State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai, 201620, China.
Nanoscale. 2011 Mar;3(3):911-5. doi: 10.1039/c0nr00783h. Epub 2010 Dec 9.
Two-dimensional (2D) polyacrylic acid (PAA) nano-nets that comprise interlinked ultrathin nanowires with diameters of 10-30 nm are successfully prepared by a facile electro-netting process. Nano-nets feature a clear geometric characteristic with ideal and weighted Steiner networks due to the rapid phase separation process and its obeyed minimal energy principle. The versatile nano-nets create enhanced interconnectivity and additional surface area and facilitate the diffusion of analytes into the membranes, which significantly boost the gas diffusion coefficient and sensing properties. As one example, PAA membranes containing fibers and nano-nets used as sensing materials are deposited by electrospinning/electro-netting on an electrode of a quartz crystal microbalance (QCM) for trimethylamine (TMA) detection, which exhibits a quick response (∼180 s), low detection limit (1 ppm) and ideal selectivity at room temperature.
二维(2D)聚丙烯酸(PAA)纳米网由相互交联的超薄纳米线组成,直径为 10-30nm,通过简便的电纺网工艺成功制备。纳米网具有清晰的几何特征,由于快速的相分离过程及其遵循的最小能量原理,呈现理想的加权 Steiner 网络。通用纳米网创造了增强的互连性和额外的表面积,并促进分析物扩散到膜中,从而显著提高气体扩散系数和传感性能。例如,通过静电纺丝/电纺网将含有纤维和纳米网的 PAA 膜沉积在石英晶体微天平(QCM)的电极上作为三甲基胺(TMA)检测的传感材料,其在室温下表现出快速响应(约 180s)、低检测限(1ppm)和理想的选择性。