Peniche C, Argüelles-Monal W, Davidenko N, Sastre R, Gallardo A, San Román J
Centro de Biomateriales, Universidad de La Habana, Cuba.
Biomaterials. 1999 Oct;20(20):1869-78. doi: 10.1016/s0142-9612(99)00048-4.
Chitosan/polyacrylic acid I PN's were prepared by radical polymerization of acrylic acid, AA, activated at low temperature, in an aqueous/alcoholic chitosan dispersion. AA monomer to polymer conversion and membrane compositions were determined by elemental analysis and FTIR. Evidences of interpolyelectrolite complex formation were found from the FTIR spectra as well. The gravimetric measurements and the elemental analysis after some exhaustive PAA extraction support the existence of some PAA grafting on the reactive amine group of the chitosan. Swelling degree of the membranes is highly dependent on pH and composition, showing a higher swelling in membranes richer in AA and increased pH due to the breaking of interpolyelectrolite salt bonds.
壳聚糖/聚丙烯酸互穿聚合物网络(IPN)是通过在水性/醇性壳聚糖分散液中,使丙烯酸(AA)在低温下活化进行自由基聚合制备而成。通过元素分析和傅里叶变换红外光谱(FTIR)测定AA单体到聚合物的转化率以及膜的组成。从FTIR光谱中也发现了形成聚电解质复合物的证据。经过一些彻底的聚丙烯酸(PAA)萃取后的重量测量和元素分析支持了在壳聚糖的反应性胺基上存在一些PAA接枝的情况。膜的溶胀度高度依赖于pH值和组成,由于聚电解质盐键的断裂,在富含AA且pH值增加的膜中表现出更高的溶胀度。