1. Khan, M.U.A.; Haider, D.; Shah, S.A.; Aftab, S.; Razak, S.I.A.; Hassan, S.A.; Kadir, M.R.A.; Haider, A. (2020). Arabinoxylan-co-AA/HAp/TiO2 nanocomposite scaffold a potential material for bone tissue engineering: An in vitro study. International Journal of Biological Macromolecules.151, 584
2. Khan, M.U.A.; Al-Thebaiti M.A.; Hashmi, M.U.; Aftab, S.; Razak, S.I.A.; Hassan, S.A.; Kadir, M.R.A.; Amin, R. (2020). Synthesis of Silver-Coated Bioactive Nanocomposite Scaffolds Based on Grafted Beta-Glucan/Hydroxyapatite via FreezeDrying Method: Anti-Microbial and Biocompatibility Evaluation for Bone Tissue Engineering. Materials. 971, 13.
3. Abba, M.; Razak, S. I. A. (2019). Transdermal Delivery of Crocin Using Bacterial Nanocellulose Membrane. Fibers and Polymers. 20, 2025-2031.
4. Wang, J.; Zakaria, N., H.; Razak, S. I. A.; Kadir, M. R. A.; Nayan, N. H. M.; Li, Y.; Amin K. A. M. (2019). Surface entrapment of chitosan on 3D printed polylactic acid scaffold and its biomimetic growth of hydroxyapatite. Composite Interfaces. 26, 465478
5. Salihu, R.; Razak, S.I.A. (2019). Overview of inexpensive production routes of bacterial cellulose and its applications in biomedical engineering. Cellulose Chemistry and Technology. 53, 1-13
6. Wahid, M. N. A.; Razak, S. I. A.; Kadir, M. R. A.; Hassan, R.; Nayan, N. H. M.; Amin K. A. M. (2018). Influence of citric acid on the physical and biomineralization ability of freeze/thaw poly (vinyl alcohol) hydrogel. Journal of Biomaterials Applications. 33, 94-102.
7. Daud, N. M.; Masri, N. A.; Malek, N. A. N. N.; Razak, S. I. A.; Saidin, S. (2018). Long-term antibacterial and stable chlorhexidine-polydopamine coating on stainless steel 316L. Progress in Organic Coatings. 122, 147-153.
8. Yee, F. C.; Hamzah, M. S. A.; Razak, S. I. A.; Saidin, S.; Nayan, N. H. M. (2018). Influence of poly (lactic acid) layer on the physical and antibacterial properties of dry bacterial cellulose sheet for potential acute wound healing materials. Fibers and Polymers. 19, 263-271.
9. Azmi, S.; Razak, S. I. A.; Kadir, M. R. A.; Iqbal, N.; Hassan, R.; Nayan, N. H. M. (2017). Reinforcement of poly(vinyl alcohol) hydrogel with halloysite nanotubes as potential biomedical materials. Soft Materials. 15, 45-54.
10. Shah, A. M.; Kadir, M. R. A.; Razak, S. I. A. (2017). Novel PLA-based conductive polymer composites for biomedical applications. JOM. 69, 2838-2843.
11. Razak, S. I. A.; Hamzah, M. S. A.; Yee, F. C.; Kadir, M. R. A.; Nayan, N. H. M. (2017). A review on medicinal properties of saffron toward major diseases. Journal of herbs, spices & medicinal plants. 23, 98-116.
12. Austad, A.; Nayan N. H. M.; Razak, S. I. A. (2017). Conductive kenaf/polyaniline sheets for electrostatic dissipation and electromagnetic interference shielding packaging. Cellulose Chemistry and Technology. 51, 83-89.
13. Wahab, I.F.; Razak, S. I. A. Bionanocomposite film of kappa-carrageenan/nanotube clay: Growth of hydroxyl apatite and model drug release (2016). Digest Journal of Nanomaterials and Biostructures. 11, 963-972.
14. Iqbal, N.; Kadir, M. R. A.; Iqbal, S.; Razak, S. I. A.. (2016) Nano-hydroxyapatite reinforced zeolite ZSM composites: A comprehensive study on the structural and in vitro biological properties. Ceramics International. 42, 7175-7182.
15. Razak, S. I. A.; Hamzah, M. S. A; Yee, F.C.; Kadir, M. R. A.; Nayan, N. H. M. (2017). A Review on Medicinal Properties of Saffron towards Major Disease. Journal of Herbs, Spices & Medicinal Plants. (In Press)
16. Selvakumaran, S., Muhamad, I. I., Razak, S. I. A. (2016). Evaluation of kappa carrageenan as potential carrier for floating drug delivery system: Effect of pore forming agents. Carbohydrate Polymers, 135, 207-214.
