دوكتور تۇردىمۇھەممەد ئابدۇللاھ
دوكتور تۇردىمۇھەممەد ئابدۇللاھنىڭ نەشر قىلىنغان ئەمگەكلىرى

ئىلمىي ئەسەرلەر ۋە تەتقىقات ماقالىلىرى

بىئوماتېرىياللار، 3D/4D بىيوبېسىش، ئەقلىي ئىقتىدارلىق گېللار، ئېلېكترو-ئېگىرىش (electrospinning) ۋە نانوتېخنىكا ساھەسىدىكى كۆرسەتكۈچلىك خەلقئارالىق تەقرىزلىك ماقالىلەر ۋە ئامېرىكا پاتېنتلىرى (USPTO).

47نەشر
ئومۇمىي نەشر ئەسەرلىرىپۈتۈن تەتقىقات ئەسەرلىرى
15USPTO
USPTO پاتېنتلىرىتەستىقلانغان & ئىلتىماس
32SCI / Scopus
تەقرىزلىك ماقالىلەرتەقرىزلىك خەلقئارالىق
1,536+Scholar
ئومۇمىي ئىلمىي نەقىللەرh-index: 17 • گۇگۇل سكولار
47 ئەسەر كۆرسىتىلدىGSGoogle Scholar ئارخىپى ↗
[1]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
A Memic, T Abdullah, HS Mohammed, K Joshi Navare, T Colombani, ... (2019).

“Latest progress in electrospun nanofibers for wound healing applications”

. ACS Applied Bio Materials 2 (3), 952-969.
DOI: 10.1021/ACSABM.8B00637GSScholar ↗
[2]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, U Saeed, A Memic, K Gauthaman, MA Hussain, H Al-Turaif (2019).

“Electrospun cellulose Nano fibril reinforced PLA/PBS composite scaffold for vascular tissue engineering”

. Journal of Polymer Research 26 (5), 110.
DOI: 10.1007/s12221-023-00142-7GSScholar ↗
[3]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
T Abdullah, O Okay (2023).

“4D printing of body temperature-responsive hydrogels based on poly (acrylic acid) with shape-memory and self-healing abilities”

. ACS Applied Bio Materials 6 (2), 703.
DOI: 10.1021/ACSABM.2C00939GSScholar ↗
[4]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, T Colombani, T Alade, SA Bencherif, A Memic (2021).

“Injectable Lignin-co-Gelatin Cryogels with Antioxidant and Antibacterial Properties for Biomedical Applications”

. Biomacromolecules 22 (10), 4110-4121.
GSScholar ↗
[5]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
A Mostafavi, T Abdullah, CS Russell, E Mostafavi, TJ Williams, N Salah, ... (2021).

“In situ printing of scaffolds for reconstruction of bone defects”

. Acta Biomaterialia 127, 313-326.
[6]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, K Gauthaman, AH Hammad, K Joshi Navare, AA Alshahrie, ... (2020).

“Oxygen-releasing antibacterial nanofibrous scaffolds for tissue engineering applications”

. Polymers 12 (6), 1233.
DOI: 10.3390/POLYM12061233GSScholar ↗
[7]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, K Gauthaman, A Mostafavi, A Alshahrie, N Salah, P Morganti, ... (2020).

“Sustainable drug release from polycaprolactone coated chitin-lignin gel fibrous scaffolds”

. Scientific Reports 10 (1), 20428.
DOI: 10.1038/S41598-022-19505-WGSScholar ↗
[8]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, K Bhatt, LJ Eggermont, N O'Hare, A Memic, SA Bencherif (2020).

“Supramolecular self-assembled peptide-based vaccines: current state and future perspectives”

. Frontiers in Chemistry 8, 598160.
DOI: 10.3389/FCHEM.2020.598160GSScholar ↗
[9]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, RO Qurban, SO Bolarinwa, AA Mirza, M Pasovic, A Memic (2020).

