Polymer/graphite nanocomposites: Effect of reducing the functional groups of graphite oxide on water barrier properties

被引:31
作者
Etmimi, Hussein M. [1 ]
Mallon, Peter E. [1 ]
Sanderson, Ronald D. [1 ]
机构
[1] Univ Stellenbosch, Dept Chem & Polymer Sci, ZA-7602 Matieland, South Africa
关键词
Polymer nanocomposites; Graphite oxide; Barrier properties; Miniemulsion polymerization; MINIEMULSION POLYMERIZATION; EMULSION POLYMERIZATION; MONOMER DROPLETS; GAS BARRIER; LATEX FILMS; GRAPHENE; MORPHOLOGY; STYRENE; NANOPLATELETS; POLYREACTIONS;
D O I
10.1016/j.eurpolymj.2013.08.004
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Water barrier properties (i.e., water resistance) of poly(styrene-co-butyl acrylate)/graphite oxide (poly(St-co-BA)/GO) nanocomposites were studied using hydrophobicity and permeability analysis. Poly(St-co-BA)/GO nanocomposite latices were obtained using the miniemulsion polymerization technique. The hydrophobicity of the synthesized nanocomposites was studied using contact angle measurements, while water permeability was obtained by measuring the moisture vapor transmission rate (MVTR). The nanocomposites were treated with hydrazine hydrate in order to reduce the functional groups on graphite oxide (GO). The focus was on determining the effect of reducing the functional groups of GO on the water barrier properties of its polymer nanocomposites. In general, the nanolayered graphene platelets in GO and RGO resulted in lower water permeation in the final films compared to pure polymer. However, results showed that nanocomposites containing the reduced-GO (RGO) had better water resistance and barrier properties compared to those made with unreduced GO (i.e., as-prepared GO). The nanocomposites containing RGO had higher hydrophobicity and lower water uptake and MVTR compared to those made with as-prepared GO, resulting in better barrier performance. This was attributed to the high hydrophobic nature of the RGO, which exhibited lower water solubility that resulted in films with lower MVTR values compared to those made with as-prepared GO. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3460 / 3470
页数:11
相关论文
共 49 条
[1]  
Adamson A. W., 1982, PHYS CHEM SURFACES, Vfourth, P433
[2]   Polyreactions in miniemulsions [J].
Antonietti, M ;
Landfester, K .
PROGRESS IN POLYMER SCIENCE, 2002, 27 (04) :689-757
[3]   Improving water sensitivity in acrylic films using surfmers [J].
Aramendia, E ;
Barandiaran, MJ ;
Grade, J ;
Blease, T ;
Asua, JM .
LANGMUIR, 2005, 21 (04) :1428-1435
[4]   Modeling the barrier properties of polymer-layered silicate nanocomposites [J].
Bharadwaj, RK .
MACROMOLECULES, 2001, 34 (26) :9189-9192
[5]   Graphite oxide:: Chemical reduction to graphite and surface modification with primary aliphatic amines and amino acids [J].
Bourlinos, AB ;
Gournis, D ;
Petridis, D ;
Szabó, T ;
Szeri, A ;
Dékány, I .
LANGMUIR, 2003, 19 (15) :6050-6055
[6]   THE PERMEABILITY OF POLY(BUTYL ACRYLATE) POLY(VINYLIDENE CHLORIDE-STAT-ACRYLONITRILE) CORE SHELL EMULSION POLYMERS FOR USE AS GAS BARRIER COATINGS [J].
BROWN, RA ;
BUDD, PM ;
PRICE, C ;
SATGURUNATHAN, R .
EUROPEAN POLYMER JOURNAL, 1993, 29 (2-3) :337-342
[7]   Impermeable atomic membranes from graphene sheets [J].
Bunch, J. Scott ;
Verbridge, Scott S. ;
Alden, Jonathan S. ;
van der Zande, Arend M. ;
Parpia, Jeevak M. ;
Craighead, Harold G. ;
McEuen, Paul L. .
NANO LETTERS, 2008, 8 (08) :2458-2462
[8]   Crumpled Graphene Nanosheets as Highly Effective Barrier Property Enhancers [J].
Compton, Owen C. ;
Kim, Soyoung ;
Pierre, Cynthia ;
Torkelson, John M. ;
Nguyen, SonBinh T. .
ADVANCED MATERIALS, 2010, 22 (42) :4759-+
[9]  
Comyn J., 1986, POLYM PERMEABILITY, P1
[10]  
DeLassus P.T., 1997, WILEY ENCY PACKAGING, V2nd, P71