17. Razak, S. I. A., Wahab, I. F., Fadil, F., Dahli, F. N., Khudzari, A. Z. M., & Adeli, H. (2016). A Review of Electrospun Conductive Polyaniline Based Nanofiber Composites and Blends: Processing Features, Applications and Future Directions. Advances in Materials Science and Engineering. 2015.
18. Razak, S. I. A., Wahab, I. F., Kadir M. R. A., Khudzari, A. Z. M., Yusof A. H. M., Dahli, F. N., Nayan, N. H. M., Anand T. J. S. (2016). Biomimetic Growth of Hydroxyapatite on Kenaf Fibers. Bioresources. 11, 1971-1981.
19. Razak, S. I. A., Dahli, F. N., Wahab, I. F., Kadir M. R. A., Muhamad, I. I., Yusof, A. H. M., Adeli, H. (2016). Conductive Polylactic Acid/Polyaniline Porous Scaffold via Freeze Extraction for Potential Biomedical Applications. Soft Materials.14, 78-86
20. Hisham, N. S. A., Razak, S. I. A., Nayan, N. H. M., Rahman, W. A. W. A. (2015). Influence of Polyaniline Coated Kenaf Fiber on Kenaf Paper Sheet. MATEC Web of Conferences, 27, 01002.
21. Razak, S. I. A., Sharif, N. F. A. (2015). Concurrent Optimization of the Mechanical and Electrical Properties of Polyaniline Modified Kenaf Paper. Cellulose Chemistry and Technology, 49, 195-202.
22. Sharif, N. F. A., Razak, S. I. A., Rahman, W. A. W. A., Nayan, N. H. M., Rahmat, A. R., Yazid, M. Y. (2015). Preparation and Characterization of Cassava Leaves/ Cassava Starch Acetate Biocomposite Sheets. Bioresources. 10, 4339-4349.
23. Razak, S. I. A., Sharif, N. F. A., Nayan, N. H. M., Muhamad, I. I., Yazid, M. Y. (2015). Impregnation of Poly(lactic acid) on Biologically Pulped Pineapple Leaf Fiber for Packaging Materials. Bioresources. 10, 4350-4359.
24. Razak, S. I. A., Sharif, N. F. A., Muhamad, I. I. (2014). Polyaniline Coated Halloysite Nanotubes: Effect of Para-Hydroxybenzene Sulfonic Acid Doping. Composite Interfaces, 21, 715-722.
25. Razak, S. I. A., Sharif, N. F. A., Nayan, N. H. M. (2014). Electrically Conductive Paper of Polyaniline Modified Pineapple Leaf Fiber. Fibers and Polymers, 15, 11071111.
26. Razak, S. I. A., Rahman, W. A. W. A., Sharif, N. F. A., Nayan, N. H. M., Saidi, M. A. A. Yahya, M. Y. (2013). Polyaniline Coated Kenaf Core and Its Effect on the Mechanical and Electrical Properties of Epoxy Resin. Composite Interfaces, 20, 611622.
27. Razak, S. I. A., Rahman, W. A. W. A., Yahya, M. Y. (2013). Novel Epoxy Resin Composites Containing Polyaniline Coated Short Kenaf Bast Fibers and Polyaniline Nanowires: Mechanical and Electrical Properties. Journal of Polymer Engineering, 33, 565-577
28. Razak, S. I. A., Rahman, W. A. W. A., Yahya, M. Y. (2013). Para-hydroxybenzene Sulfonic Acid as a Suitable Dopant for the Preparation of Conductive Epoxy/Polyaniline Nanowires Nanocomposites Blend: Electrical vs Mechanical Properties. Polymer-Plastics Technology and Engineering, 52, 1266-1270.
29. Razak, S. I. A., Rahman, W. A. W. A., Hashim, S., Yahya, M. Y. (2013). Polyaniline and their Conductive Polymer Blend: A Short Review. Malaysian Journal of Fundamental and Applied Sciences, 9, 74-80.
30. Razak, S. I. A., Rahman, W. A. W. A., Yahya, M. Y. (2014). Hybrid Composites of Short Acetylated Kenaf Bast Fiber and Conducting Polyaniline Nanowires in Epoxy Resin. Journal of Composite Materials, 48,667-676.
31. Razak, S. I. A., Rahman, W. A. W. A., Sharif, N. F. A., Yahya, M. Y. (2012). Simultaneous Numerical Optimization of the Mechanical and Electrical Properties of Polyaniline Coated Kenaf Fiber using Response Surface Methodology: Nanostructured Polyaniline on Natural Fiber. Composite Interfaces, 19, 411-424.
32. Razak, S. I. A., Rahman, W. A. W. A., Hashim, S., Yahya, M. Y. (2013). Enhanced Interfacial Interaction and Electronic Properties of Novel Conducting Kenaf/Polyaniline Biofibers. Polymer-Plastics Technology and Engineering, 52, 5157.
