رزومه:

 

نام و نام خانوادگي: جعفر خادم­زاده يگانه

دانشیار دانشگاه صنعتی قم

عضو هیات مدیره انجمن رئولوژی ایران

شماره تماس: 09195347655

ایمیل:

jkh.yeganeh@gmail.com

khademzadeh@qut.ac.ir

آدرس صفحه گوگل اسکولار:

https://scholar.google.com/citations?user=LMmaJVUAAAAJ&hl=en

 

ü   سوابق تحصيلي

ü                  كارشناسي

رشته تحصيلي و گرايش: مهندسي پليمر-صنايع پليمر ، محل  تحصيل: دانشگاه صنعتي اميرکبير

عنوان پرو‍ژه: مطالعه نظري سطوح فوق آبگريز و فوق آبدوست  

 

ü                  كارشناسي ارشد

رشته تحصيلي و گرايش: مهندسي پليمر-صنايع پليمر ، محل  تحصيل: دانشگاه صنعتي اميرکبير

عنوان پایان نامه: مطالعه خواص ويسکوالاستيک خطی و  غير خطی آلياژ  PS/PVME  در مناطق فازی مختلف

 

ü                  دكتري

رشته تحصيلي و گرايش: مهندسي پليمر-صنايع پليمر ، محل  تحصيل: دانشگاه صنعتي اميرکبير

عنوان رساله: مطالعه رفتار فازي و ارتباط بين رئولوژي و ريزساختار در آميزه-هاي LCST با ديناميک نامتقارن در حضور نانو ذرات کروي با اصلاح سطحي هاي متفاوت: پلي استايرن/پلي (وينيل متيل اتر)

 

·     انجام فرصت مطالعاتي دوره دكتري در

Polymer Group of IESL-FORTH in Heraklion, Crete, Greece

 

ü   زمینه کاری:

ü      رئولوژی پلیمرها

ü      فرآيند و شكل دهي پليمرها

ü      شیمی فیزیک پلیمرها

ü      نانو کامپوزیت­ها

 

ü   سوابق تدریس:

ü      شکل‌دهی پیشرفته پلیمرها (کارشناسی ارشد)، آلیاژهای پلیمری (کارشناسی ارشد)، طراحی و ساخت قطعات لاستیکی (کارشناسی ارشد)، رئولوژی پیشرفته پلیمرها (کارشناسی ارشد)، رئولوژی پلیمرها (کارشناسی)، مهندسی الاستومرها (کارشناسی)، انتقال جرم (کارشناسی)

ü   جوایز و افتخارات علمی و پژوهشی:

ü     پژوهشگر برتر گروه مهندسی پلیمر در سال 94 در دانشگاه صنعتی قم

ü     پژوهشگر برتر دانشکده فنی مهندسی در سالهای 96 ،97 ، 1400  و 1404 در دانشگاه صنعتی قم

ü     پژوهشگر برتر در دهمین جشنواره پژوهش و فناوری صنعت، معدن و تجارت ۱۴۰۰

ü     انتخاب استاد سرآمد آموزشی دانشگاه صنعتی قم در سال 1401

 

ü   مسولیت ها:

رئیس دانشکده فنی مهندسی

مدیر گروه پلیمر

مدیر آموزش

مدیر تحصیلات تکمیلی

عضو هیات مدیره انجمن رئولوژی ایران

 

ü   طرح­های پژوهشی صنعتی:

1- بررسی ساختار قیمت تمام شده و ارائه راهکارهای افزایش بهره وری در صنایع منتخب استان قم جهت حمایت از کالای ایرانی با اولویت صنایع کفش و دمپایی و صنایع معدنی.

