Publications

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2018
Chen, M, Muniz AR, Maroudas D.  2018.  Formation and Mechanical Behavior of Nanocomposite Superstructures from Interlayer Bonding in Twisted Bilayer Graphene. ACS Applied Materials & Interfaces. 10:28898−28908.
Silveira, JFRV, Pagnusatti RA, Kleinpaul J, Paupitz R, Muniz AR.  2018.  Nanoporous Carbon Superstructures based on Covalent Bonding of Porous Fullerenes. Carbon. 130:424-432.
Ferrarini, F, Flores GB, Muniz AR, Soares RP.  2018.  An open and extensible sigma‐profile database for COSMO‐based models. AIChE Journal. 64(9):3443-3455.
Silva, AF, Christmann AM, Muniz AR, Balzaretti NM.  2018.  Thermal annealing of graphite oxide under high pressure: an experimental and computational study. Carbon. 139:1035-1047.
2017
Hamm, JBS, Muniz AR, Pollo LD, Marcilio NR, Tessaro IC.  2017.  Experimental and computational analysis of carbon molecular sieve membrane formation upon polyetherimide pyrolysis. Carbon. 119:21-29.
Silveira, JFRV, Muniz AR.  2017.  First-principles calculation of the mechanical properties of diamond nanothreads. Carbon. 113:260-265.
Silveira, JFRV, Muniz AR.  2017.  Functionalized diamond nanothreads from benzene derivatives. Physical Chemistry Chemical Physics. 19:7132-7137.
Du, L, Nguyen TN, Gilman A, Muniz AR, Maroudas D.  2017.  Tuning the band structure of graphene nanoribbons through defect-interaction-driven edge patterning. Physical Review B. 96(24):245422.
2016
Carvalho, A, Ordomsky V, Luo Y, Marinova M, Muniz AR, Marcilio NR, Khodakov A.  2016.  Elucidation of deactivation phenomena in cobalt catalyst for Fischer-Tropsch synthesis using SSITKA. Journal of Catalysis. 344:669-679.
Rodrigues, R, Muniz AR, Marcilio NR.  2016.  Evaluation of biomass and coal co-gasification of brazilian feedstock using a chemical equilibrium model. Brazilian Journal of Chemical Engineering. (33):401-414.
Weerasinghe, A, Muniz AR, Ramasubramaniam A, Maroudas D.  2016.  Mechanical properties of hydrogenated electron-irradiated graphene. Journal of Applied Physics. 120:124301.
2015
Muniz, AR, Fonseca AF.  2015.  Carbon-Based Nanostructures Derived from Bilayer Graphene with Zero Thermal Expansion. The Journal of Physical Chemistry C. 119(30):17458–17465.
Hu, L, Wyant S, Muniz AR, Ramasubramaniam A, Maroudas D.  2015.  Mechanical behavior and fracture of graphene nanomeshes. Journal of Applied Physics. 117:024302.
Muniz, AR, Machado AS, Maroudas D.  2015.  Mechanical behavior of interlayer-bonded nanostructures obtained from bilayer graphene. Carbon. 81:663–677.
2014
Ramasubramaniam, A, Muniz AR.  2014.  Ab initio studies of thermodynamic and electronic properties of phosphorene nanoribbons. Physical Review B. 90:085424.
Carpenter, C, Christmann AM, Hu L, Fampiou I, Muniz AR, Ramasubraniam A, Maroudas D.  2014.  Elastic properties of graphene nanomeshes. Applied Physics Letters. 104:141911.
2013
Muniz, AR, Maroudas D.  2013.  Superlattices of Fluorinated Interlayer-Bonded Domains in Twisted Bilayer Graphene. Journal of Physical Chemistry. C. 117:7315-7325.
Machado, AS, Maroudas D, Muniz AR.  2013.  Tunable mechanical properties of diamond superlattices generated by interlayer bonding in twisted bilayer graphene. Applied Physics Letters. 103:013113.
2012
Muniz, AR, Maroudas D.  2012.   Formation of fullerene superlattices by interlayer bonding in twisted bilayer graphene. Journal of Applied Physics. 111:043513.
2010
Muniz, AR, Maroudas D.  2010.  Hydrogenation effects on the structure and morphology of graphene and single-walled carbon nanotubes. Journal of Applied Physics. 108:113532.
2009
Muniz, AR, SIngh TS, Aydil ES, Maroudas D.  2009.  Analysis of diamond nanocrystal formation from multiwalled carbon nanotubes. Physical Review B. 80:144105.
Muniz, AR, SIngh TS, Maroudas D.  2009.  Effects of hydrogen chemisorption on the structure and deformation of single-walled carbon nanotubes. Applied Physics Letters. 94:103108.
Muniz, AR, Meyyappan M, Maroudas D.  2009.  On the hydrogen storage capacity of carbon nanotube bundles. Applied Physics Letters. 95:163111.
2008
Muniz, AR, Secchi AR, Cardozo NSM.  2008.   High-order finite volume method for solving viscoelastic fluid flows. Brazilian Journal of Chemical Engineering. 25:153-166.