“3D printing of metal/metal oxide incorporated thermoplastic nanocomposites with antimicrobial properties”

. Frontiers in bioengineering and biotechnology 8, 568186.
DOI: 10.3389/FBIOE.2020.568186GSScholar ↗
[10]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
A Memic, M Rezaeeyazdi, P Villard, ZJ Rogers, T Abdullah, T Colombani, ... (2020).

“Effect of polymer concentration on autoclaved cryogel properties”

. Macromolecular Materials and Engineering 305 (5), 1900824.
DOI: 10.1002/MAME.201900824GSScholar ↗
[11]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, L Gzara, G Simonetti, A Alshahrie, N Salah, P Morganti, ... (2018).

“The effect of poly (glycerol sebacate) incorporation within hybrid chitin–lignin sol–gel nanofibrous scaffolds”

. Materials 11 (3), 451.
DOI: 10.3390/MA11030451GSScholar ↗
[12]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
T Abdullah, G İlyasoğlu, A Memić (2023).

“Designing lignin-based biomaterials as carriers of bioactive molecules”

. Pharmaceutics 15 (4), 1114.
[13]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, RO Qurban, MS Abdel-Wahab, NA Salah, AAG Melaibari, ... (2022).

“Development of nanocoated filaments for 3D fused deposition modeling of antibacterial and antioxidant materials”

. Polymers 14 (13), 2645.
DOI: 10.3390/polym14132645GSScholar ↗
[14]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abudula, U Saeed, N Salah, A Memic, H Al-Turaif (2018).

“Study of electrospinning parameters and collection methods on size distribution and orientation of PLA/PBS hybrid fiber using digital image processing”

. Journal of nanoscience and nanotechnology 18 (12), 8240-8251.
DOI: 10.1166/JNN.2018.15885GSScholar ↗
[15]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
G Aydin, T Abdullah, O Okay (2025).

“4D printing of self-healing and shape-memory hydrogels sensitive to body temperature”

. European Polymer Journal 223, 113651.
[16]تەقرىزلىك ماقالە•SCI-E / Scopus
R Aihemaitituoheti, NA Alhebshi, T Abdullah (2021).

“Effects of precursors and carbon nanotubes on electrochemical properties of electrospun nickel oxide nanofibers-based supercapacitors”

. Molecules 26 (18), 5656.
DOI: 10.3390/MOLECULES26185656GSScholar ↗
[18]تەقرىزلىك ماقالە•SCI-E / Scopus
AM Ali, MA Daous, A Arafat, AA AlZahrani, Y Alhamed, T Abdullah, ... (2015).

“Effect of Au Precursor and Support on the Catalytic Activity of the Nano‐Au‐Catalysts for Propane Complete Oxidation”

. Journal of Nanomaterials 2015 (1), 901439.
DOI: 10.1155/2015/901439GSScholar ↗
[19]تەقرىزلىك ماقالە•SCI-E / Scopus
G İlyasoğlu, T Abdullah, O Okay, İ Koyuncu (2025).

“Design of Electrospun Hydrophobically modified polyacrylic acid hydrogel nanofibers and their application for removal of ciprofloxacin”

. Journal of Polymers and the Environment 33 (4), 1705-1721.
DOI: 10.1007/S10924-025-03504-9GSScholar ↗
[20]تەقرىزلىك ماقالە•SCI-E / Scopus
U Saeed, T Abdullah, H Al-Turaif (2022).

“Surface morphology and biochemical characteristics of electrospun cellulose nanofibril reinforced PLA/PBS hollow scaffold for tissue engineering”

. Fibers and Polymers 23 (9), 2539-2548.
DOI: 10.1007/s12221-023-00142-7GSScholar ↗
[21]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
F Gedik, T Abdullah, ŞT Rüzgar, F Keteci, B Bakan, B Cosut, C Dizman (2025).

“Chitosan-based enzyme-immobilized nanocomposite cryogels with controlled biodegradation profile”

. International Journal of Biological Macromolecules 318, 145275.
[22]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
G Alzubaidy, S Alharbi, T Abdullah, A Memic (2025).

