A. Nicholas Parra-Vasquez

2002-2009 Chemical Engineering Rice University, Houston, TX 
"A. Parra-Vasquez"
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Matteo Pasquali grad student 2002-2010 Rice University
 (Solubility, length characterization, and cryo-TEM of pristine and functionalized single -walled carbon nanotubes in surfactant and superacid systems, with application to spinning SWNT fibers.)
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Kleinerman O, Parra-Vasquez AN, Green MJ, et al. (2015) Cryogenic-temperature electron microscopy direct imaging of carbon nanotubes and graphene solutions in superacids. Journal of Microscopy. 259: 16-25
Subbaiyan NK, Parra-Vasquez ANG, Cambré S, et al. (2015) Bench-top aqueous two-phase extraction of isolated individual single-walled carbon nanotubes Nano Research. 8: 1755-1769
Subbaiyan NK, Cambré S, Parra-Vasquez AN, et al. (2014) Role of surfactants and salt in aqueous two-phase separation of carbon nanotubes toward simple chirality isolation. Acs Nano. 8: 1619-28
Parra-Vasquez ANG, Duque JG, Green MJ, et al. (2014) Assessment of length and bundle distribution of dilute single-walled carbon nanotubes by viscosity measurements Aiche Journal. 60: 1499-1508
Oudjedi L, Parra-Vasquez AN, Godin AG, et al. (2013) Metrological Investigation of the (6,5) Carbon Nanotube Absorption Cross Section. The Journal of Physical Chemistry Letters. 4: 1460-4
Parra-Vasquez AN, Oudjedi L, Cognet L, et al. (2012) Nanoscale Thermotropic Phase Transitions Enhancing Photothermal Microscopy Signals. The Journal of Physical Chemistry Letters. 3: 1400-3
Green MJ, Young CC, Parra-Vasquez AN, et al. (2011) Direct imaging of carbon nanotubes spontaneously filled with solvent. Chemical Communications (Cambridge, England). 47: 1228-30
Parra-Vasquez AN, Behabtu N, Green MJ, et al. (2010) Spontaneous dissolution of ultralong single- and multiwalled carbon nanotubes. Acs Nano. 4: 3969-78
Duque JG, Parra-Vasquez AN, Behabtu N, et al. (2010) Diameter-dependent solubility of single-walled carbon nanotubes. Acs Nano. 4: 3063-72
Behabtu N, Lomeda JR, Green MJ, et al. (2010) Spontaneous high-concentration dispersions and liquid crystals of graphene. Nature Nanotechnology. 5: 406-11
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