthesis, characterization and its application to removal azo dyes using ultrasonic assisted method: Modeling and optimization. Ultrason Sonochem., 38: 530-543.
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21:   Solaymani, E., M. Ghaedi, H. Karimi, A. Azqhandi, M. Hossein and A. Asfaram, 2017. Intensified removal of Malachite green by AgOH-AC nanoparticles combined with ultrasound: Modeling and optimization. Applied Organomet. Chem., .
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22:   Vasheghani, B.F., F.H. Rajabi and M.H. Ahmadi, 2007. Influence of solvent on thermodynamic parameters and stability of some multicomponent polymer complexes involving an acrylic polymer, poly (ethylene imine) and poly (vinyl pyrrolidone). Polymer Bull., 58: 553-563.
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23:   Vasheghani, B.F., F.H. Rajabi and M.H. Ahmadi, 2007. Thermodynamic studies on some multicomponent intermacromolecular complexes of varying composition involving an acrylic polymer, a polyelectrolyte and a nonionic polymer. J. Polymer Plastics Technol. Eng., 46: 157-161.
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24:   Vasheghani, B.F., F.H. Rajabi and M.H. Ahmadi, 2008. Investigation on thermodynamic parameters and stability of some polyelectrolyte complexes with respect to ionic strength of the medium. Polymer Bull., .
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25:   Vasheghani, B.F., F.H. Rajabi, M.H. Ahmadi and N. Zenooz, 2011. Effect of various types of interaction on the stability of some ternary interpolymer complexes involving poly(ethylene imine), poly(acrylic acid) and poly(ethylene glycol). Polymer Int., 60: 279-283.
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26:   Vasheghani, B.F., F.H. Rajabi, M.H. Ahmadi and S. Nouhi, 2005. Stability constants and thermodynamic parameters of some intermacromolecular complexes in relation to their specific interaction forces. Polymer Bull., 55: 437-445.
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27:   Vasheghani, B.F., F.H. Rajabi, M.H. Ahmadi and S. Nouhi, 2006. Stability and thermodynamic parameters of some selective intermacromolecular complexation. Polymer Bull., 56: 395-404.
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