@article{
	11589_58257,
	author = { Cicco  Stefania R  and  Ambrico  Marianna  and  Ambrico  Paolo F  and  Talamo  Maurizio Mastropasqua  and  Cardone  Antonio  and  Ligonzo  Teresa  and  Di Mundo  Rosa  and  Giannini  Cinzia  and  Sibillano  Teresa  and  Farinola  Gianluca M  and  Manini  Paola  and  Napolitano  Alessandra  and  Criscuolo  Valeria  and  D'Ischia  Marco },
	title = {A water-soluble eumelanin polymer with typical polyelectrolyte behaviour by triethyleneglycol N-functionalization},
	year = {2015},
	journal = {JOURNAL OF MATERIALS CHEMISTRY. C},
	volume = {3},
	doi = {10.1039/C4TC01997K},	
	pages = {2810--2816}
}
@article{
	11589_1263,
	author = { Bottiglione F  and  Di Mundo R  and  Soria L  and  Carbone G },
	title = {Wenzel to Cassie Transition in Superhydrophobic Randomly Rough Surfaces},
	year = {2015},
	journal = {NANOSCIENCE AND NANOTECHNOLOGY LETTERS},
	volume = {7},
	url = {http://www.ingentaconnect.com/content/asp/nnl/2015/00000007/00000001/art00014?token=0036123060275c277b42573a6747486b343e2c2a796d592f3f3b2c},
	doi = {10.1166/nnl.2015.1922},	
	pages = {74--78}
}
@article{
	11589_58165,
	author = { Di Mundo  Rosa  and  Bottiglione  Francesco  and  Palumbo  Fabio  and  Favia  Pietro  and  Carbone  Giuseppe },
	title = {Sphere-on-cone microstructures on Teflon surface: Repulsive behavior against impacting water droplets},
	year = {2015},
	journal = {MATERIALS & DESIGN},
	abstract = {Teflon (polytetrafluoroethylene) surface has been modified with a single step oxygen-fed plasma process resulting in the formation of peculiar “sphere-on-cone” micro-scale relieves. Though presenting some irregularity and random distribution, surfaces with a steep variation of topography can be obtained by properly tuning plasma process parameters. We show that, though exhibiting similar superhydrophobic properties in terms of water contact angle, the ability to withstand vertically impacting water droplets falling at medium/high impacting speeds can be sensitively different. In particular, high repulsive properties characterize surfaces with denser and smaller relieves. In the other cases the occurrence of pinning events results in longer time-of-contact and a shorter time-of-flight of the drop. Interestingly, the impact pressure values at which pinning transitions have been observed are consistent with critical pressures for penetration calculated by modeling the surface as an array of spheres. When critical pressure is exceeded, and water penetration is expected, reversible or non reversible pinning can be explained on the basis of the wetting/de-wetting cycle within the sphere-on-cone's layer.},
	url = {http://www.sciencedirect.com/science/article/pii/S0264127515308352},
	doi = {10.1016/j.matdes.2015.11.094},	
}
@conference{
	11589_25339,
	author = { Rosa Di Mundo  and  Francesco Bottiglione  and  Soria L  and  Giuseppe Carbone },
	title = {Wenzel roughness factor as key parameter for robust superhydrophobicity in randomly rough surfaces: dynamic wetting confirms prediction},
	year = {2014},
	booktitle = {Superhydrophobicity, bubble stability, and heterogeneous nucleation},
	url = {http://www.dima.uniroma1.it/dima/superhydrophobicity2014}
}
@conference{
	11589_22374,
	author = { Rosa Di Mundo  and  Francesco Bottiglione  and  Soria L  and  Giuseppe Carbone },
	title = {ASSESSING FAKIR STATE ROBUSTNESS OF SUPERHYDROPHOBIC PLASMA GENERATED RANDOMLY NANO-ROUGH SURFACES},
	year = {2014},
	booktitle = {MMT-2014, The Eighth International Conference on Materials Technologies and Modeling},
	url = {http://www.ariel.ac.il/sites/conf/mmt/mmt-2014/mmt-2014.htm}
}