33. Razak, S. I. A., Rahman, W. A. W. A., Hashim, S., Yahya, M. Y. (2012). In situ Surface Modification of Natural Fiber by Conducting Polyaniline. Composite Interfaces, 19, 365-376. 34. Razak, S. I. A., Rahman, W. A. W. A., Yahya, M. Y. (2012). Electrically Conductive Nanocomposites of Epoxy/Polyaniline Nanowires Doped with Formic Acid: Effect of Loading on the Conduction and Mechanical Properties. NANO, 7, 1250039.
35. Razak, S. I. A., Sharif, N. F. A., Rahman, W. A. W. A. (2012). Biodegradable Polymers and their Bone Applications: A Review. International Journal of Basic & Applied Sciences, 12, 31-49.
36. Razak, S. I. A., Zein, S. H. S. (2011). Structural and Interaction Properties of Encapsulated MnO2 Nanowires Filled MWCNTS. NANO, 6, 435-439.
37. Razak, S. I. A., Ahmad A. L., Zein, S. H. S. (2011). MnO2-filled Multiwalled Carbon Nanotube/Polyaniline Nanocomposites: Effect of Loading on the Conduction Properties and its Percolation Threshold. NANO, 6, 81-91.
38. Razak, S. I. A., Zein, S. H. S., Ahmad A. L., (2010). Effect of Parahydroxybenzenesulfonic Acid on the Properties of ex-situ Prepared Polyaniline/Multiwalled Carbon Nanotube-MnO2. NANO, 5, 369-373.
39. Razak, S.I.A., Ahmad, A.L., Zein, S.H.S., Boccaccini A.R. (2009). MnO2-filled Multiwalled Carbon Nanotube/Polyaniline Nanocomposites with Enhanced Interfacial Interaction and Electronic Properties. Scripta Materialia, 61, 592-595.
40. Razak, S.I.A., Ahmad, A.L., Zein, S.H.S. (2009). Polymerization of Protonic Polyaniline/Multi-walled Carbon Nanotubes-Manganese Dioxide Nanocomposites. Journal of Physical Science, 20, 27-34.
41. Nayan N. H. M., Razak S. I. A., Rahman W. A. W. A., Majid R. A. (2013). Effects of Mercerization on the Properties of Paper Produced from Malaysian Pineapple Leaf Fiber. International Journal of Engineering & Technology, 13, 1-6.
42. Sharif, N. F. A., Razak, S. I. A., Rahman, W. A. W. A. (2014). Cassava Leaves as Packaging Materials. Cellulose Chemistry and Technology.48, 585-590.
43. Jaganathan, S. K., Arunpandian, B., Vellayappan, M. V., Manjesh, A. K., Priyadarshini, A., John, A., Supriyanto, E., Razak S. I. A., Marvi, M. (2014). A Review on Antiproliferative and Apoptotic Activities of Natural Honey. Anti-Cancer Agents in Medicinal Chemistry. (In Press).
44. Razak, S. I. A., Sharif, N. F. A., Nayan, N. H. M., Muhamad, I. I. (2014). In situ Deposition of Conducting Polymer onto Pineapple Leaf Fiber. Advanced Materials Research. 1043, 189-192.
45. Nayan, N. H. M., Razak, S. I. A., Rahman, W. A. W. A. (2014). Biopulping by Ceriporiopsis Subvermispora towards Pineapple Leaf Fiber (PALF) Paper Properties. Advanced Materials Research. 1043, 180-183.
46. Shaharuddin, S., Razak, S. I. A., Muhamad, I. I. (2014). Sugarcane Bagasse as the Potential Agro-waste Resource for the Immobilization of Lactobacillus rhamnosus NRRL 442. Advanced Materials Research Journal. 1043, 214-218.
47. Razak, S. I. A., Muhamad, I. I ., Sharif, N. F. A., Nayan, N. H. M., Rahmat, A. R., Yazid, M. Y. (2015). Mechanical and Electrical Properties of Electrically Conductive Nanocomposites of Epoxy/ Polyaniline-Coated Halloysite Nanotubes. Digest Journal of Nanomaterials and Biostructures. 10, 377-384.
48. Sharif, N. F. A., Rahman, W. A. W. A., Razak, S. I. A. (2015). Poly(lactic acid) Coated Cassava Leaves Biocomposite Packaging Sheets. Cellulose Chemistry and Technology. 49, 7-8, 659-665
49. Sharif, N. F. A., Razak, S. I. A., Rahman, W. A. W. A., Rahmat, A. R., Jaganathan, S. K., Nayan, N. H. M. (2016). Numerical Optimization of Poly(lactic acid) Coated Cassava Leaves Biocomposite Sheets using Response Surface Methodology. Cellulose Chemistry and Technology.50,9-10, 1077-1086.