سازمان سفارش دهنده: سازمان صنعت، معدن و تجارت استان قم

 

2- مطالعه و بررسی فرمولاسیون و شرایط فرایندی بر خواص مقره های سیلیکونی مورد استفاده در صنعت برق

سازمان سفارش دهنده: شرکت بسپار سازه الوند

 

3- بررسي نرم کننده هاي مناسب جهت استفاده در صنعت PVC و پيشنهاد مواد جايگزين نرم کننده DOP

سازمان سفارش دهنده: سازمان صنعتف معدن و تجارت استان قم

 

4- بهبود چقرمگی و خواص الکتریکی پلی اتیلن با دانستیه بالا از طریق آلیاژ سازی با کوپلیمر اتیلن وینیل استات در حضور دوده

سازمان سفارش دهنده: دانشگاه صنعتی قم

5- بازیافت شیمیایی ضایعات پلی یورتان

سازمان سفارش دهنده: ایمن پلیمر

6- تاثیر نرم کننده های مختلف بر خواص فیزیکی مکانیکی PVC

سازمان سفارش دهنده: سامان پلیمر

 

ü   طرح نوآورانه منعقد شده با مرکز نوآوری دانشگاه:

تهیه نانوکامپوزیت های جاذب امواج الکترومغناطیس  بر پایه پليمرهای پلی پروپیلن /پلی اتیلن ترفتالات و نانو ذرات گرافن

 

ü   مقالات چاپ شده  در مجلات:

·                     Unravelling the influence of chitin nanowhisker and interphase aspects on the tensile modulus of polymer composites: A modeling approach. 

M Fotros, JK Yeganeh, M Naqvi, F Sharifianjazi, BH Soudmand, Y Zare.

Industrial Crops and Products 250, 123998, 2026.

https://www.sciencedirect.com/science/article/pii/S0926669026013865

 

  • Interpreting Electrical Conductivity for Carbon Nanofiber‐Polymer Systems by a Modeling Approach.

SK Arjmandi, J Khademzadeh Yeganeh, M Naqvi, Y Zare, KY Rhee, ..

Polymer Composites 47 (5), 4527-4540, 2026.

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pc.70443

 

  • Analysis of tunneling conductivity for MXene polymer system by the network of interphase: parametric examinations and experimental validation.

Z Hadi, JK Yeganeh, Y Zare, M Naqvi, KY Rhee, SJ Park.

Scientific Reports 15 (1), 39616, 2025.

https://www.nature.com/articles/s41598-025-23304-4

 

  • Interfacial stress transfer and nanoparticle size as key factors in the strength of hydroxyapatite-polymer dental nanocomposites.

 M Farajifard, JK Yeganeh, Y Zare, MT Munir, KY Rhee, SJ Park.

 Dental Materials, 2025.

https://www.sciencedirect.com/science/article/abs/pii/S0109564125007985

 

  • A model for effective conductivity of polymer nanocomposites containing MXene nanosheets

Z Hadi, JK Yeganeh, Y Zare, MT Munir, KY Rhee, SJ Park

Polymer Composites 46 (10), 8906-8918, 2025

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pc.29529

 

  • Preparation of PEO/PMMA nanocomposite based on functionalized graphene oxide as a solid polymer electrolyte film with high ionic conductivity: Statistical approach using …

MH Ahmadi, JK Yeganeh, I Ghasemi

Polymer Engineering & Science 65 (6), 2974-2989, 2025.

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pen.27192.

 

  • Predicting the strength in hydroxyapatite‐filled nanocomposites through advanced two‐phase modeling.

M Farajifard, J Khademzadeh Yeganeh, Y Zare, MT Munir, KY Rhee

Polymer Composites 45 (18), 17121-17133, 2024.

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pc.28956

 

  • Beyond conventional models: Innovative analysis of tensile strength for polymer hydroxyapatite nanocomposites.

M Farajifard, JK Yeganeh, Y Zare, MT Munir, KY Rhee

Colloids and Surfaces A: Physicochemical and Engineering Aspects 701, 134930, 2024.

https://www.sciencedirect.com/science/article/abs/pii/S0927775724017941

 

  • An innovative model for electrical conductivity of MXene polymer nanocomposites by interphase and tunneling characteristics.