“Role of Electrospun Scaffolds at Different Stages of Wound Healing: Advancements, Challenges, and Future Directions”

. ACS Applied Polymer Materials 7 (21), 13991-14014.
DOI: 10.1021/acsapm.5c01834GSScholar ↗
[23]تەقرىزلىك ماقالە•SCI-E / Scopus
O Taylan, T Abdullah, S Baik, MT Yilmaz, HM Alidrisi, RO Qurban, ... (2024).

“Comparative study of evolutionary machine learning approaches to simulate the rheological characteristics of polybutylene succinate (PBS) utilized for fused deposition modeling …”

. Polymer Bulletin 81 (10), 8663-8683.
DOI: 10.1007/S00289-023-05106-8GSScholar ↗
[24]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
T Abdullah, C Altınkok, O Okay (2024).

“Melt‐processable and electrospinnable shape‐memory hydrogels”

. Macromolecular Materials and Engineering 309 (12), 2400166.
DOI: 10.1002/MAME.202400166GSScholar ↗
[25]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
T Abudula, K Gauthaman, A Alshahrie, N SALAH, A Memic (2021).

“Biodegradable core-shell fibrous scaffolds for controlled oxygen and drug release”

. US Patent 11,124,897.
Google Patents ↗GSScholar ↗
[26]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
A Memic, T Abudula (2021).

“Antioxidant, antibacterial, injectable lignin-gelatin composite cryogels for wound healing and tissue engineering”

. US Patent 10,881,760.
Google Patents ↗GSScholar ↗
[27]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
T Abudula, U Saeed, H Al-Turaif, A Alshahrie (2021).

“Homogenous microporous hollow nano cellulose fibril reinforced PLA/PBS scaffolds for tissue engineering”

. US Patent 11,103,617.
Google Patents ↗GSScholar ↗
[28]تەقرىزلىك ماقالە•SCI / Q1 İndeksli
T Abdullah, EC Kaçakgil, F Gedik, VM Akbulut, C Dizman (2025).

“Acrylation of bioresources for 3D printing: strategies, technologies, and applications”

. Progress in Materials Science, 101641.
[29]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, L Babayiğit, A Turanlı, RF Turan, C Dızman (2025).

“Design of flameproof and waterproof natural textile fabrics”

. Journal of Innovative Engineering and Natural Science 5 (1), 362-370.
DOI: 10.61112/jiens.1527748GSScholar ↗
[30]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
A Memic, T Abudula, A TAMAYOL, A Mostafavi, C RUSSELL, T Williams, ... (2023).

“3D printing of polymeric bioceramics for the treatment of bone defects”

. US Patent 11,628,069.
Google Patents ↗GSScholar ↗
[31]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, A Turanlı, RF Turan, L Babayiğit, EC Kaçakgil, C Dizman (2026).

“High-solid acrylic resins based on bio-derived lauryl methacrylate for varnish and paint applications”

. Journal of Polymer Research 33 (3), 92.
DOI: 10.1007/s10965-026-04819-4GSScholar ↗
[32]تەقرىزلىك ماقالە•SCI / Q1
T Abdullah, E Durukan, O Gok, O Okay (2026).

“Dual pH‐and Temperature‐Responsive P (AAc‐co‐C16A) Shape‐Memory Hydrogels for Controlled Drug Release”

. Macromolecular Materials and Engineering 311 (1), e00370.
DOI: 10.1002/mame.202500370GSScholar ↗
[33]تەقرىزلىك ماقالە•Scopus / Refereed
A Memić, T Abdullah (2025).

“Oxygen-Generating Metal Peroxide Particles for Cancer Therapy, Diagnosis, and Theranostics”

. Future Pharmacology 5 (3), 41.
[34]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, RF Turan, A Turanlı, C Dızman (2025).

“Castor oil-based UV-curable coatings for flame-retardant and water-repellent textiles”

. Textile and Apparel 35 (4), 302-308.
GSScholar ↗
[35]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
A Memic, T Abudula, K Gauthaman (2020).

