1. Das, S., Wajid, A.S., Bhattacharia, S., Wilting, M.D., Rivero, I.V., Green, M.J. “Electrospinning of polymer nanofibers loaded with non-covalently functionalized graphene,” (2012, submitted)
2. Green, M.J. “Isotropic-nematic phase separation and demixing in mixtures of spherical nanoparticles with length-polydisperse nanorods,” (2012, submitted)
3. Li, S., Anderson, T.A., Maul, J.D., Shrestha, B., Green, M.J., Das, S., Cañas, J.E., “Multi-walled carbon nanotubes (MWNTs) and octadecyl (C18) passive sampling devices for biomimetic uptake of PAHs from soils,” (2012, submitted)
4. Pagani, G., Green, M. J., Poulin, P., Pasquali, M. “Competing mechanisms and scaling laws for carbon nanotube scission by ultrasonication,” Proc. Nat. Acad. Sci., (2012, in press)
5. Irin, F., Shrestha, B., Cañas, J.E., Saed, M.A., Green, M.J. “Detection of Carbon Nanotubes in Biological Samples through Microwave-Induced Heating,” Carbon, (2012, in press: DOI 10.1016/j.carbon.2012.05.022)
6. Wajid, A.S., Ahmed, H.S.T., Das, S., Irin, F., Jankowski, A.F., Green, M.J. “High-performance pristine graphene/epoxy composites with enhanced mechanical and electrical properties,” Macromolecular Materials and Engineering, (2012, in press: DOI 10.1002/mame.201200043)
7. Das, S., Irin, F., Ahmed, H.S.T., Cortinas, A.B., Wajid, A.S., Parviz, D., Jankowski, A.F., Kato, M. Green, M.J. “Non-covalent functionalization of pristine graphene using triphenylene derivatives and incorporation into conductive poly (vinyl alcohol) composites,” Polymer, 53, 2485-2494 (2012)
8. Wajid, A.S., Das, S., Irin, F., Ahmed, H.S.T., Shelburne, J.L., Parviz, D., Fullerton, R.J., Jankowski, A.F., Hedden, R.C., Green, M.J. “Polymer-stabilized graphene dispersions at high concentrations in organic solvents for composite production,” Carbon, 50, 526-534 (2012)
9. Cañas, J.E., Qi, B., Li, S., Maul, J.D., Cox, S.B., Das, S., Green, M.J. “Acute and Reproductive Toxicity of Nano-sized Metal Oxides (ZnO and TiO2) to Earthworms (Eisenia fetida),” J. Environ. Monitoring 13, 3351-3357 (2011)
10. Das, S., Wajid, A.S., Shelburne, J.L., Liao, Y-C., Green, M.J. “Localized in-situ polymerization on graphene surfaces for stabilized graphene dispersions,” ACS Applied Materials and Interfaces, 3, 1844-1851 (2011)
11. Green, M.J., Young, C.C., Parra-Vasquez, A.N.G, Majumder, M., Juloori, V., Behabtu, N., Pint, C.L., Schmidt, J., Kesselman, E., Hauge, R.H., Cohen, Y., Talmon, Y., Pasquali, M. “Direct Imaging of Carbon Nanotubes Spontaneously filled with Solvent,” Chemical Communications, 47, 1228-1230 (2011)
12. Green, M.J., “Analysis and Measurement of Carbon Nanotube Dispersions: Nanodispersion vs. Macrodispersion,” Polymer International, 59, 1319-1322 (2010)
13. Parra-Vasquez, A.N.G., Behabtu, N., Green, M.J., Pint, C. L., Young, C.C., Schmidt, J., Kesselman, E., Goyal, A., Ajayan, P.M., Cohen, Y., Talmon, Y., Hauge, R.H., Pasquali, M., “Spontaneous Dissolution of Ultra-Long Single and Multi-Walled Carbon Nanotubes,” ACS Nano, 4, 3969–3978 (2010)