Z Hadi, JK Yeganeh, MT Munir, Y Zare, KY Rhee

Composites Part A: Applied Science and Manufacturing 186, 108422, 2024.

https://www.sciencedirect.com/science/article/abs/pii/S1359835X24004196

 

  • Simulation of tensile strength for polymer hydroxyapatite nanocomposites by interphase and nanofiller dimensions

M Farajifard, JK Yeganeh, Y Zare, MT Munir, KY Rhee

Polymer Composites 45 (11), 10234-10245, 2024

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pc.28469

 

  • Largely toughened poly (lactic acid) fabricated by melt blending with thermoplastic polyurethane through interfacial compatibilization induced by simultaneous addition of …

S Haghjoo, J Khademzadeh Yeganeh, I Ghasemi

Polymers for Advanced Technologies 35 (7), e6514, 2024.

https://onlinelibrary.wiley.com/doi/abs/10.1002/pat.6514

 

  • Predicting of electrical conductivity for Polymer-MXene nanocomposites

Z Hadi, JK Yeganeh, Y Zare, MT Munir, KY Rhee

Journal of Materials Research and Technology 28, 4229-4238, 2024.

https://www.sciencedirect.com/science/article/pii/S2238785424000152

 

  • A Simple Model for Electrical Conductivity of Carbon Nanofiber Polymer Composites: Arjmandi, Yeganeh, Gharib, Zare and Rhee

SK Arjmandi, JK Yeganeh, N Gharib, Y Zare, KY Rhee

JOM 75 (9), 3365-3372, 2023.

https://link.springer.com/article/10.1007/s11837-023-05937-w

 

  • Effect of Nanoclay and Its Hybrid with Carbon Black on Physical and Mechanical Properties of Styrene Butadiene Rubber.

SA Mousavi, J Khademzadeh Yeganeh

Iranian Chemical Engineering Journal 22 (126), 66-81, 2023.

https://www.ijche.ir/article_149520.html?lang=en

  • Development of Kovacs model for electrical conductivity of carbon nanofiber–polymer systems

SK Arjmandi, J Khademzadeh Yeganeh, Y Zare, KY Rhee

Scientific reports 13 (1), 7, 2023.

https://www.nature.com/articles/s41598-022-26139-5

 

  • Physical and Mechanical Properties of Electrospun PLA Nanofibers in the Presence of Silicone Rubber Nanoparticles

MZS Mahdavi, YJ Khademzadeh, S Mazinani, MR Kalaee

Iranian Journal of Polymer Science and Technology 35 (5), 455-468, 2023.

http://jips.ippi.ac.ir/article_1936.html?lang=en

 

  • Modeling of electrical conductivity for polymer–carbon nanofiber systems

S Khalil Arjmandi, J Khademzadeh Yeganeh, Y Zare, KY Rhee

Materials 15 (19), 7041, 2022.

https://www.mdpi.com/1996-1944/15/19/7041

 

  • Highly crystallized and tough polylactic acid through addition of surface modified cellulose nanocrystals

AA Seraji, F Goharpey, J Khademzadeh Yeganeh

Journal of Applied Polymer Science 139 (37), e52871, 2022.

https://onlinelibrary.wiley.com/doi/abs/10.1002/app.52871

 

  • Synergistic toughening of poly (lactic acid)/poly (ethylene vinyl acetate)(PLA/EVA) by dynamic vulcanization and presence of hydrophobic nanoparticles

P Lohrasbi, JK Yeganeh

Polymers for Advanced Technologies 32 (11), 4326-4339, 2021.

https://onlinelibrary.wiley.com/doi/abs/10.1002/pat.5435

 

  • A highly toughened poly (lactic acid)/Ethylene-co-Vinyl acetate blend with the simultaneous addition of hydrophobic nanoparticles and Compatibilizer

Z Sadat Hoseini, J Khademzadeh Yeganeh, S Moradi

Iranian Journal of Polymer Science and Technology 33 (6), 509-524, 2021

http://jips.ippi.ac.ir/article_1778_en.html

 

  • Highly toughened poly (lactic acid)(PLA) prepared through melt blending with ethylene-co-vinyl acetate (EVA) copolymer and simultaneous addition of hydrophilic silica …

S Moradi, JK Yeganeh

Polymer Testing 91, 106735, 2020.

https://www.sciencedirect.com/science/article/abs/pii/S014294182031268X

 

  • Toughening of Poly (lactic acid)(PLA) through blending with Ethylene-co-Vinyl Acetate (EVA) Copolymer

P Lohrasbi, J Khademzadeh Yeganeh

Basparesh 10 (2), 26-36, 2020.

http://basparesh.ippi.ac.ir/article_1685_en.html?lang=en

 

  • Characterization and phase‐transition behavior of thermoresponsive PVME nanogels in the presence of cellulose nanowhiskers: Rheology, morphology, and FTIR studies

M Hadaeghnia, F Goharpey, J Khademzadeh Yeganeh

Polymer Engineering & Science 59 (5), 899-912, 2019.

