Fraczek-Szczypta Aneta, Blazewicz Stanislaw
Faculty of Materials Science and Ceramics, Department of Biomaterials, AGH-University of Science and Technology in Krakow, al.Mickiewicza 30, 30-059 Krakow, Poland.
J Mater Sci. 2011;46(17):5680-5689. doi: 10.1007/s10853-011-5519-3. Epub 2011 Sep 1.
The use of carbon nanohorns (SWCNHs) as a modifying filler in a polyacrylonitrile (PAN) matrix is studied with the goal of elaborating nanocomposites. The study deals with assessment of the dispersity of SWCNHs in a PAN polymer suspension. The SWCNHs were introduced into the PAN-based suspension using different methods, including mechanical stirring, ultrasonification and the combination of ultrasonification with addition of a surfactant. Agglomeration and dispersion processes of SWCNH in the polymer suspensions were studied using DLS technique and turbidimetry. The resulting properties of nanocomposite foils after solidification in water ambient were verified in various tests. The mechanical tensile properties (tensile strength, modulus and strain to fracture) of the nanocomposites before and after the dispersion process were compared. The nanocomposites obtained under optimally prepared suspension perform the highest strain to fracture in tensile test. Electrical resistivity and thermal conductivity of nanocomposites samples after appropriate dispersion of SWCNHs in the PAN suspension were also determined. The presence of SWCNH in the PAN suspension affects the structure of nanocomposites after solidification through changing structural ordering of the polymer. The study revealed that the polymeric suspensions prepared in optimum processing conditions contain the carbon aggregates the size of which correspond almost to the mean size of a - structured particle, i.e., 50-250 nm and it was not possible to separate such particles into a single form of carbon nanohorn by the techniques used.
为了制备纳米复合材料,研究了将碳纳米角(SWCNH)用作聚丙烯腈(PAN)基体中的改性填料。该研究涉及评估SWCNH在PAN聚合物悬浮液中的分散性。采用不同方法将SWCNH引入基于PAN的悬浮液中,包括机械搅拌、超声处理以及超声处理与添加表面活性剂相结合的方法。使用动态光散射(DLS)技术和比浊法研究了SWCNH在聚合物悬浮液中的团聚和分散过程。对在水环境中固化后所得纳米复合箔的性能进行了各种测试。比较了分散过程前后纳米复合材料的机械拉伸性能(拉伸强度、模量和断裂应变)。在将SWCNH在PAN悬浮液中进行适当分散后,还测定了纳米复合材料样品的电阻率和热导率。PAN悬浮液中SWCNH的存在通过改变聚合物的结构有序性影响固化后纳米复合材料的结构。研究表明,在最佳加工条件下制备的聚合物悬浮液中含有碳聚集体,其尺寸几乎与α-结构颗粒的平均尺寸相对应,即50 - 250纳米,并且通过所使用的技术不可能将这些颗粒分离成单一形式的碳纳米角。