14. Duque, J.G., Parra-Vasquez, A.N.G., Behabtu, N., Green, M.J., Higginbotham, A.L., Price, B.K., Leonard, A.D., Schmidt, H. K., Lounis, B., Tour, J.M., Doorn, S. K., Cognet, L., Pasquali, M., “Diameter-Dependent Solubility of Single-Walled Carbon Nanotubes” ACS Nano, 4, 3063–3072 (2010)
15. Behabtu, N., Lomeda, J.L., Green, M.J., Higginbotham, A.L., Sinitskii, A., Kosynkin, D.K., Tsentalovich, D., Parra-Vasquez, A.N.G., Schmidt, J., Kesselman, E., Talmon, Y., Tour, J.M., Pasquali, M., “Spontaneous high-concentration dispersions and liquid crystals of graphene,” Nature Nanotechnology, 5, 406-411 (2010)
16. Green, M.J., Brown, R.A., Armstrong, R.C. “Phase transitions of a rigid-rod solution in a thin slit.” J. Comp. Theor. Nanosci., 7, 693-699 (2010, special issue on liquid crystalline polymers and nanocomposites)
17. Davis, V.A., Parra-Vasquez, A.N.G., Green, M.J., Rai, P.K., Behabtu, N., Prieto, V., Booker, R.D., Schmidt, J., Kesselman, E., Zhou, W., Fan, H., Adams, W.W., Hauge, R.H., Fischer, J.E., Cohen, Y., Talmon, Y., Smalley, R.E., Pasquali, M. “True Solutions of Single Walled Carbon Nanotubes for Assembly into Macroscopic Materials.” Nature Nanotechnology, 4, 830 (2009)
18. Green, M.J., Behabtu, N., Pasquali, M., Adams, W.W., “Nanotubes as Polymers.” Polymer, 50, 4979-4997 (2009, cover article)
19. Green, M.J., Parra-Vasquez, A.N.G., Behabtu, N., Pasquali, M. “Modeling the phase behavior of polydisperse rigid rods in attractive solvents, with applications to SWNTs in superacids.” J. Chem. Phys,.131, 084901 (2009)
20. Green, M.J., Brown, R.A., Armstrong, R.C. “Spinodal decomposition and nematic coarsening in a rigid-rod system.” J. Non-Newt. Fluid Mech., 161, 30-36 (2009)
21. Green, M.J., Brown, R.A., Armstrong, R.C. “Rheological phase diagrams for nonhomogeneous flows of rodlike liquid crystalline polymers.” J. Non-Newt. Fluid Mech., 157, 34-43 (2009)
22. Booker, R.D., Green, M.J., Fan, H., Parra-Vasquez, A.N.G., Behabtu, N., Young, C.C., Schmidt, H.K., Smalley, R.E., Hwang, W.-F., Pasquali, M. “High-shear treatment of SWNT/superacid solutions as a pre-processing technique for assembly of fibers and films,” J. Nanoeng. Nanosys., 222, 101-109, (2008, special issue on carbon nanotubes)
23. Behabtu, N., Green, M.J., Pasquali, M. “Carbon Nanotube-based Neat Fibers.” Nano Today, 3 (5-6), 24-34 (2008, cover article).
24. Green, M.J., Brown, R.A., Armstrong, R.C. “Nonhomogeneous shear flow in concentrated liquid-crystalline solutions.” Phys. Fluids, 19, 111702 (2007).
25. Green, M.J., Brown, R.A., Armstrong, R.C. “Initial stages of spinodal decomposition in rigid-rod solutions.” J. Chem. Phys., 126, 034903 (2007).
26. Green, M.J., Armstrong, R.C., Brown, R.A. “Computation of the nonhomogeneous equilibrium states of a rigid-rod solution.” J. Chem. Phys., 125, 214906 (2006).
For further assistance in these areas, contact Dr. Micah Green.
May 30, 2012
| © 2007 Texas Tech University | All Rights Reserve
May 30, 2012
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| © 2007 Texas Tech University | All Rights Reserved
Designed by Anand Chiravuri & Abhijit Chaudhary, Department of Chemical Engineering.