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pen.25035

 

  • Highly conductive PP/PET polymer blends with high electromagnetic interference shielding performances in the presence of thermally reduced graphene nanosheets prepared through …

A Sadeghi, R Moeini, JK Yeganeh

Polymer Composites 40 (S2), E1461-E1469, 2019.

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pc.25051

 

  • Effect of Thermally-Reduced Graphene Nanoparticles on the Electromagnetic Interference Shielding Performance, Rheological Behavior and Thermal Stability of PP/PET Blend

R Moeini, A Sadeghi, J Khademzadeh Yeganeh

Iranian Journal of Polymer Science and Technology 31 (4), 319-330, 2018.

http://jips.ippi.ac.ir/article_1595_en.html

 

  • Preparation and characterization of modified SiO2 nanospheres with dichlorodimethylsilane and phenyltrimethoxysilane

Z Daneshfar, F Goharpey, J Khademzadeh Yeganeh

Materials Research Express 5 (9), 095005, 2018.

https://iopscience.iop.org/article/10.1088/2053-1591/aad4de/meta

 

Interplay between phase separation and dewetting in PS/PVME thin films: effect of temperature

R Khalesi Moghaddam, F Goharpey, J Khademzadeh Yeganeh

Soft matter 14 (32), 6684-6695, 2018.

https://pubs.rsc.org/sm/article-abstract/14/32/6684/623538/Interplay-between-phase-separation-and-dewetting

 

  • Effect of selective localization of cellulose nanowhiskers on viscoelastic phase separation

MA Sanjari Shahrezaei, F Goharpey, J Khademzadeh Yeganeh

Polymer Engineering & Science 58 (6), 928-942, 2018.

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/pen.24648

 

  • Effect of Nanocellulose on Phase Behavior of Off-Critical PS/PVME Blend

SMA Sanjari, F Goharpey, YJ KHADEMZADEH

Iranian Journal of Polymer Science and Technology 30 (6), 531-545, 2018.

http://jips.ippi.ac.ir/article_1535.html?lang=en

 

  • Dynamics of nucleation and growth mechanism in the presence of nanoparticles or block copolymers: polystyrene/poly (vinyl methyl ether)

JK Yeganeh

Polymer Bulletin 75 (1), 1-15, 2018.

https://link.springer.com/article/10.1007/s00289-017-2016-0

 

  • Physical and mechanical properties of chlorosulfonated pe (CSPE)/Organoclay nanocomposites compatibilized with epoxidized natural rubber

M Sahami, M Kalaee, A Aghili, S Mazinani, JK Yeganeh

Journal of Vinyl and Additive Technology 23, E180-E187, 2017.

https://4spepublications.onlinelibrary.wiley.com/doi/abs/10.1002/vnl.21564

 

  • Viscoelastic phase separation of polystyrene/poly (vinyl methyl ether) blends with different dynamic asymmetry

H Abbasi, F Goharpey, J Khademzadeh Yeganeh

Journal of Rheology 61 (4), 667-682, 2017.

https://pubs.aip.org/sor/jor/article-abstract/61/4/667/398679/Viscoelastic-phase-separation-of-polystyrene-poly?redirectedFrom=fulltext

 

  • Volume phase transition of electron beam cross-linked thermo-responsive PVME nanogels in the presence and absence of nanoparticles: with a view toward rheology and interactions

AS Chaykar, F Goharpey, J Khademzadeh Yeganeh

RSC Advances 6 (12), 9693-9708, 2016

https://pubs.rsc.org/ra/article-abstract/6/12/9693/499561/Volume-phase-transition-of-electron-beam-cross

 

  • Controlling the Kinetics of Spinodal Decomposition in LCST PS/PVME Blends in Presence of Spherical Nanoparticles

Jafar Khademzadeh Yeganeh, Fatemeh Goharpey, Reza Foudazi

Iran. J. Polym. Sci. Technol. (Persian),

Vol. 28, No. 4, 277-288, 1394.

http://jips.ippi.ac.ir/article_1283.html

 

  • Manipulating the kinetics and mechanism of phase separation in dynamically asymmetric LCST blends by nanoparticles

J Khademzadeh Yeganeh, F Goharpey, E Moghimi, G Petekidis, ...