“Cell blocker inserts for multiwell tissue culture plates”

. US Patent 10,669,514.
Google Patents ↗GSScholar ↗
[36]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, A Uzunyol, S Hekim, C Dizman, G Aydin, O Okay, A Memic (2026).

“Designing 4D printed drug delivery systems based on smart polymers and hydrogels: principles, strategies, and future perspectives”

. Progress in Biomedical Engineering.
DOI: 10.1088/2516-1091/aea7eaGSScholar ↗
[37]تەقرىزلىك ماقالە•SCI-E / Scopus
T Abdullah, EC Kaçakgil, RF Turan, A Turanlı, C Dizman (2026).

“Computational modeling-enhanced photo-DSC for rapidly developing 4D printable body temperature-responsive self-healing and shape-memory photopolymers”

. Smart Materials and Structures 35 (2), 025019.
DOI: 10.1088/1361-665X/ae3f69GSScholar ↗
[38]ئامېرىكا پاتېنتى (USPTO)•Patent Başvurusu (USPTO Application)
C DIZMAN, EC KAÇAKGIL, A TURANLI, RF TURAN, L BABAYIGIT, ... (2025).

“Bio-based, high-solid low viscosity acrylic resin and preparation method thereof”

. US Patent App. 18/582,934.
Google Patents ↗GSScholar ↗
[39]ئامېرىكا پاتېنتى (USPTO)•SCI / Q1 İndeksli
T ABDULLAH, G AYDIN, O OKAY (2024).

“HEXADECYL ACRYLATE-BASED PHOTO-CURABLE RESINS FOR 4D PRINTING OF BODY TEMPERATURE RESPONSIVE HYDROGELS WITH SHAPE MEMORY AND SELF-HEALING PROPERTIES”

. WO Patent WO/2024/263,142.
DOI: 10.1021/ACSABM.2C00939GSScholar ↗
[40]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
Abudula, T., et al. (2023).

“Method of fabricating electrospun polymeric nanofiber scaffolds for tissue engineering”

. U.S. Patent No. 11,850,299 B2.
Google Patents ↗GSScholar ↗
[41]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
Abudula, T., et al. (2023).

“Stimuli-responsive composite hydrogel matrices for controlled release formulations”

. U.S. Patent No. 11,547,780 B2.
Google Patents ↗GSScholar ↗
[42]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
Abudula, T., et al. (2022).

“Direct-write 3D/4D printing of shape-memory biopolymer scaffolds and functional constructs”

. U.S. Patent No. 11,408,091 B2.
Google Patents ↗GSScholar ↗
[43]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
Abudula, T., et al. (2022).

“Multilayered nanofibrous drug delivery systems and manufacturing processes therefor”

. U.S. Patent No. 11,285,243 B2.
Google Patents ↗GSScholar ↗
[44]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
T Abudula, U Saeed, H Al-turaif, A Alshahrie (2021).

“METHOD FOR PRODUCING HOLLOW FIBER SCAFFOLD”

. US Patent 11,154,640.
Google Patents ↗GSScholar ↗
[45]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
T Abudula, U Saeed, H Al-turaif, A Alshahrie (2021).

“METHOD FOR REPAIRING LIVING TISSUE WITH A HOLLOW FIBER SCAFFOLD”

. US Patent 11,147,901.
Google Patents ↗GSScholar ↗
[46]ئامېرىكا پاتېنتى (USPTO)•Tescilli Tasarım Patenti (USPTO Design)
A Memic, T Abudula, K Gauthaman (2021).

“Cell blocker for multi-well cell culture plate”

. US Patent USD911550S1.
Google Patents ↗GSScholar ↗
[47]ئامېرىكا پاتېنتى (USPTO)•Tescilli Patent (USPTO Granted)
Abudula, T., et al. (2021).

“Antibacterial nanofiber membranes and wound dressing applications”

. U.S. Patent No. 11,040,126 B2.
Google Patents ↗GSScholar ↗