Department of Chemical Engineering and Institute of Polymer Science and Engineering, National Taiwan University, Taipei 106, Taiwan.
ACS Appl Mater Interfaces. 2010 Nov;2(11):3340-7. doi: 10.1021/am100760a. Epub 2010 Oct 21.
We report novel thermoresponsive electrospun (ES) fibers prepared from multifunctional random copolymers of poly((2-(dimethylamino)ethyl methacrylate)-co-(stearyl acrylate) -co-(9,9-dihexyl-2-(4-vinylpenyl)-9H-fluorene)) (poly(DMAEMA-co-SA-co-StFl)). The moieties of DMAEMA, SA, and StFl were designed to exhibit the thermoresponsive, physical cross-linking, and fluorescent functionality, respectively. The effects of the copolymer compositions on the morphology and photoluminescence of the prepared ES fibers were explored. The prepared P4 copolymer with the DMAEMA/SA/StFl mole ratio of 92/3/5 showed the lower critical solution temperature (LCST) of 32.5 °C. A significant temperature-dependent swelling and de-swelling behavior was found in the P4 ES fibers, which had the diameter of 753 ± 174 nm and 5-10 nm StFl aggregated domain. Accompanied with volume-changing on the P4 ES fibers, a reversible photoluminescence (PL) quenching was also observed during the heating and cooling cycle between 40 and 60 °C. Such reversible switching of the "on-off" PL intensity was probably due to the light absorption ability of the StFl moiety, resulted from the extended/compact structural transformation on the PDMAEMA moiety. Furthermore, the high surface/volume ratio of the ES fibers led a much better temperature response compared with the corresponding spin-coated film. The present study demonstrated that the ES fibers prepared from multifunctional copolymers exhibited the thermoreversible variation on both volume and photoluminescence intensity.
我们报告了一种新型的温敏电纺(ES)纤维,它由聚(2-(二甲氨基)乙基甲基丙烯酸酯-共-(硬脂基丙烯酸酯)-共-(9,9-二己基-2-(4-乙烯基苯基)-9H-芴))(聚(DMAEMA-co-SA-co-StFl))的多功能无规共聚物制备而成。DMAEMA、SA 和 StFl 部分分别设计为表现出温敏、物理交联和荧光功能。研究了共聚物组成对制备的 ES 纤维形态和光致发光的影响。具有 DMAEMA/SA/StFl 摩尔比为 92/3/5 的 P4 共聚物表现出 32.5°C 的低临界溶液温度(LCST)。在 P4 ES 纤维中发现了明显的温度依赖性溶胀和去溶胀行为,其直径为 753±174nm,并且存在 5-10nm 的 StFl 聚集域。伴随着 P4 ES 纤维体积的变化,在 40 至 60°C 的加热和冷却循环过程中还观察到可逆的光致发光(PL)猝灭。这种“开-关”PL 强度的可逆切换可能归因于 StFl 部分的光吸收能力,这是由于 PDMAEMA 部分的扩展/紧凑结构转变所致。此外,ES 纤维的高表面积/体积比导致其比相应的旋涂薄膜具有更好的温度响应。本研究表明,由多功能共聚物制备的 ES 纤维表现出体积和光致发光强度的温敏可逆变化。