Supercritical CO2 based processing of amorphous fluoropolymer Teflon-AF: Surfactant-free dispersions and superhydrophobic films

被引:11
作者
Khapli, Sachin [1 ]
Jagannathan, Ramesh [1 ]
机构
[1] New York Univ, Div Engn, Abu Dhabi, U Arab Emirates
关键词
RESS; Teflon-AF; Nano particles; RESS-SC PROCESS; RAPID EXPANSION; POLYMER PARTICLES; CARBON-DIOXIDE; NANOPARTICLES; FLUIDS; NUCLEATION;
D O I
10.1016/j.supflu.2013.10.014
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We report the application of a modified RESS process to create and collect in high yield nanoparticles of an amorphous fluoropolymer, Teflon-AF1600. The nanoparticles with diameters ranging from 10 to 100 nm can be synthesized from polymer solutions in supercritical CO2 at 300 bar and 60 degrees C. The nanoparticles are collected by formation of dry ice in a liquid nitrogen-cooled trap. Nanoparticles embedded in dry-ice can be dispersed in organic solvents (acetone, ethanol, and n-heptane) creating surfactant-free dispersions. When dispersed in water, the nanoparticles self-assemble at the air-water interface forming a mechanically robust, superhydrophobic film. The film can support large water droplets (up to volume 250 mu L) without breaking and is impermeable to water. The films cast from dispersions as well as those lifted-off water surface, are highly porous and superhydrophobic in nature (water contact angle theta(adv) = 162 degrees). This work demonstrates the utility of supercritical fluids based processing of fluoropolymers. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:49 / 56
页数:8
相关论文
共 40 条
[1]  
Angus S., 1976, INT THERMODYNAMIC TA
[2]   Large broadband visible to infrared plasmonic absorption from Ag nanoparticles with a fractal structure embedded in a Teflon AF® matrix -: art. no. 013103 [J].
Biswas, A ;
Eilers, H ;
Hidden, F ;
Aktas, OC ;
Kiran, CVS .
APPLIED PHYSICS LETTERS, 2006, 88 (01)
[3]   Micronisation of carbamazepine through rapid expansion of supercritical solution (RESS) [J].
Bolten, Dennis ;
Tuerk, Michael .
JOURNAL OF SUPERCRITICAL FLUIDS, 2012, 62 :32-40
[4]   Fluorophilic ionophores for potentiometric pH determinations with fluorous membranes of exceptional selectivity [J].
Boswell, Paul G. ;
Szijjarto, Csongor ;
Jurisch, Markus ;
Gladysz, John A. ;
Rabai, Jozsef ;
Buhimann, Philippe .
ANALYTICAL CHEMISTRY, 2008, 80 (06) :2084-2090
[5]   HOMOGENEOUS NUCLEATION IN SUPERCRITICAL FLUIDS [J].
DEBENEDETTI, PG .
AICHE JOURNAL, 1990, 36 (09) :1289-1298
[6]   APPLICATION OF SUPERCRITICAL FLUIDS FOR THE PRODUCTION OF SUSTAINED DELIVERY DEVICES [J].
DEBENEDETTI, PG ;
TOM, JW ;
YEO, SD ;
LIM, GB .
JOURNAL OF CONTROLLED RELEASE, 1993, 24 (1-3) :27-44
[7]  
DEBENEDETTI PG, 1993, FLUID PHASE EQUILIBR, V82, P311, DOI 10.1016/0378-3812(93)87155-T
[8]   InP/GaAsSb DHBTs Fabricated in a Low-Temperature Teflon Planarization Process [J].
Flueckiger, Ralf ;
Loevblom, Rickard ;
Ostinelli, Olivier ;
Benedickter, Hansruedi ;
Bolognesi, C. R. .
IEEE ELECTRON DEVICE LETTERS, 2012, 33 (08) :1135-1137
[9]   Thin fluoropolymer films and nanoparticle coatings from the rapid expansion of supercritical carbon dioxide solutions with electrostatic collection [J].
Fulton, JL ;
Deverman, GS ;
Yonker, CR ;
Grate, JW ;
De Young, J ;
McClain, JB .
POLYMER, 2003, 44 (13) :3627-3632
[10]   High-quality ultrathin polymer films obtained by deposition from supercritical carbon dioxide as imaged by atomic force microscopy [J].
Gallyamov, MO ;
Vinokur, RA ;
Nikitin, LN ;
Said-Galiyev, EE ;
Khokhlov, AR ;
Yaminsky, IV ;
Schaumburg, K .
LANGMUIR, 2002, 18 (18) :6928-6934