Fabrication and characterization of polydiacetylene supramolecules in electrospun polyvinylidene fluoride nanofibers with dual colorimetric and piezoelectric responses
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Fabrication and characterization of polydiacetylene supramolecules in electrospun polyvinylidene fluoride nanofibers with dual colorimetric and piezoelectric responses

机译:用双比色和压电反应的电纺聚乙烯氟化乙烯纳米纤维在电纺聚乙烯氟化乙烯纳米纤维中的制造与表征

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AbstractThe ability to prepare Polydiacetylenes based materials in the polyvinylidene fluoride matrix polymer is interesting due to the combination of colorimetric and electrical signaling. The new PVDF/PDA composite nanofibers were prepared via the electrospinning method. The self-assembly of diacetylene monomers (PCDAs) occurred during the electrospinning process. The assembled diacetylene monomers in the PVDF nanofibres were further polymerized to form PDA. Full factorial experimental design was applied to investigate the influence of PVDF concentration and PCDA content on the morphology of nanofibers. The colorimetric transitional of the uniform and beadless PVDF/PDA nanofibers were studied as a function of temperature. The crystal polymorphism of these structures were evaluated using Fourier transform infrared, differential scanning calorimetry, and wide angle X-Ray diffraction. The piezoelectric response of the PVDF/PDA nanofibers in the red and blue phases was also measured. The results showed that a combination of colorimetric and piezoelectric responses is available with composite nanofibers of PVDF/PDA. The polymorphism investigation demonstrated that assembled PCDAs have the effect of inhibiting the growth of non-polar α phase crystals, while promoting the growth of polar β phase. Moreover, the electrospun PVDF/PCDA nanofibers after UV-irradiation and formation of PDA exhibited greater intensity of β-phase in comparison to that before irradiation. However, the red phase of PVDF/PDA nanofibers indicated less fraction of β-phase than the blue phase. The blue-to-red color transition of PVDF/PDA composite nanofibers accompanied by the variation of pi
机译:<![CDATA [ 抽象 由于比色和电气的组合为基础的基于聚二乙烯基基质的材料的能力是有趣的信令。通过静电纺丝方法制备新的PVDF / PDA复合纳米纤维。在静电纺丝过程中发生二乙炔单体(PCDAs)的自组装。 PVDF纳米纤维中的组装的二乙炔单体进一步聚合以形成PDA。适用于PVDF浓度和PCDA含量对纳米纤维形态的影响。作为温度的函数,研究了均匀和珠光式PVDF / PDA纳米纤维的比色转变。使用傅里叶变换红外,差示扫描量热法和广角X射线衍射评估这些结构的晶体多态性。还测量了PVDF / PDA纳米纤维在红色和蓝相中的压电响应。结果表明,PVDF / PDA的复合纳米纤维可获得比色和压电反应的组合。多态性研究表明,组装的PCDA具有抑制非极性α相晶的生长的效果,同时促进极性β相的生长。另外,除了照射之前,紫外线辐照和形成PDA后的电纺PVDF / PCDA纳米纤维表现出更大的β相强度。然而,PVDF / PDA纳米纤维的红色相表明β相的少量比蓝相。 PVDF / PDA复合纳米纤维的蓝染色调伴随着PI的变异

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