Physical Chemistry Chemical Physics 17 (41), 27446-27461, 2015.

https://pubs.rsc.org/cp/article-abstract/17/41/27446/473276/Manipulating-the-kinetics-and-mechanism-of-phase

 

  • Anomalous phase separation behavior in dynamically asymmetric LCST polymer blends

JK Yeganeh, F Goharpey, R Foudazi

RSC advances 4 (25), 12809-12825, 2014.

https://pubs.rsc.org/ra/article-abstract/4/25/12809/415869/Anomalous-phase-separation-behavior-in-dynamically

 

  • Controlling the Kinetics of Spinodal Decomposition in LCST PS/PVME Blends in Presence of Spherical Nanoparticles

YJ KHADEMZADEH, F Goharpey, R FOUDAZI, 2015.

Jafar Khademzadeh Yeganeh; Fatemeh Goharpey; Reza Foudazi

http://jips.ippi.ac.ir/article_1283.html?lang=en

 

  • Controlling the kinetics of viscoelastic phase separation through self-assembly of spherical nanoparticles or block copolymers

JK Yeganeh, F Goharpey, E Moghimi, G Petekidis, R Foudazi, Soft matter, 2014.

https://pubs.rsc.org/sm/article-abstract/10/46/9270/458015/Controlling-the-kinetics-of-viscoelastic-phase

 

  • Can only rheology be used to determine the phase separation mechanism in dynamically asymmetric polymer blends (PS/PVME)?

JK Yeganeh, F Goharpey, R Foudazi, RSC Advances, 2012.

https://pubs.rsc.org/ra/article-abstract/2/21/8116/382690/Can-only-rheology-be-used-to-determine-the-phase

 

  • Rheology and morphology of dynamically asymmetric LCST blends: polystyrene/poly (vinyl methyl ether)

J Khademzadeh Yeganeh, F Goharpey, R Foudazi

Macromolecules 43 (20), 8670-8685, 2010.

https://pubs.acs.org/mamobx/article-abstract/43/20/8670/1345566/Rheology-and-Morphology-of-Dynamically-Asymmetric

 

  • Recycled HIPS and nanoclay in improvement of cement mortar properties

JK Yeganeh, M Sadighi, H Kourki

Malaysian Polymer Journal 3 (2), 32-38, 2008.

 

  • Physical and Mechanical Properties of Electrospun PLA Nanofibers in the Presence of Silicone Rubber Nanoparticles

ZSM Moghadam, JK Yeganeh, S Mazinani, MR Kalaee

Iran. J. Polym. Sci. Technol. (Persian),

Vol. 35, No. 5, 455-468

http://jips.ippi.ac.ir/article_1936.html?lang=en

 

                       

 

 

ü   مقالات ارائه شده  دركنفرانس‌ها:

Ø     ارائه بیش از پنجاه مقاله در کنفرانس های ملی و بین الملی معتبر

ü   استاد راهنما و مشاور 20 دانشجوی ارشد و دکتری

ü   داور مجلات ISI:

Ø  Colloid and Polymer Science

Ø  synthetic metals

Ø  Polymers for Advanced Technologies

Ø  Polymer-Plastics Technology and Engineering

Ø  Polymer Testing

Ø  Polymer Composites

Ø  Journal of Vinyl and Additive Technology

Ø  Journal of Industrial Textile

Ø  Journal of Elastomers and Plastics

Ø  Journal of Composite Materials

Ø  High Performance Polymers

Ø  Computational Materials Science

Ø  Colloid and Polymer Science

Ø  Composites Part B

Ø  polymer bulletin

Ø  Journal of Physics and Chemistry of Solids

Ø  International Journal of Polymer Science

Ø  Chemical Methodologies

Ø  Iranian Polymer Journal

Ø  Journal of the Mechanical Behavior of Biomedical Materials

Ø  Journal of Polymer Science, Part B Polymer Physics

Ø  Journal of Biomedical Materials Research Part A

Ø  applied clay

Ø High Performance Polymers

 

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