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Showing results 372 to 391 of 620 < previous   next >
Issue DateTitleAuthor(s)
19-May-1999Machinability study of carbon fiber reinforced compositeRahman, M. ; Ramakrishna, S. ; Prakash, J.R.S.; Tan, D.C.G.
1999Machinability study of carbon/PEEK compositesRahman, M. ; Ramakrishna, S. ; Thoo, H.C.
12-Feb-2014Maghemite nanoparticles on electrospun CNFs template as prospective lithium-ion battery anodeWu, Y.; Zhu, P.; Reddy, M.V. ; Chowdari, B.V.R. ; Ramakrishna, S. 
2-Sep-2012Magnesium oxide nanotubes: Synthesis, characterization and application as efficient recyclable catalyst for pyrazolyl 1,4-dihydropyridine derivativesMurugan, R.; Ramamoorthy, K.; Sundarrajan, S. ; Ramakrishna, S. 
2008Manufacture of multiple-channel porous biodegradable conduits for spinal cord regenerationHe, L. ; Quan, D.; Liao, K.; Lu, J.; Liao, S. ; Ramakrishna, S. 
1-Jun-2009Manufacture of plga multiple-channel conduits with precise hierarchical pore architectures and in vitro/vivo evaluation for spinal cord injuryHe, L. ; Zhang, Y.; Zeng, C.; Ngiam, M.; Liao, S. ; Quan, D.; Zeng, Y.; Lu, J.; Ramakrishna, S. 
2012Mechanical properties an of electrospun polymer fibre-metal oxide nanocomposite matKrupa, A.; Jaworek, A.; Sundarrajan, S. ; Pliszka, D. ; Ramakrishna, S. 
9-Mar-2012Mechanical properties and in vitro behavior of nanofiberhydrogel composites for tissue engineering applicationsKai, D.; Prabhakaran, M.P. ; Stahl, B.; Eblenkamp, M.; Wintermantel, E.; Ramakrishna, S. 
15-Oct-2009Mechanical properties of electrospun collagen-chitosan complex single fibers and membraneChen, Z.; Wei, B.; Mo, X.; Lim, C.T. ; Ramakrishna, S. ; Cui, F.
Jul-2011Melt-electrospun fibers for advances in biomedical engineering, clean energy, filtration, and separationGóra, A.; Sahay, R.; Thavasi, V. ; Ramakrishna, S. 
Oct-2009Mesenchymal stem cell differentiation to neuronal cells on electrospun nanofibrous substrates for nerve tissue engineeringPrabhakaran, M.P. ; Venugopal, J.R. ; Ramakrishna, S. 
14-Nov-2012Mesoporous SnO 2 agglomerates with hierarchical structures as an efficient dual-functional material for dye-sensitized solar cellsZhu, P.; Reddy, M.V. ; Wu, Y.; Peng, S.; Yang, S.; Nair, A.S.; Loh, K.P. ; Chowdari, B.V.R. ; Ramakrishna, S. 
Feb-2009Metal oxides for dye-sensitized solar cellsJose, R. ; Thavasi, V. ; Ramakrishna, S. 
13-Sep-2005Micellization phenomena of biodegradable amphiphilic triblock copolymers consisting of poly(β-hydroxyalkanoic acid) and poly(ethylene oxide)Li, J. ; Ni, X.; Li, X.; Tan, N.K.; Lim, C.T. ; Ramakrishna, S. ; Leong, K.W.
23-May-2013Micro and Nanotechnologies in Engineering Stem Cells and TissuesRamalingam, M.; Jabbari, E.; Ramakrishna, S. ; Khademhosseini, A.
1999Micromechanical approach to the tensile strength of a knitted fabric compositeHuang, Z.M. ; Ramakrishna, S. ; Tay, A.O.A. 
Sep-1999Micromechanical modeling approach to the mechanical properties of textile elastomeric compositesHuang, Z.M. ; Ramakrishna, S. ; Tay, A.A.O. 
1-May-2000Micromechanical modeling approaches for the stiffness and strength of knitted fabric composites: a review and comparative studyHuang, Z.M.; Ramakrishna, S. 
1997Microstructural design of composite materials for crashworthy structural applicationsRamakrishna, S. 
1997Microstructural design of textile compositesGanesh, V.K. ; Ramakrishna, S. ; Teoh, S.H. ; Naik, N.K.